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1

Wibowo, Ari, and Michella Beatrix. "EVALUASI QUANTITY TAKE OFF MENGGUNAKAN AUTODESK REVIT PADA PEKERJAAN STRUKTUR BAJA PROYEK PEMBANGUNAN GEDUNG KANTOR PT. TRI KANIGARA GROUP." Racic : Rab Construction Research 9, no. 1 (June 25, 2024): 104–11. http://dx.doi.org/10.36341/racic.v9i1.4142.

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With the development of technology, the use of BIM (Building Information Modeling) software such as Autodesk Revit is becoming increasingly common in the construction industry. Quantity Take Off (QTO) in Autodesk Revit is the process of calculating and identifying the amount of construction materials needed for a project based on a 3D model created using the Autodesk Revit software. This study aims to evaluate the use of steel structural materials and the estimated price generated through Autodesk Revit. In the QTO calculation using Autodesk Revit, the results are the volume of WF column work of 18,117.54 kg, the volume of WF beam work of 16,084.15 kg, and the volume of nut bolt work reaching 1,894 pieces. Furthermore, the estimated cost of work is also generated by Autodesk Revit, with the cost of WF column work of Rp. 389,527,110,-, the cost of WF beam work of Rp. 345,809,225,-, and the cost of nut bolt work of Rp. 52,085,000,-. This evaluation aims to identify the accuracy and efficiency of QTO calculations using Autodesk Revit.
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Muhamad Alimin, Imron Imron, and Muhammad Taulani. "Penerapan Bulding Information Modelling (BIM) Autodesk Revit dalam Pembuatan Bar Bending Schedule (BBS) Pondasi Pile Cap Proyek Apartemen Jkt Living Star - Jakarta Timur." JURAL RISET RUMPUN ILMU TEKNIK 2, no. 2 (July 28, 2023): 21–32. http://dx.doi.org/10.55606/jurritek.v2i2.1599.

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Bar bending schedule is a systeem of bending patterns of reinforcement that includes data on diameter, shape, length and number of reinforcement. The purpose of this study is to obtain images of bar bending schedule documents, pile cap foundation iron volumes and find out whether Autodesk Revit software is more efficient and effective than conventional methods. This research uses quantitative methods and the manufacturing process uses the concept of Building Information Modeling (BIM) with autodesk revit software. The results showed that the use of Autodesk Revit software makes it more effective, especially in making bar bending schedule documents, because everything is made automatically. The volume of pile cap iron produced by Autodesk Revit software is 46,878 kg has a difference with the existing (conventional) volume. The volume result of autodesk revit software is less with a difference of 1.29%. This shows that Autodesk Revit software is more efficient in terms of calculating the volume of concrete iron.
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3

Laorent, Danny, Paulus Nugraha, and Januar Budiman. "ANALISA QUANTITY TAKE-OFF DENGAN MENGGUNAKAN AUTODESK REVIT." Dimensi Utama Teknik Sipil 6, no. 1 (April 30, 2019): 1–8. http://dx.doi.org/10.9744/duts.6.1.1-8.

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Quantity Take-Off merupakan salah satu upaya dari kontraktor dengan melakukan perhitungan volume, yang nantinya akan digunakan sebagai bahan untuk menyusun BQ dalam tender dan nantinya juga dijadikan bahan untuk melakukan procurement. Oleh sebab kontraktor yang dapat melakukan quantity take-off dengan akurat akan mendapatkan beberapa keuntungan seperti pengefisiensian material yang datang karena sesuai dengan aktual. Autodesk Revit merupakan sebuah tools atau aplikasi yang berbasis Building Information Modeling (BIM) yang mampu melakukan quantity take-off. Dalam penelitian ini akan dibahas bagaimana kelebihan dan kelemahan dari Autodek Revit dalam melakukan quantity take-off pada volume beton, bila dibandingkan dengan metode yang selama ini dipakai, yaitu menghitung volume dengan menggunakan gambar dari Autocad dan dengan bantuan Microsoft Excel. Hasil dari penelitian ini menunjukkan bahwa Autodesk Revit dapat melakukan quantity take-off dengan baik dan memiliki beberapa kelebihan seperti, memiliki efisiensi terhadap waktu karena dapat menghitung volume dengan lebih cepat dibandingkan dengan metode sebelumnya, apalagi bila terdapat perubahan desain. Akan tetapi dalam membuat permodelan pada Revit membutuhkan waktu yang cukup lama dan harus teliti agar memperoleh hasil yang akurat. Quantity Take-Off is one of the efforts of contractors to make calculations volume, which will be used as the object for making Bill of Quantity in the tender and will also be made to make procurement. Therefore contractors who can do quantity take-off accurately will get some advantages such as efficiency material that came as it was in accordance with the actual. Autodesk Revit is a tools or application based on Building Information Modeling (BIM) which is capable of performing quantity take-off. In this research will be discussed how advantages and deficiency of Autodek Revit in quantity take-off to calculate concrete volume, when compared with the method that have been used, it is calculating volume using image from Autocad and help with Microsoft Excel. Result of this research showed that Autodesk Revit can do quantity take-off with good and has a number of advantages such as, have efficiency to the time because they can calculate volume with more rapidly than method before, especially if there is a redesign. But in making modeling in Revit takes a lot of time for a long time to have a careful and is to be accurate results.
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Yuvita, Rizky Lucky, and Agung Budiwirawan. "Analysis of the Advantages and Disadvantages of Using Autodesk Revit for the Dean Building of the Faculty of Education, Universitas Negeri Semarang." Jurnal Teknik Sipil dan Perencanaan 24, no. 2 (October 31, 2022): 91–98. http://dx.doi.org/10.15294/jtsp.v24i2.36613.

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Abstract. Building Information Modeling (BIM) as a supporting software of the fourth phase of the industrial revolution in Indonesia in the construction sector is a digital technology mode to increase the efficiency and accuracy of construction work to avoid mistakes during the planning to the implementation period. This study uses the Autodesk Revit application to provide the output of working drawings, 3D modeling, and calculate the volume and cost of work carried out in the Dean building of the Faculty of Education, Universitas Negeri Semarang. The purpose of this study is to determine the advantages and disadvantages of using Autodesk Revit for planning the Dean building of the Faculty of Education, Universitas Negeri Semarang. The results of this study are the advantages of using Autodesk Revit for building modeling, including providing convenience with design integration in one application, and avoiding crashes between designs. Autodesk Revit also has weaknesses, such as the need for high hardware specifications on the device, high license prices, the application it is necessary to create a new material family according to the design and size required, Autodesk Revit cannot calculate the preparatory work because the calculation of the volume and cost of Autodesk Revit work is limited to data input.
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Zolotova, Julia, Nikolai Vatin, Eugenia Tuchkevich, and Alexandr Rechinsky. "Autodesk Revit - Key to Successful Training of Highly Qualified Civil Engineers." Applied Mechanics and Materials 725-726 (January 2015): 1617–25. http://dx.doi.org/10.4028/www.scientific.net/amm.725-726.1617.

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Nowdays step by step all companies are moving to BIM technology. It forms one of the main demands of the labour market, influencing the principles of specialist`s preparation in the construction industry higher education institutions. Knowledge of the latest BIM systems is the main. The leader among programs in field of industrial and civil construction is Autodesk Revit. The aim of this work is an overview of Autodesk Revit and evidence of the importance of Autodesk Revit in the training of professionals in the building industry on the example of students` works.
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Khasanah, Lusivatul, and Ibnusina Wirakusuma. "Design of Beam Based On BIM Method Using Autodesk Revit and Autodesk RSAP." EXTRAPOLASI 19, no. 02 (December 29, 2022): 134–48. http://dx.doi.org/10.30996/ep.v19i02.7884.

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Dengan berkembangnya industri Architecture, Engineering and Construction (AEC) banyak sofware yang dikembangkan untuk memenuhi kebutuhan industri konstruksi dengan tujuan untuk meminimalisir human eror dikarenakan pengolahan data secara konvensional. Revit dan Robot Structural Analysis Profesional adalah sebuah software penunjang metode BIM yang diterbitkan oleh Autodesk dan saling terintegrasi satu sama lain. Autodesk Revit merupakan software yang digunakan untuk desain 3D, perencanaan scheduling dan perencanaan anggaran biaya, sedangkan Robot Structural Analysis Profesional merupakan software yang digunakan untuk analisis struktur. Tujuan dari penelitian ini adalah untuk mengetahui bagaimana penerapan metode BIM dalam perencanaan sebuah gedung dan menggali keuntungan apa saja yang dapat diperoleh dalam penerapan BIM. Metode dalam penelitian ini dilakukan dengan merencanakan ulang salah satu gedung fasilitas pendidikan yang ada di Kota Surabaya menggunakan Autodesk Revit dan Autodesk Robot Structural Analysys Profesional. Penelitian ini menghasilkan desain optimum elemen balok serta perbandingan terhadap metode BIM dan metode konvensional. Dari hasil analisis dan pembahasan dapat disimpulkan bahwa penggunaan software penunjang metode BIM lebih efisien daripada konvensional, BIM memfasilitasi proses desain dan konstruksi terintegrasi untuk mencapai hasil yang lebih baik. Namun, penggunaan metode BIM perlu dilakukan pengecekan ulang terhadap SNI dalam mendesain sebuah bangunan.
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Herzanita, Ayu, and Refina Putri Anggraini. "PERBANDINGAN ESTIMASI BIAYA STRUKTUR BANGUNAN ANTARA SOFTWARE AUTODESK REVIT DENGAN CUBICOST." Construction and Material Journal 5, no. 1 (April 17, 2023): 1–11. http://dx.doi.org/10.32722/cmj.v5i1.4620.

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Building Information Modeling (BIM) software commonly used in Indonesia to calculate cost estimates includes Autodesk Revit and Cubicost. Previous studies have shown significant differences comparing the estimated cost of structural work in Autodesk Revit with conventional methods. Further study is needed to compare Autodesk Revit with Cubicost in the same project, with the purpose of knowing the difference in the estimated cost of structural work. The object of this study was the Urban Homes Residential Apartment construction project by reviewing the upper structure. The chosen research strategy was in accordance with the case study objectives. The process begins with the preparating of the WBS (Work Breakdown Structure), designing the BIM 3D, calculating the estimated structural work cost resulting from quantity takeoff using work unit price analysis, and analyzing the estimated cost comparison between Cubicost and Revit BIM software. Based on the analysis results, the estimated cost of building structures using Cubicost is Rp 80,485,995,692, - and has differences of ±13.1% compared to using Revit.
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Soetjipto, Jojok Widodo, Ilham Kahfi Zarkasi, and Anita Trisiana. "Model of Building Maintenance Planning Using The Building Information Modeling (BIM)." Jurnal Permukiman 18, no. 1 (May 1, 2023): 1–15. http://dx.doi.org/10.31815/jp.2023.18.1-15.

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Building maintenance is essential for the operation of the building to maintain the reliability and performance of the building to match its economic age. There are many buildings whose maintenance is inferior from a technical, administrative, and budgetary perspective, so an appropriate maintenance design model is needed according to the operational needs of the building. On the other hand, the development of digital information technology is getting faster and more widely used. One is Building Information Modeling (BIM), where the entire activity process works in collaboration and integration. Therefore, this study aims to develop a proper building maintenance design model using BIM. The method used is to apply building maintenance standards in Indonesia (Public Works Ministrial Regulation No 24/PRT/M/2008) in BIM supporting applications, namely Autodesk Revit (for visualizing 3D buildings) and Autodesk BIM 360 Ops (for maintenance management), as a case study using the Maintenance Management Design of Walini Station which is one of the Jakarta-Bandung fast train stations with very modern, complex and complicated building components. The maintenance design model is carried out through the following stages: (i) building modeling using Autodesk Revit based on shop drawings in 3D and can be applied to 4D and 5D needs; (ii) export Autodesk Revit results to the Autodesk BIM 360 Ops application because this application can store a database of all building operations; and (iii) conducting a maintenance design simulation using the Autodesk BIM 360 Ops application. The study results show that BIM technology can be used as a detailed, accurate, effective, efficient, and integrated maintenance design model. Keywords: Building Maintenance, Building Information Modeling (BIM), Autodesk Revit, Autodesk BIM 360 Ops, building maintenance model
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Solicha, Amelia Ayu, Dyah Lidyaningtias, and Wahiddin Wahiddin. "APLIKASI BIM PADA PEMBANGUNAN PROYEK JEMBATAN UMBUL KAJI KABUPATEN MALANG." Jurnal JOS-MRK 2, no. 3 (September 20, 2021): 304–9. http://dx.doi.org/10.55404/jos-mrk.2021.02.03.304-309.

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Technological progress is one of the challenges in the field of civil engineering. BIM (Building Information Modeling) is one example of technological advances that can be used for the implementation of construction projects. The BIM applications used are Infraworks Autodesk, Naviswork Autodesk and Revit Autodesk applications. The application of BIM is centered on the construction of the Umbul Kaji bridge project, Malang Regency. The use of the Infraworks Autodesk application is intended to facilitate the placement of facility buildings by directly placing buildings according to topographic conditions. Furthermore, the Naviswork Autodesk application is used to visualize the scheduling progress according to the plan. Then the Revit Autodesk application is used for 3D modeling to get the construction volume, reinforcement volume and construction project implementation price. Based on the results of planning and calculations, the organizational structure used is a functional organizational structure. Site layout is based on Travelling Distance (TD) and Safety Index (SI), so an alternative 3 placement is chosen with a TD value of 100131 and an SI of 730. The bridge implementation method for erection girder uses the launching gantry method. In the preparation of the schedule with the help of Microsoft Project and Naviswork Autodesk, the project implementation time was 230 days. And with the help of Revit Autodesk, the cost of implementing the Umbul Kaji Bridge project is Rp. 46.591.603.677,-.
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Bolotin, S. A., Kh V. ,. Biche-ool, and A.-K. Kh Dadar. "Scheduling Visualization Methodology in Autodesk Revit 2018." Вестник гражданских инженеров 16, no. 6 (2019): 179–85. http://dx.doi.org/10.23968/1999-5571-2019-16-6-179-185.

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Vedernikova, A. A., and R. A. Shishmarev. "Truss model data analysis in Autodesk Revit." IOP Conference Series: Materials Science and Engineering 944 (October 30, 2020): 012037. http://dx.doi.org/10.1088/1757-899x/944/1/012037.

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12

Kostić, Aleksandar, Katarina Krstić, Dušan Turina, and Nikola Simić. "DIDACTIC APPROACH TO AUTODESK REVIT TRAINING COURSE." Journal of Faculty of Civil Engineering 40 (2024): 101. http://dx.doi.org/10.14415/cace2024.48.

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13

Putri, Quini Athaya, Fajar Sri Handayani, and Setiono Setiono. "Volume and Cutting Optimization of Reinforcing Steel in Construction of a Satpol PP Building Project." Sustainable Civil Building Management and Engineering Journal 1, no. 3 (June 11, 2024): 9. http://dx.doi.org/10.47134/scbmej.v1i3.2697.

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The world of construction is very dependent on technology, especially in the era of the industrial revolution which demands efficiency and competitiveness. The use of BIM (Building Information Modeling) technology supported by Autodesk Revit software enables more effective and efficient project planning and implementation. One application of BIM is in planning reinforcing steel requirements. To overcome material waste which often occurs due to less than optimal cutting of reinforcing steel, material management with a bar bending schedule and the use of BIM is an important solution. In the Satpol PP Building Construction Project in Bantul Regency by PT Quinad Bahana Indonesia, this new method with software was applied to correct cutting of reinforcing steel, reduce waste and increase construction efficiency. This research method includes data collection, 3D BIM modeling, comparing work volume using Autodesk Revit and conventional. After getting the reinforcing steel volume from the Autodesk Revit software, continue by entering the volume data into the BIM to obtain optimal reinforcing steel cutting patterns. The research results show that the use of Autodesk Revit software for column and beam work results in an overall difference of 11%. The volume resulting from Revit quantity take-off is less than manual analysis. Based on waste level calculations, the average value of waste level is 0.97%. This proves that the BIM is effective in reducing material waste on construction projects. Apart from reducing material waste, the BIM is also able to optimize reinforcing steel cuts.
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Pratama, Ahmad Fawzi, and Budi Witjaksana. "IMPLEMENTASI AUTODESK REVIT UNTUK QUANTIIY TAKE OFF PADA PEKERJAAN STRUKTUR JEMBATAN." Jurnal Kacapuri : Jurnal Keilmuan Teknik Sipil 5, no. 1 (June 6, 2022): 408. http://dx.doi.org/10.31602/jk.v5i1.7603.

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Perlu adanya terobosan yang bisa membantu perhitungan Quantity Take-Off. Terobosan haruslah berupa solusi yang mudah untuk diimplementasikan. Penelitian ini membahas sebuah perangkat lunak Autodesk Revit, dengan perangkat lunak ini pengguna bisa merancang bangunan serta struktur menggunakan pemodelan 3D dan menyajikan gambar kerja 2D serta Quantity Take-Off material. Dalam penelitian ini metode yang digunakan adalah melakukan permodelan 3D, perhitungan volume, dan perhitungan biaya dengan bantuan software Revit. Pengumpulan data dilakukan untuk memperoleh informasi yang dibutuhkan dalam mencapai tujuan penelitian. foto lapangan dalam penelitian ini adalah sebagai salah satu acuan dalam permodelan 3D, harga satuan dalam penelitian ini adalah untuk menghitung biaya pekerjaan. Gambar nantinya digunakan untuk acaun membuat permodelan jembatan di software Revit yang kemudian bisa diketahui untuk volume pekerjaannya. Rekapitulasi dari total semua volume pekerjaan yang didapatkan setelah melakukan permodelan 3D. Volume pekerjaan struktur jembatan: • Pondasi Beton fc’ 20 MPa : 267,57 M³ • Baja Tulangan Struktur 420A : 46.874,53 Kg • Struktur Baja : 28.974,69 Kg • Strous pile Diameter 400mm : 288M 2. Biaya pekerjaan : • Pondasi Beton fc’ 20 MPa : Rp. 320.011.996,85,- • Baja Tulangan Struktur 420A : Rp. 870.804.549,90,- • Struktur Baja : Rp. 104.600.948,88,- • Strous pile Diameter 400mm : Rp. 200.213.732,16,-Kata Kunci: Autodesk Revit, Implementasi Revit, Quantity Take Off
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Bhanu Rizfa Hakim, Hatta Musthafa A.P, Zakiah Hidayati, and Nur Husniah Thamrin. "Pelatihan Autodesk Revit Bagi Komunitas Samarinda Young Architect Forum." Jurnal Pengabdian UntukMu NegeRI 5, no. 1 (May 18, 2021): 5–11. http://dx.doi.org/10.37859/jpumri.v5i1.2265.

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Perkembangan dunia arsitektur pada revolusi industri 4.0 sangatlah cepat, sehingga dibutuhkan kemampuan adaptasi cepat agar dalam proses rancang bangun. Proses menggambar atau mendesain bangunan pun turut terpengaruh, yang dahulu dilakukan berhari-hari, pada era revolusi industri 4.0 dapat dikerjakan dalam waktu jam. BIM merupakan seperangkat teknologi yang dijalankan secara digital berisi tentang seluruh informasi yang diperlukan dalam merancang bangunan. Software BIM salah satunya adalah Revit Building Arsitektural. Tujuan pengabdian ini adalah memberikan pelatihan dasar penggunaan software Revit kepada Komunitas Arsitek Samarinda yang tergabung dalam Samarinda Young Architect Forum. Samarinda Young Architect Forum diisi oleh Mahasiswa dan Pengusaha Jasa Arsitektur hingga drafter gambar. Berdasarkan hasil evaluasi kegiatan, peserta dapat membuat rumah sederhana dalam waktu singkat dari perencanaan denah, perencanaan kusen, dan perencanaan atap yang dikemas dalam konsep gambar kerja. Kata Kunci : Autodesk Revit, BIM, Revolusi Industri 4.0, Samarinda Young Architect Forum
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Lumondang, Amanda, Erik Wahyu Pradana, and Senot Sangadji. "Structural Capacity and Seismic Responses Evaluation of Low-Rise Buildings by Implementing Building Information Modeling (BIM) Framework." INERSIA lnformasi dan Ekspose Hasil Riset Teknik Sipil dan Arsitektur 18, no. 2 (December 31, 2022): 177–85. http://dx.doi.org/10.21831/inersia.v18i2.53731.

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Currently, BIM has been widely applied in structural design and construction management work. However, there has not been much BIM implementation in evaluating existing structures. Thus, BIM was implemented in this study to evaluate the structural capacity and seismic responses of low-rise buildings due to earthquake loads. The case study was conducted on the Pakubuwono X Mosque building, designed in 2017 based on SNI 2847:2013, SNI 1726:2012, and SNI 1727:2013. This research was carried out numerically by involving the interconnection of Autodesk Revit and Autodesk Robot SAP software, which worked within the BIM framework. The structural model of the Pakubuwono X Mosque building was developed using Autodesk Revit, which was connected to Autodesk Robot SAP for analysis and structural design processes. Furthermore, the design products of Autodesk Robot SAP are reconnected with Autodesk Revit to be integrated with architectural and MEP (mechanical, electrical, and plumbing) design products. In this study, the structural capacity evaluation was carried out on the floor slabs, beams, and columns. Furthermore, the seismic response in the form of modal participation mass ratio, fundamental period, base shear, and story drift are also reviewed in this study. In conclusion, all structural elements (floor slabs, beams, and columns) are adequate to support the design load as indicated by the demand-capacity ratio (D/C Ratio), which is less than 1.0. Furthermore, all parameters of seismic response reviewed in this research comply with the requirements set out in SNI 1726:2012.
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Latha, V. Hema. "Planning Analysis and Design of G+4 Hospital Building using STAAD.Pro V8i & Revit." International Journal For Multidisciplinary Research 04, no. 04 (2022): 439–49. http://dx.doi.org/10.36948/ijfmr.2022.v04i04.048.

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In these modern days the building are made to fulfil our basic aspects and better service ability. It is not issue to construct a building any how its, important to construct an titled “planning analysis and design of G+4 hospital building using STAAD.Pro V8i & Revit” using STAAD.Pro. The plan of the building is drawn by using Autodesk Revit software, and analyzed the dead load, live load, bending moment, and reaction forces of the structure by using STAAD.Pro V8i. This software is used to find the solution for different types of structures. And also this software includes tools that helps to designed the specific structural engineering tasks. Then the design of RCC slab, columns, beams in Autodesk Revit software as per code book of IS 456 (2000). The tools and features that make up Revit architecture are specifically designed to support building information modeling (bim) workflows.
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Christiandava, Adam Rizky, Adelia Azzahra, Asri Nurdiana, and Bambang Setiabudi. "Re-Design Struktur Gedung Head Office Awann Group Berdasarkan Integrasi BIM Autodesk melalui Revit, Naviswork, dan SAP2000." Jurnal Sipil dan Arsitektur 1, no. 1 (June 21, 2023): 16–32. http://dx.doi.org/10.14710/pilars.1.1.2023.16-32.

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Building Information Modeling (BIM), implementation is an innovative advancement in the construction industry. Generally, developing a construction project requires several phases in which information is created manually using a lot of software. Unfortunately, the steps that must be completed in conventional software for project management are inefficient and susceptible to misinterpretation, which frequently causes issues. Therefore, this study focuses on re-planning the Awann Group Semarang Head Office Building using BIM integration based on Autodesk Revit, Naviswork, and SAP 2000 planning software. Re-planning is conducted under SNI 2847-2019 for structural concrete planning requirements, SNI 1727-2020 for minimum load review, and SNI 1726-2019 for structural earthquake resistance standards. This plan produces structural analysis for calculating the feasibility of a building structure, 3D designs from Revit software that can generate 2D designs for Detail Engineering Designs, and work volumes for RAB calculations. Then, for scheduling, Revit will be integrated with Naviswork, which can display scheduling with 3D visualization. The re-planning of the Head office of the Awan Group Semarang resulted in a budget plan of Rp. 4,661,246,792.98 was calculated using the automatic Quantity Take Off from Autodesk Revit and scheduling planning using Microsoft Project and Autodesk Naviswork for ten months of work.
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Christiandava, Adam Rizky, Adelia Azzahra, Asri Nurdiana, and Bambang Setiabudi. "Re-Design Struktur Gedung Head Office Awann Group Berdasarkan Integrasi BIM Autodesk melalui Revit, Naviswork, dan SAP2000." Jurnal Sipil dan Arsitektur 1, no. 1 (June 21, 2023): 16–32. http://dx.doi.org/10.14710/pilras.1.1.2023.16-32.

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Building Information Modeling (BIM), implementation is an innovative advancement in the construction industry. Generally, developing a construction project requires several phases in which information is created manually using a lot of software. Unfortunately, the steps that must be completed in conventional software for project management are inefficient and susceptible to misinterpretation, which frequently causes issues. Therefore, this study focuses on re-planning the Awann Group Semarang Head Office Building using BIM integration based on Autodesk Revit, Naviswork, and SAP 2000 planning software. Re-planning is conducted under SNI 2847-2019 for structural concrete planning requirements, SNI 1727-2020 for minimum load review, and SNI 1726-2019 for structural earthquake resistance standards. This plan produces structural analysis for calculating the feasibility of a building structure, 3D designs from Revit software that can generate 2D designs for Detail Engineering Designs, and work volumes for RAB calculations. Then, for scheduling, Revit will be integrated with Naviswork, which can display scheduling with 3D visualization. The re-planning of the Head office of the Awan Group Semarang resulted in a budget plan of Rp. 4,661,246,792.98 was calculated using the automatic Quantity Take Off from Autodesk Revit and scheduling planning using Microsoft Project and Autodesk Naviswork for ten months of work.
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Bayoris, Alexandra R., and Maxim A. Malinovsky. "AUTODESK REVIT - AS AN EFFECTIVE TOOL FOR CREATING A REAL ESTATE INFORMATION MODEL." Interexpo GEO-Siberia 7, no. 2 (July 8, 2020): 127–33. http://dx.doi.org/10.33764/2618-981x-2020-7-2-127-133.

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21

Waas, Lambertus, and Enjellina. "Review of BIM-Based Software in Architectural Design: Graphisoft Archicad VS Autodesk Revit." Journal of Artificial Intelligence in Architecture 1, no. 2 (August 29, 2022): 14–22. http://dx.doi.org/10.24002/jarina.v1i2.6016.

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Revolution Industry 4.0 delivers impact on world development AEC (architect, engineering, and construction), especially in the development of useful digital technology for acceleration development infrastructure namely BIM ( Building Information Modeling ). BIM uses 3D software to support all potential and productivity in designing building construction. This article aims to review the advantages and limitations of the software Graphisoft Archicad and Autodesk Revit, especially in the field of BIM. the method used in writing an article is a review paper with a review of six journals and three expert opinions. The results of the review show that the Archicad software dominates the criteria for the field of work and 3D display. Temporary software Revit dominates in the field of work criteria in terms of the number of owned features because integrated by the developers of the Autodesk program. Archicad software is more compatible for users who want to have a more concise and easy-to-understand interface, while Revit software is more compatible for users with more complex project scales. Both of these software support parametric design. In Archicad and Revit Rhinoceros-grasshopper software can be used for Live Connection, but Archicad also has Param-O parametric object library and Revit has Dynamo for visual programming of parameter modeling. This shows that users should know more about their needs before choosing to use one of this BIM software.
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Лемеза, В. А., and С. В. Придвижкин. "Разработка автоматизированной системы контроля качества на базе BIM моделей с помощью Dynamo." Тенденции развития науки и образования 96, no. 10 (2023): 68–72. http://dx.doi.org/10.18411/trnio-04-2023-527.

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Mogili, Sudhakar, Harsha Vardhan Avvari, and Vamsi Krishna Appecharla. "Energy Consumption Analysis of Residential Building Using Autodesk Revit." IOP Conference Series: Earth and Environmental Science 1086, no. 1 (September 1, 2022): 012056. http://dx.doi.org/10.1088/1755-1315/1086/1/012056.

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Abstract Because of ongoing rise in global warming and other environmental factors, energy analysis for civil engineering structures are becomes an important factor in the advanced economic construction industry. Forecasting the energy usage of the building, employing appropriate energy-saving measures, and design for construction are all urgently required. The current work is focused on the capabilities of Building Information Modelling, such as Autodesk Revit/Insight Plug-in to perform energy consumption and energy cost analyses on a G+2 residential buildings to predict energy consumption of the building over its entire life span. The results demonstrated the influence of various building energy parameters to analyse optimised building energy requirements and reported reduction in energy consumption and energy cost of 31.3% and 30% respectively.
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Пестов, М. А., and С. В. Придвижкин. "Автоматизация акустического расчета вентиляционных систем в среде Autodesk Revit." Современные достижения научно-технического прогресса 3, no. 8 (2023): 25–28. http://dx.doi.org/10.18411/sdntp-05-2023-06.

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Предложена методика акустического расчета системы вентиляции при разных условиях месторасположения источников шума и рассматриваемого помещения. Определен октавный спектр вентиляционного шума в расчетных точках, уровень звукового давления на пути распространения шума по системе вентиляции, рассчитано снижение уровня звукового давления на разных участках.
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Filza Wiranti, Sartika Nisumanti, and Khodijah Al Qubro. "ANALISIS PERHITUNGAN QUANTITY TAKE-OFF MENGGUNAKAN BUILDING INFORMATION MODELING (BIM) PADA PROYEK JALAN TOL INDRALAYA-PRABUMULIH." JURNAL REKAYASA 12, no. 2 (December 30, 2022): 192–202. http://dx.doi.org/10.37037/jrftsp.v12i2.134.

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Penerapan BIM pada proyek Pembangunan Jalan Tol merupakan upaya Kementrian PUPR dalam peningkatan daya produktifitas dan daya guna perencanaan dan pembangunan proyek konstruksi jalan bebas hambatan melalui implementasi Information and Comunication Technology (ICT). Melalui Badan Pengatur Jalan Tol (BPJT) memberikan tugas kepada Badan Usaha Jalan Tol (BUJT) untuk menerapkan BIM pada Pembangunan Jalan Tol Indralaya – Prabumulih. Dengan BIM diharapkan akan meminimalisir kesalah dalam perhitungan QTO yang mengakibatkan kesalahan dalam penentuan biaya proyek. Metode BIM dilakukan dengan menggunakan software pendukung yaitu Autodesk Revit untuk melakukan pemodelan 3D dan 5D (QTO) yang nantinya hasil perhitungan volume metode BIM akan di bandingkan dengan perhitungan volume metode konvensional. Studi kasus dilakukan pada Box Culvert STA. 0+126 pada Pembangunan Jalan Tol Indralaya – Prabumulih. Berdasarkan hasil penelitian didapatkan perbedaan volume secara keseluruhan sebesar 0,03% dimana perhitungan dengan Autodesk Revit lebih besar dibandingkan perhitungan konvensional. Persentase perbedaan pada pasangan batu kosong (Blinding Stone) sebesar 0,01%, beton struktur kelas E sebesar 0,01%, batang baja tulangan BJTD-40 sebesar 0,02%, struktur beton kelas C-2 dan urugan material berbutir (granular backfill) sebesar 0%. BIM dengan Autodesk Revit dapat melakukan perhitungan QTO secara otomatis yang sudah terintegrasi dengan desain 3Dnya, sehingga meningkatkan ketelitian dalam penentuan Rencana Anggaran Biaya (RAB).
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Purwanto, SS, Yosy Marizan Marizan, and Mega Yunanda Yunanda. "STUDI LITERATUR TENTANGPENGGUNAANSOFTWAREAUTODESK REVITSTUDI KASUS PERENCANAANPUSKESMAS SUKAJADI KOTA PRABUMULIH." Jurnal Teknik Sipil 9, no. 1 (January 20, 2020): 61–75. http://dx.doi.org/10.36546/tekniksipil.v9i1.269.

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Computer Aided Design (CAD) telah lama dikenal untuk mendokumentasikan pekerjaan dan informasi desain arsitektur, menggantikan metode gambar manual dengan tangan serta membawa perubahan yang signifikan dalam dokumentasi proyek. BIM (Building Information Modelling) merupakan perubahan paradigma menggantikan CAD Konvensional. BIM pada dasarnya adalah digital platform untuk pembuatan bangunan virtual. Software Autodesk Revit adalah salah satu Software berbasis BIM (Building Information Modelling) yang membantupendokumentasian proyek secara lebih nyata dengan pemodelan tiga dimensi. Tujuan penelitian dalam Tugas Akhir ini adalah merancang bangunan 2 lantai dengan menggunakan Software Autodeks Revit untuk pemodelan dan penggambaran. Hasil dari penelitian menunjukkan penggunaan aplikasi berbasis BIM dalam merancang sebuah bangunan dapat mempermudah proses desain, meningkatkan efesiensi waktu, sumber daya manusia dan tahapan lanjutannya. Setelah melalui proses yang terintegrasi, model akhir yang dibuat memiliki semua informasi dari denah arsitektur, struktur, dengan output volume secara otomatis.
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Aziz, M. A., K. M. Idris, Z. Majid, M. F. M. Ariff, A. R. Yusoff, L. C. Luh, M. A. Abbas, and A. K. Chong. "A STUDY ABOUT TERRESTRIAL LASER SCANNING FOR RECONSTRUCTION OF PRECAST CONCRETE TO SUPPORT QLASSIC ASSESSMENT." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-4/W1 (September 29, 2016): 135–40. http://dx.doi.org/10.5194/isprs-archives-xlii-4-w1-135-2016.

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Nowadays, terrestrial laser scanning shows the potential to improve construction productivity by measuring the objects changes using real-time applications. This paper presents the process of implementation of an efficient framework for precast concrete using terrestrial laser scanning that enables contractors to acquire accurate data and support Quality Assessment System in Construction (QLASSIC). Leica Scanstation C10, black/white target, Autodesk Revit and Cyclone software were used in this study. The results were compared with the dimensional of based model precast concrete given by the company as a reference with the AutoDesk Revit model from the terrestrial laser scanning data and conventional method (measuring tape). To support QLASSIC, the tolerance dimensions of cast in-situ & precast elements is +10mm / -5mm. The results showed that the root mean square error for a Revit model is 2.972mm while using measuring tape is 13.687mm. The accuracy showed that terrestrial laser scanning has an advantage in construction jobs to support QLASSIC.
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Згода, Юрий Николаевич, Алексей Александрович Семенов, and Борис Георгиевич Вагер. "Features of BIM-model preparation for photorealistic interactive visualization in virtual and augmented reality." Вычислительные технологии, no. 4(25) (September 16, 2020): 69–82. http://dx.doi.org/10.25743/ict.2020.25.4.007.

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Описан высокоэффективный алгоритм экспорта BIM-моделей из BIM-пакета Autodesk Revit с целью построения интерактивной визуализации в виртуальной и дополненной реальности. Для демонстрации эффективности алгоритма выполнена его апробация на информационной модели с высокой степенью детализации. Проведен сравнительный анализ с различными программными комплексами, автоматизирующими экспорт BIM-моделей Purpose: built-in tools of software packages, such as Autodesk Revit or Renga do not allow rendering realistic BIM-model. Visualization tools of various graphical packages (Autodesk 3ds Max, Blender, Cinema 4D etc.) are mostly using ray tracing, which makes it almost impossible to change the camera angle, geometry materials, lighting parameters etc. in real-time. Therefore, an interactive BIM-model visualization is needed. Such visualization achieves its maximum efficiency when virtual and augmented reality technologies are employed, which allow studying the designed object in volume but requires preliminary processing for model optimization. The purpose of this work is the development of an algorithm for preparation of BIM-model for interactive visualization in virtual and augmented reality. Methodology: processing of BIM-models developed in BIM-modelling software package Autodesk Revit is considered (but main concepts could be applied to other BIM-modelling software packages). Autodesk 3ds Max was selected for model’s geometry processing. Various features of BIM-model export were examined, as well as available ways for optimization of geometry of a building, BIMmodel component structuring and material management. A literature on the subject of the study was analyzed. Findings: a universal algorithm has been developed allowing, on the basis of the information model of the building, in the shortest possible time to prepare a highly optimized 3D model, ready for interactive visualization Value: the developed algorithm can be applied to a BIM-model of any complexity. High level of model optimization allows performing realistic visualization with various interactive components thereby increasing overall realism of interactive visualization
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Hrytsyna, N., and V. Ragulin. "MODELING THE SPAN STRUCTURE OF THE BRIDGE IN THE AUTODESK REVIT SYSTEM." Modern problems of modeling 19 (September 8, 2020): 50–56. http://dx.doi.org/10.33842/2313-125x/2019/19/50/56.

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Khusainova, Galina Vladimirovna, and Damir Zinnurovich Khusainov. "CREATING ROOFS WITH THE HELP OF THE CONCEPTUAL MODELING IN REVIT." Chronos 7, no. 9(71) (October 13, 2022): 32–35. http://dx.doi.org/10.52013/2658-7556-71-9-7.

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Олейник, В. А., Денис Безушко, and А. А. Корлюга. "СИСТЕМА МОНИТОРИНГА ЗА ДЕФОРМАЦИЯМИ ПРИ СТРОИТЕЛЬСТВЕ В УСЛОВИЯХ ПЛОТНОЙ ГОРОДСКОЙ ЗАСТРОЙКИ." SWorldJournal, no. 11-02 (January 30, 2018): 33–37. http://dx.doi.org/10.30888/2663-5712.2022-11-02-061.

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Представлен вариант системы мониторинга технического состояния при строительстве объекта в плотной городской застройке. В работе использованы современные методы проектирования, реализуемые в программных комплексах Autodesk AutoCad и Revit, расчеты напряже
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Queiróz, Gabriel Ramos de, Giane de Campos Grigoletti, and Joaquim César Pizzutti dos Santos. "Interoperability between Autodesk Revit and EnergyPlus for thermal simulations of buildings." PARC Pesquisa em Arquitetura e Construção 10 (January 25, 2019): e019005. http://dx.doi.org/10.20396/parc.v10i0.8652852.

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Este artigo analisa o grau de confiabilidade das possibilidades de interoperabilidade entre os programas Autodesk Revit e EnergyPlus, a fim de verificar o uso de modelos BIM em simulações térmicas realizadas no EnergyPlus. A metodologia consistiu em estudos de caso com modelos de edificações baseados no Case 600 da norma ASHRAE Standard 140 e no Projeto Casa Eficiente localizado em Florianópolis-SC. Os modelos digitais de ambas as edificações foram produzidos no Revit com diferentes processos de modelagem e configurações do programa, exportados nos formatos de arquivo IFC, gbXML e IDF e convertidos com o auxílio de ferramentas adicionais para serem abertos no EnergyPlus. Tais arquivos foram comparados com um modelo de referência de cada edificação, produzido no EnergyPlus por meio do plug-in Euclid do SketchUp, para examinar a transferência das informações com base em parâmetros definidos para as geometrias dos modelos e as configurações e resultados de simulações. Concluiu-se que não é perfeita a interoperabilidade entre os programas computacionais Autodesk Revit e EnergyPlus para simulações térmicas de edificações, pois, apesar de existir a possibilidade de transferência de informações, esta troca apresenta erros devido a distorções nas geometrias e falta de alguns dados necessários para a correta execução da simulação em todos os modelos de edificações exportados.
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Marizan, Yosi. "Studi Literatur Tentang Penggunaan Software Autodesk Revit Studi Kasus Perencanaan Puskesmas Sukajadi Kota Prabumulih." JURNAL ILMIAH BERING'S 6, no. 01 (March 4, 2019): 15–26. http://dx.doi.org/10.36050/berings.v6i01.154.

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Computer Aided Design (CAD) has long been known to document architectural design work and information, replace the manual drawing method by hand and bring significant changes in project documentation. BIM (Building Information Modeling) is a paradigm shift replacing Conventional CAD. BIM is basically a digital platform for manufacturing virtual buildings. Autodesk Revit Software is a BIM (Building Information Modeling) based software that helps document projects more realistically with three-dimensional modeling. The purpose of this research in this Final Project is to design a 2-storey building using the Autodext Revit Software for modeling and drawing. The results of the study indicate the use of BIM-based applications in designing a building can simplify the design process, improve the efficiency of time, human resources and its subsequent stages. After going through an integrated process, the final model created has all the information from the architecture, structure, and output volumes automatically.
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Maske, Prof Ravi G., Prof Ashok Y. Kankuntla, Prof Shrikant R. Kulkarni, Sajid D. Tamboli, Venu M. Rapelli, and Unsa Z. Jahagirdar. "3D Modelling and Simulation Methods in RCC Building using Bim Software." International Journal of Innovative Technology and Exploring Engineering 12, no. 8 (July 30, 2023): 39–45. http://dx.doi.org/10.35940/ijitee.h9662.0712823.

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The building can be designed by using Autodesk Revit Software. Autodesk Revit is Building Information Modelling (BIM) software for, landscape architects, structural engineers, MEP engineers and contractors. The software allows users to design a building and its components in 3D annotate the model with 2D drafting elements and access building information from the building model’s database. Our structure are G+14 Residential building and LIC Ludhiana projects. G+14 is the residential project in which there are 10 blocks with 2 basement, shops on ground and 1st floor, and typical floors from 3rd to 13th floor level which also consist of two refuges floor, the project has different AutoCAD plan of architectural and structural layout having sizes of Beam, column, slabs designed according to IS456:2000 and IS800:2007 LSM. In LIC Ludhiana project the work consist of Rebaring of slabs which includes the top and bottom rebar’s of slab having different diameter or sizes of rebar’s like 8mm, 10mm, 12mm etc. The schedule can be easily extract from this Revit models which will calculate the quantity of material required for the construction purposes. The extensions or plugins like Diroots, Dynamo run in Revit reduces the time of project and give more accuracy to provide id’s to the elements.
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Fadlilah, Muhammad Reza Nur, Fajar Sri Handayani, and Muji Rifai. "Analysis of Quantity Take Off Deviation Using BIM Method (Case Study of Construction of a Satpol PP Building)." Sustainable Civil Building Management and Engineering Journal 1, no. 3 (July 2, 2024): 12. http://dx.doi.org/10.47134/scbmej.v1i3.2828.

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Quantity Take Off (QTO) is in important process in the construction industry that calculates and estimates the amount of material needed to complete a construction project. This process includes detail analysis of design plans and technical specification to identify and calculate quantities. QTO results are used to create cost budgets, create project plans, and plan material procurement. This research explains the Building Information Modeling (BIM) application which uses Autodesk Revit software to calculate Quantity Take Off volume. The aim is to find out the difference between volume calculations using conventional methods and volume calculations using the BIM method and Quantity Take Off volumes in architectural work and structural work. A comparative analysis of conventional methods and the use of Autodesk Revit provide an overview of the efficiency and effectiveness of implementing BIM software in the Bantul Satpol PP Building Construction Project with a focus on structural an architectural work investigation studies. This research uses a case study methodology which includes a quantity survey using Building Information Modeling (BIM) techniques using Autodesk Revit and Microsoft Excel software. This research method includes preparatory steps, data collection techniques, 3D modeling, and data analysis based on volume the use of BIM software and conventional methods. Based on the survey results, the difference in volume calculations for architectural work is 9,68% and for structural work is 9,00%, this shows that volume calculations using the BIM method are smaller than using conventional methods.
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Kelvin, Kelvin Khoidir, Agung Pranata, and Muhammad Erik Raditya. "PEMBUATAN DAN ANALISA PISTON DENGAN APLIKASI AUTODESK INVENTOR." Teknika STTKD: Jurnal Teknik, Elektronik, Engine 10, no. 1 (July 25, 2024): 126–30. http://dx.doi.org/10.56521/teknika.v10i1.1142.

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Autodesk inventor merupakan sebuah software atau perangkat lunak yang digunakan untuk membuat suatu objek dengan sistem 3 dimensi. Inventor adalah aplikasi yang dibuat oleh Autodesk Inc. USA. Perusahaan juga membuat aplikasi aplikasi lain seperti Autodesk, AutoCAD, Revit dan lain-lain. Aplikasi ini dapat membuat benda seperti spare part sepeda motor atau mobil dan khususnya pada bagian mekanik seperti piston, camshaft dan blok. Pada dasarnya pembuatan suku cadang mempunyai tahapan dimana terjadi penggambaran dan kemudian terjadi suatu barang yang digunakan pada kendaraan agar kendaraan dapat berfungsi dengan baik. Piston, kadang-kadang disebut torsi, adalah salah satu bagian terpenting dari sebuah kendaraan. Ia bekerja setelah terjadi ledakan di ruang bakar.
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Hladka, K. I., and N. P. Bocharova. "CONSTRUCTION THE BRIDGE PIER AS PARAMETRIC OBJECT USING AUTODESK REVIT." Science and Transport Progress. Bulletin of Dnipropetrovsk National University of Railway Transport, no. 4(70) (September 6, 2017): 129–40. http://dx.doi.org/10.15802/stp2017/109648.

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Pratiwi, Sukma Sandhy, and Agung Budi Wirawan. "Eksplorasi Pemodelan Gedung Dekanat Fakultas Teknik Universitas Negeri Semarang Menggunakan Software Autodesk Revit." Dinamika Teknik Sipil: Majalah Ilmiah Teknik Sipil 1, no. 1 (July 29, 2022): 8–17. http://dx.doi.org/10.23917/dts.v1i1.17857.

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BIM (Building Information Modelling) sebagai sebuah teknologi yang mencakup informasi penting dalam pemodelan sebuah bangunan secara terintegrasi yang dapat mengefisienkan sebuah proyek konstruksi. Untuk mendukung peningkatan daya saing infrastruktur di Indonesia, metode BIM harus diaplikasikan pada sektor-sektor konstruksi. Sehingga dilakukan penelitian ini yang bertujuan untuk mengeksplorasi penggunaan software Autodesk Revit pada salah satu gedung di Universitas Negeri Semarang yaitu Gedung Dekanat Fakultas Teknik dengan menggunakan metode eksploratif. Hasil dari penelitian ini antara lain tahapan pemodelan Gedung Dekanat Fakultas Teknik Universitas Negeri Semarang dilakukan pemodelan structural, architectural, MEP, dan perhitungan volume beton struktur. Serta terdapat kesulitan antara lain family belum lengkap, ketidaksesuaian warna material saat berada di dalam family dan saat di load ke project, dan tidak bisa melakukan fitur join secara otomatis, kemudahan yang didapat yaitu tidak diperlukan koneksi internet, dapat melakukan import file, bebas dalam membuat family, dapat melakukan render, proses revisi yang mudah, tools yang lengkap, dapat membuka layout 2D dan 3D secara bersamaan. Secara umum, revit memiliki kekurangan dengan spesifikasi hardware yang tinggi dan ketergantungan pada plug in, tetapi revit juga memiliki kelebihan antara lain kemudahan koordinasi antar stakeholder, dilengkapi interference check, serta penghematan biaya dan sumber daya manusia.
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Yang, X., M. Koehl, and P. Grussenmeyer. "PARAMETRIC MODELLING OF AS-BUILT BEAM FRAMED STRUCTURE IN BIM ENVIRONMENT." ISPRS - International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences XLII-2/W3 (February 23, 2017): 651–57. http://dx.doi.org/10.5194/isprs-archives-xlii-2-w3-651-2017.

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A complete documentation and conservation of a historic timber roof requires the integration of geometry modelling, attributional and dynamic information management and results of structural analysis. Recently developed as-built Building Information Modelling (BIM) technique has the potential to provide a uniform platform, which provides possibility to integrate the traditional geometry modelling, parametric elements management and structural analysis together. <br><br> The main objective of the project presented in this paper is to develop a parametric modelling tool for a timber roof structure whose elements are leaning and crossing beam frame. Since Autodesk Revit, as the typical BIM software, provides the platform for parametric modelling and information management, an API plugin, able to automatically create the parametric beam elements and link them together with strict relationship, was developed. The plugin under development is introduced in the paper, which can obtain the parametric beam model via Autodesk Revit API from total station points and terrestrial laser scanning data. The results show the potential of automatizing the parametric modelling by interactive API development in BIM environment. It also integrates the separate data processing and different platforms into the uniform Revit software.
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Pimentel, Breno Pontes, Andréa Teresa Riccio Barbosa, and Mayara Dias de Souza. "ANÁLISE DE MÉTODOS DE INTEGRAÇÃO ENTRE BIM E SIMULAÇÃO TERMO ENERGÉTICA DE EDIFICAÇÕES MILITARES." Revista Gestão & Sustentabilidade Ambiental 9 (February 21, 2020): 125. http://dx.doi.org/10.19177/rgsa.v9e02020125-146.

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O objetivo deste artigo é analisar métodos de integração da plataforma Building information Modeling (BIM) no processo de simulação termo energética de edificações militares, para obtenção de Etiqueta Nacional de Conservação de Energia (ENCE) pelo Regulamento Técnico da Qualidade para o Nível de Eficiência Energética de Edificações (RTQ-C). A justificativa se dá pelo fato de o Exército Brasileiro (EB) ser obrigado a obter ENCE Nível “A” e a utilizar BIM em seus projetos, conformes normativas e leis brasileiras expressas no trabalho. Primeiro, buscou-se utilizar o Autodesk Revit para realizar a simulação, que é o software adotado pelo EB para elaboração de projetos em BIM, mais especificamente os plug-ins Energy Analysis e Green Building Studio. Devido a limitações encontradas, uma segunda fase procurou maneiras de fazer interoperabilidade entre Autodesk Revit e softwares de simulação, como o EnergyPlus, o Integrated Environmental Solutions Virtual Environment (IES-VE) e o DesignBuilder. Dentre essas opções, concluiu-se que o uso do Revit interoperável com DesignBuilder é mais adequado à análise de projetos do EB. Por fim, foi explicado como se dá a interoperabilidade entre esses dois últimos softwares e como se processará a simulação para obtenção de ENCE.
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Reista, Itsna Aulya, Annisa Annisa, and Ilham Ilham. "Implementasi Building Information Modelling (BIM) dalam Estimasi Volume Pekerjaan Struktural dan Arsitektural." Journal of Sustainable Construction 2, no. 1 (October 31, 2022): 13–22. http://dx.doi.org/10.26593/josc.v2i1.6135.

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Perhitungan volume pekerjaan menggunakan gambar Computer Aided Design (CAD) 2D memerlukan proses manual dan software pendukung lain seperti Microsoft Excel untuk perhitungan. Hal ini menyebabkan peluang terjadinya error karena ketidaktelitian interpretasi dan perhitungan dalam mengelaborasi kompleksitas bangunan yang akan dibangun. Penerapan Building Information Modelling (BIM) dapat meminimalisir kesalahan tersebut. Penelitian ini bertujuan untuk mengaplikasikan software Autodesk Revit untuk estimasi perhitungan volume dan menganalisis perbedaan hasil estimasi perhitungan volume berbasis Building Information Modelling dan hasil estimasi menggunakan CAD 2D. Studi kasus penelitian menggunakan data perencanaan gedung utama Rumah Sehat Baznas (RSB) Berau. Penelitian dilakukan dengan membuat model BIM menggunakan software Autodesk Revit dari data Detail Engineering Design (DED) CAD 2D eksisting. Output volume software Revit kemudian dibandingkan dengan Bill of Quantity (BQ) eksisting dan dianalisis perbedaannya.. Hasil penelitian menunjukan rata-rata perbedaan pada pekerjaan fondasi adalah 2%, pekerjaan sloof dan balok 0%, pekerjaan kolom 1%, pekerjaan pelat lantai 3%, pekerjaan railing 15%, pekerjaan dinding 7%, pekerjaan pintu 7%, pekerjaan jendela 0%, pekerjaan pola lantai 5%, pekerjaan plafond 17%, dan pekerjaan atap 6%. Rata-rata perbedaan pada pekerjaan arsitektural adalah 6%, sedangkan pada pekerjaan struktur adalah 5%, perbedaan terjadi karena kesalahan menghitung jumlah objek, kesalahan perhitungan, dan kesalahan interpretasi gambar.
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42

Baracho, Renata Maria Abrantes, Luiz Gustavo da Silva Santiago, Antonio Tagore Assumpção Mendoza e. Silva, and Marcelo Franco Porto. "Application of Building Information Modeling (BIM) in the Planning and Construction of a Building." Special Issue on Trans- and Inter-Disciplinary Research, Education, and Communication 22, no. 4 (June 2024): 14–19. http://dx.doi.org/10.54808/jsci.22.04.14.

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This paper aims to introduce Building Information Modeling (BIM) technology into the process of construction to achieve more efficient buildings, considering sustainability, economic improvements, reduced waste, and time optimization. The study involves the design, 3D modeling, planning, and monitoring of the work to assess the advantages and limitations of BIM through a real simulation. The methodology comprises theoretical foundations, 3D modeling, budgeting, and work monitoring. The project commenced with a 2D blueprint using Autodesk AutoCAD, followed by 3D modeling in Autodesk Revit. The resultant building, serving as an information system with a database and 3D modeling, allows for automated budgeting. The advantages of BIM encompass an interface between project and program, an interface between software, realistic renderings, precise material specifications, and family modeling. Limitations include the absence of material families, reformatting of Autodesk Revit tables when transferred to the Microsoft Excel program, generic family models with distorted renderings of reality, and heavy files. Despite these limitations, the implementation of BIM in buildings proves beneficial for projects. Collaborative work among stakeholders, optimization of project stages, and the reduction of expenses and rework can be achieved.
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Mahendra, Muhamad Yusuf, Nia Kartika, and Tahadjuddin. "Calculation of Cost Estimation Based on Building Information Modeling in Construction Projects." International Journal of Natural Science and Engineering 7, no. 1 (March 20, 2023): 71–83. http://dx.doi.org/10.23887/ijnse.v7i1.57640.

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BIM (Building Information Modeling) is currently a concept that can include important information in planning. This study aims Kosmetika Global Helath Indonesia, Ejip Area, Cikarang. In this research, 3D modeling of steel structures was carried out based on shop drawing documents from the research location. Next, calculate the quantity take-off for the estimated cost of steel structure work using Autodesk Revit software. It can be concluded that using Auusingit software can optimize the 2D modeling process into the 3D form so that the quantity take-off calculations can be more detailed and accurate and reduce material waste. It also already supports BIM 5D to help calculate estimated costs. The results of calculating estimated costs using Autodesk Revit software are 3.45% smaller than conventional calculations. It is because conventional methods are calculated manually based on 2D images, which allow for differences due to lack of detail.
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Bilov, Vladyslav, Vasyl Goi, Kostiantyn Mamonov, Oleksandr Tregub, and Oleksii Levchenko. "Advantages of building information modeling (bim) during the operational life." Revista Amazonia Investiga 12, no. 68 (October 20, 2023): 346–63. http://dx.doi.org/10.34069/ai/2023.68.08.32.

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Building Information Modeling (BIM) technology is rapidly gaining traction in facility management and operations. This software aids in the effective management and exchange of building data, offering valuable benefits throughout construction stages, from planning to maintenance. This study delves into the factors affecting the operational performance of a BIM model and its paramount benefits during the digital design phase. Emphasis is placed on the merits of BIM during the operational phase, primarily using Autodesk Revit software. The research includes an analysis of engineering systems, particularly digital modeling of HVAC, water supply, and electrical systems. Drawing from BIM implementation experiences in Ukraine, the study reviewed significant contributions to digital model designs, examining BIM models across various infrastructure projects. A unique aspect of this research is the development of a digital BIM model using Autodesk Revit 2016, which uses advanced tools to spotlight the benefits of modeling throughout the design process.
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Ramadhan, M. Agphin, and Arris Maulana. "Pemahaman Konsep BIM melalui Autodesk Revit bagi Guru SMK Teknik Bangunan se-Jabodetabek." Wikrama Parahita : Jurnal Pengabdian Masyarakat 4, no. 1 (May 20, 2020): 47–52. http://dx.doi.org/10.30656/jpmwp.v4i1.1886.

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Salah satu penerapan era revolusi industri 4.0 di bidang industri konstruksi adalah Building Information Modelling (BIM). BIM merupakan seperangkat teknologi, proses kebijakan yang seluruh prosesnya berjalan secara terintegrasi dalam sebuah model digital, yang kemudian diterjemahkan sebagai gambar tiga dimensi. Salah satu upaya pemerintah untuk mensosialisasikan penggunaan BIM yaitu dengan menerapkan BIM sebagai kompetensi keahlian di tingkat SMK. SMK Teknik Bangunan yang kini namanya menjadi SMK Teknologi Konstruksi dan Properti memiliki tugas besar dalam menyiapkan SDM Konstruksi yang siap pakai. Salah satu software yang mendukung hal ini adalah Autodesk Revit. Oleh karena itu tujuan pengabdian ini adalah memberikan pemahaman kepada Guru SMK Teknik Bangunan mengenai konsep BIM melalui Autodesk Revit. Peserta kegiatan merupakan guru-guru yang berasal dari SMKN 1 Cikarang Barat, SMKN 3 Depok, SMKN 1 Cibinong, SMKN 1 Karawang, SMKN 1 Jakarta, SMKN 4 Jakarta, SMKN 26 Jakarta, SMKN 35 Jakarta, SMKN 52 Jakarta, SMKN 56 Jakarta, dan SMKN 58 Jakarta. Berdasarkan hasil evaluasi kegiatan, 94% peserta telah memahami konsep BIM setelah mengikuti kegiatan ini.
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Ulinnuha, Nadira Zalfa, Fajar Sri Handayani, and Muji Rifai. "Comparative Analysis of Conventional Methods with BIM Methods on Construction Cost Estimate at Structure Project Design Calculations (Case Study of Construction of A Satpol PP Building)." Sustainable Civil Building Management and Engineering Journal 1, no. 4 (June 11, 2024): 12. http://dx.doi.org/10.47134/scbmej.v1i4.2698.

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Construction cost estimate in construction projects requires high accuracy in calculating work volumes and applying unit cost analysis. Lack of accuracy in calculating the volume of work can result in inaccurate cost estimates, causing project budget overruns. This research discusses the use of 3D BIM planning concepts using Autodesk Revit software to help calculate volumes accurately, with the aim of reducing project budget overruns. Comparative analysis of cost estimates between the use of Autodesk Revit and conventional methods provides an overview of the efficiency and effectiveness of using BIM software in estimating construction project costs. The object of this research is the Satpol PP Bantul office construction project, with a focus on structural work. This research method includes data collection, 3D BIM modeling, calculating cost estimates based on the volume produced using unit cost analysis, and comparative analysis of cost estimates between the use of BIM software and conventional methods. Based on the research results, it found that the construction cost estimate for structural work from Revit had a value of IDR 862,330,518.59 and a difference of IDR 53,420,195.31. This shows that the use of the 3D BIM concept results in 5.83% cheaper calculations than conventional construction cost estimate methods.
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47

Nabiyev, A. S. "SOFTCULTURE IN ARCHITECTURE: INNOVATION AND THEIR FUNCTIONAL COMPATIBILITY." Bulletin of Kazakh Leading Academy of Architecture and Construction 85, no. 3 (September 14, 2022): 75–82. http://dx.doi.org/10.51488/1680-080x/2022.3-07.

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The research article selectively compiled an overview of several modern computer programs used for architectural and engineering calculations in construction, and also examines the culture of their interaction in functional compatibility with other products, and the prospects of digital capabilities. Also, the review and comparative analysis of the functional compatibility of the Autodesk FormIt, Autodesk Revit + Dynamo and Rhinoceros 3D + Grasshopper programs for various kinds of projects where complex calculations and environment objects are modeled based on visual programming, as well as visualization of the concept as having a BIM platform base.
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Santos, Jhonatan, João Dalosto, Henrique Moura, and Alice Silva. "INTEROPERABILIDADE ENTRE OS PROGRAMAS AUTODESK REVIT E EVOP ENGENHARIA PARA ORÇAMENTOS." Enciclopédia Biosfera 16, no. 29 (June 30, 2019): 2383–92. http://dx.doi.org/10.18677/encibio_2019a182.

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49

Ауесбаев, Е. Т., and А. Е. Толеубаева. "Роль информационных технологий в современном строительстве." ТЕНДЕНЦИИ РАЗВИТИЯ НАУКИ И ОБРАЗОВАНИЯ 93, no. 9 (2023): 11–14. http://dx.doi.org/10.18411/trnio-01-2023-437.

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В статье рассмотрены преимущества применения информационных технологий в современном строительстве, а также роль BIM-технологий в строительной отрасли и их внедрение на государственном уровне. Автором приводятся примеры поэтапного применения таких программных обеспечений, как: AutoCAD, Autodesk Revit, ПК ЛИРА САПР. В завершении определены преимущества использования MSProject при организации строительных процессов.
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Arif, Moh Sofyan, Ronny Durrotun Nasihien, and Hendro Sutowijoyo. "BIM Implementation in Mall Laves Project Construction Surabaya." International Journal of Engineering, Science and Information Technology 1, no. 2 (March 29, 2021): 13–15. http://dx.doi.org/10.52088/ijesty.v1i2.49.

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Nowadays, The development of Building Information Modeling (BIM) in Indonesia is very limited, even though the existence of Building Information Modeling (BIM) is very helpful in the Indonesian construction building projects. Mall Laves Surabaya project using several Building Information Modeling (BIM) based software in terms of project management planning. There are Autodesk Revit, Cubicost Glodon, and Autodesk Naviswork software. The purpose of this research is to implementation Building Information Modeling (BIM) in Indonesian project development. The results are 3-dimensional modeling, volume calculations based on 3 dimensions, and project schedule simulations to provide detailed visual information.
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