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Journal articles on the topic 'Autodesk Navisworks'

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1

Andrukhov, Valery, and Vladyslav Matviychuk. "ALGORITHMIZATION OF INTERDISCIPLINAR COORDINATION PARTS OF PROJECT IN DESIGNING IN AUTODESK NAVISWORKS MANAGE." Modern technology, materials and design in construction 26, no. 1 (August 21, 2019): 88–95. http://dx.doi.org/10.31649/2311-1429-2019-1-88-95.

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Ferry, Ferry, and Indrastuti Indrastuti. "PENERAPAN BUILDING INFORMATION MODELLING (BIM) PADA PROYEK PEMBANGUNAN WORKSHOP (STUDI KASUS: PROYEK PEMBANGUNAN WORKSHOP KAPAL DI SEKUPANG)." Journal of Civil Engineering and Planning 1, no. 1 (June 26, 2020): 7. http://dx.doi.org/10.37253/jcep.v1i1.721.

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Pembangunan bidang konstruksi yang semakin meningkat menuntut pihak pelaksana pembangunan untuk penyelesaian aktivitas proyek dengan lebih cepat dan efisien. Pada pelaksanaan proyek konstruksi umumnya banyak menghadapi permasalahn baik kegiatan dengan waktu, biaya maupun mutu. Mengaplikasikan BIM sampai pemodelan 4D dan menganalisi kinerja waktu pada proyek pembangunan workshop kapal merupakan tujuan dari penelitian ini. Software yang digunakan dalam proses pemodelan adalah Revit Structure, Navisworks. Pemodelan 3D diantaranya terdapat pondasi, kolom, balok, pelat dan atap. Menggabungkan jadwal atau schedule dengan model 3D akan menghasilkan pemodelan 4D didalam software Autodesk Navisworks. Analisis kinerja waktu yang dilakukan menggunakan metode kurva S. Penerapan BIM telah dilakukan hingga memperoleh model dalam bentuk 3D dan 4D. Berdasarkan nilai deviasi, proyek ini tidak mengalami keterlambatan sama sekali. Nilai deviasi positif tertinggi +19.15% dan terendah +7.33%. Serta melakukan perhitungan anggaran biaya berdasarkan pemodelan di revit structure dengan total biaya Rp. 5.813.838.429.
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Han, Ning, Zi Feng Yue, and Yuan Fang Lu. "Collision Detection of Building Facility Pipes and Ducts Based on BIM Technology." Advanced Materials Research 346 (September 2011): 312–17. http://dx.doi.org/10.4028/www.scientific.net/amr.346.312.

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As construction space becomes increasingly constrained, the need to avoid collision among various HVAC, sewage and electronic pipes has become a pressing concern for modern building engineering projects. This article uses Building Information Modeling(BIM) technology to construct a three-dimensional piping model and utilizes Autodesk Navisworks software to integrate project data from various operators in order to pinpoint potential conflicts locations and generate a comprehensive ducting collision detection report. The advantages of this virtual construction vehicle include improving engineering, designing quality and efficiency.
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Lee, Chee Kiat, See Hung Lau, and Siaw Yah Chong. "Virtual design and construction (VDC) for double-storey residential building – Case study." E3S Web of Conferences 347 (2022): 01013. http://dx.doi.org/10.1051/e3sconf/202234701013.

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Virtual design and construction (VDC) is a combination of building information modelling (BIM) technologies with adequate work and management scheme for product in supporting people working together in an integrated and simultaneous way. The use of VDC in construction project has positive effects in reducing risk related to design and multidisciplinary coordination. This enhanced the decision-making process by reducing miscommunication issue. This paper presents a case study to investigate the process of integrating different dimensions of information i.e., time (4D) and cost (5D) with a 3D model for doublestorey residential building construction considering the zoning conditions. Implementation of VDC with zoning plan leads to an efficient construction management in project feasibility study. It enabled comparison of a virtual model to evaluate the advantages and practicality of VDC for doublestorey residential building. The 3D architectural and structural models elements are prepared at level of detail (LOD300) using Autodesk Revit. The 3D models are then integrated to simulation software (i.e., Autodesk Navisworks Manage). Visualisation of the project (i.e., 4D and 5D) is achieved as the outcome of the simulation by implementation of VDC. The results revealed that the practicability of VDC was affected by LOD and software interoperability.
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Patel, Bhavya, Nisarg Patel, Akash Patel, and Sameer Patel. "4D Schedule Optimization for Project Monitoring of Existing Educational Building." Proceedings of the 12th Structural Engineering Convention, SEC 2022: Themes 1-2 1, no. 1 (December 19, 2022): 1671–79. http://dx.doi.org/10.38208/acp.v1.704.

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Project management is an important domain, especially in the allocation of resources and smooth operation with an assigned budget. To successfully complete a project, it is important to follow effective ways to use available tools, technique, and methods, considering present technology and management. Recently, Building Information Modelling is one of the techniques which creates, manage, or generate a model by taking physical and functional characteristics of building by using digital presentations. Term 4D modeling refers to fourth dimension that associates the 3D model of any construction project with the planned schedule and provides visualization of the actual sequence of construction activities. The study was carried out to understand the uses and benefits of BIM for better proper functioning of the project in accordance with the project schedule. The objective of the study is to minimise the challenge associated with traditional or conventional scheduling process of construction sequences and misunderstanding brought by the lack of visualization. To fulfill the objective of the study, the uses of different dimensions of Building Information Modelling (2D, 3D and 4D) for preconstruction and construction phase was identified. Then a prototype 4D Building Information Model was created and the BIM based schedule was integrated with it and studied. The software used for scheduling, 3D modelling and 4D simulation are Primavera, Autodesk Revit, and Autodesk Navisworks respectively.
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S, Ramya, and Dr Geena George. "Relative Study on Clash Detection and its Effects on BIM Modelling." International Journal for Research in Applied Science and Engineering Technology 10, no. 9 (September 30, 2022): 1519–25. http://dx.doi.org/10.22214/ijraset.2022.46881.

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Abstract: Designers and builders can simulate a physical environment using BIM, a type of digital technology, before starting actual construction. When developing and building things, various disciplines must work closely together. Each discipline is responsible for providing a unique contribution to the overall design. The objects from other disciplines may, however, occupy the same position in space or the same orientation when the incomplete designs are merged known as 'clash'. A collision of this nature is frequently discovered during construction, necessitating a significant amount of extra time and price. To avoid clashes in the final design, early collaboration is essential. BIM automation techniques can do this and perhaps reduce clashes by coordination of 3D Models. A case study that comprised clash detection between architectural, structural, and MEP BIM models was used to conduct the inquiry. The current study used Autodesk Navisworks Manage and Autodesk Revit as BIM tools to design capabilities to streamline and automatically discover clashes. The analysis of the case study data showed that BIM is a useful tool for identifying conflicts between building components. And an investigative study was done to know the reason why these clashes are created during modeling based on the questioners answered by BIM Modelers. The findings emphasize the need for greater transparency in partnerships where designers from varied backgrounds can work on projects simultaneously. This open and inclusive approach may have an impact on how architects, engineers, and construction professionals are trained in the future.
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Butorina, Marina, Lyudmila Drozdova, and Denis Kuklin. "IMPLEMENTATION OF NOISE DATA INTO BUILDING INFORMATION MODEL FOR TRANSPORT AND UNDUSTRIAL NOISE REDUCTION." Akustika 34 (November 1, 2019): 7–12. http://dx.doi.org/10.36336/akustika2019347.

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Noise mapping is the best way to present information on the acoustic pollution. To design noise protection measures, authors use modern software package SoundPLAN, which is based on the up-to-date normative documentation and scientific researches. The program allows importing the results of calculations to Autodesk tools. Improving the efficiency of the noise protection design process is executed through the implementation of building information modeling (BIM). Data exchange between SoundPLAN, AutoCAD 3D or Revit and Navisworks is used in the development of building information model. In the article we present a new approach to noise reduction through implementation of noise data into the overall information model of the infrastructure or building project. BIM helps to track the collision of calculated noise levels with residential buildings, protected premises and work places. It lays a basis for the sound proof allocation of work places and development of protection measures. BIM also serves as a support tool for the design process of sound protection barriers, since it helps to avoid interconnection of noise barriers basement with engineering networks or paste a barrier in the proper place to provide its efficiency.
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Llanos Díaz, Sergio, Sujei Ñaupa Mamani, and Samuel Marca Arocutipa. "Análisis de rentabilidad en la etapa de diseño entre un modelo bidimensional CAD y un modelo BIM para el proyecto de Intercambio Vial, Km 25+115.85 de la Autopista Juliaca - Puno." TecnoHumanismo 2, no. 1 (2022): 15–32. http://dx.doi.org/10.53673/th.v2i1.90.

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El presente artículo tiene como objetivo el estudio de la rentabilidad que produce la aplicación de la tecnología Buildig Information Modeling (BIM), en la etapa de diseño del expediente, frente al método tradicional de cálculo que se fundamenta en dibujos en dos dimensiones (2D). El caso de estudio es la estructura formada por planchas de acero corrugado galvanizado (Multiplate MP152), cimentación y muros de concreto armado, relleno estructural y pavimento flexible, del proyecto de Intercambio Vial, Km 25+115.85 de la Autopista Juliaca - Puno. Se presenta la metodología para el desarrollo del modelo BIM teniendo en cuenta cinco variables (dimensión en el eje x, dimensión en el eje y, dimensión en el eje z, tiempo y costo), con la integración de información utilizando herramientas como software de Autodesk: Recap, Civil 3D, Revit, Infrawork y Navisworks. Se efectúa una comparación del Diseño de las partidas más importantes, obtenido con el método tradicional y con la utilización de BIM, a partir de la cual es posible verificar el aporte y/o rentabilidad que produce la implementación de BIM en el diseño de estas partidas. Como resultado de la modelación en BIM, se valora un ahorro de 24 % en cuanto al tiempo de ejecución y en función de la rentabilidad se estima que dicho ahorro con BIM es de 43.81 % con relación al CAD concluyendo que la tecnología BIM es más sencilla y eficaz de gestionar, agilizando todos los procesos de diseño.
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Anderson, Anne, and Shobha Ramalingam. "A socio-technical intervention in BIM projects – an experimental study in global virtual teams." Journal of Information Technology in Construction 26 (July 26, 2021): 489–504. http://dx.doi.org/10.36680/j.itcon.2021.026.

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‘Global Projects’ and ‘Global Virtual Teams’ are revolutionizing the construction industry. An increasing number of multi-national engineering firms are adopting this business model due to the possible advantages of cost and time optimization. However, literature identifies several challenges that the project teams endure in temporarily organizing while transitioning through time and space, some of which include cross-cultural differences in teams and limited richness of the communication media. Perceiving virtual project execution as a multi-variable construct, organizational theorists and sociologists adopt a socio-technical approach to understand the dynamics of action embedded in the process and recommend implementation of pre-process, during process or post process intervention strategies to enable performance. In this paper, we address this research concern through an experimental study conducted across two global universities, National Institute of Construction Management and Research, Pune, India and Washington State University, USA. Around 24 students from each university in ten teams collaborated virtually for a period of 2.5 weeks to develop a 3-dimensional Revit model and a 4-dimensional BIM model in Autodesk Revit and Navisworks, respectively, for a multi-storey residential building. The study aimed to investigate the role of project teams in organizing and coordinating projects tasks and taking a socio-technical approach, explored the role of a BIM Execution Plan as a pre-process intervention strategy. Data collected through qualitative survey post the experiment was qualitatively analyzed using ethnographic coding techniques. Findings showed that the project and team challenges primarily stemmed from coordination issues and institutional differences. Members significantly mitigated the issues through a proactive approach and a priori planning. The BIM Execution Plan allowed members to instantly get involved with the tasks and plan the process apart from being able to foresee the complexity. Teams emphasized the importance of implementing a detailed BIM Execution Plan during the planning phase for a collaborative and successful project outcome and further observed that pre-process intervention strategy such as a BIM plan was the needed impetus for members to collaborate and coordinate project tasks.
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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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Babatunde, Solomon Olusola, Srinath Perera, Damilola Ekundayo, and Tolulope Esther Adeleye. "An investigation into BIM-based detailed cost estimating and drivers to the adoption of BIM in quantity surveying practices." Journal of Financial Management of Property and Construction 25, no. 1 (November 23, 2019): 61–81. http://dx.doi.org/10.1108/jfmpc-05-2019-0042.

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Purpose Although studies have shown the relevance of building information modeling (BIM) in cost estimating process, efforts at investigating BIM based detailed cost estimating among professional quantity surveyors through quantitative approach are scanty. The purpose of this study is to identify and examine the usage of BIM-based detailed cost estimating software and assesses the drivers to BIM adoption within the Nigerian quantity surveying consulting firms. Design/methodology/approach A comprehensive literature review, pilot study and questionnaire survey were adopted. The survey targeted both the BIM users and non- BIM users’ quantity surveying consulting firms in Lagos, Nigeria. The data collected were analyzed using frequency, percentage, mean score, standard deviation, Mann–Whitney test and factor analysis. Findings The study found that 46.58 per cent of quantity surveying consulting firms are aware of BIM and have adopted it for detailed cost estimating, while 49.32 per cent of quantity surveying consulting firms are aware but have not adopted BIM-based detailed cost estimating, and 4.10 per cent of quantity surveying consulting firms are not aware at all. Also, the study identified various BIM-based detailed cost estimating software used in quantity surveying practices and found that Microsoft Excel is often used alongside 3D software, Autodesk QTO, Navisworks, Innovaya Composer and CostX are prevalent BIM software used for detailed cost estimating. In addition, the study identified 21 drivers to the adoption of BIM in quantity surveying practices. The result of factor analysis grouped the 21 identified drivers into five principal factors: improved whole lifecycle/design quality, enhanced decision and visualization, cost and time saving, marketing and support for quantity surveyor tasks and government and client pressure. Practical implications This study provides significant insight into the application of BIM to quantity surveying consulting practices, thereby enabling consultant quantity surveyors to make informed decisions to select BIM cost estimating software to suit their practices. Further, the study findings can be useful for individuals’, clients’ and contractors’ quantity surveyors to be fully aware of the opportunities BIM could bring in relation to their service delivery. Originality/value Accurate cost estimating, effective cost monitoring and control are essential elements to a construction project success. This study further emphasized the importance of BIM to quantity surveying practices, particularly in the area of the detailed cost estimating.
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Ferial, Rudy, Benny Hidayat, Regi Citra Pesela, and Darwizal Daoed. "Quantity take-off berbasis building information modeling (bim) studi kasus: gedung bappeda padang." Jurnal Rekayasa Sipil (JRS-Unand) 17, no. 3 (February 26, 2022): 228. http://dx.doi.org/10.25077/jrs.17.3.228-238.2021.

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Penelitian ini bertujuan untuk mengetahui penggunaan software Autodesk® Revit® dan Autodesk® Naviswork® Manage untuk pekerjaan Quantity Take-Off dan menganalisa perbedaan hasil perhitungan QTO berbasis Building Information Modeling dan QTO manual. Studi kasus penelitian adalah Data Perencanaan Gedung Bappeda Kota Padang. Penelitian dilakukan dengan membuat BIM Model Gedung tersebut berdasarkan Detail Engineering Design. Selanjutnya dilakukan review model dengan tools Clash Detection pada Autodesk® Naviswork® Manage, selanjutnya BIM Model tersebut dihitung volumenya. Hasil perhitungannya kemudian dibandingkan dan dianalisa. Hasil penelitian menunjukan bahwa ada beberapa kelebihan dan kekurangan dalam penggunaan software tersebut untuk pekerjaan QTO. Item pekerjaan arsitektur yang dihitung sebanyak 146 item pekerjaan, ditemukan 88 pekerjaan sesuai dengan volume manual, 4 pekerjaan hampir sesuai dengan volume manual, 10 pekerjaan tidak sesuai dengan volume manual dan 44 pekerjaan tidak dapat dihitung. Item pekerjaan stuktur yang dihitung sebanyak 122 item pekerjaan, ditemukan 113 pekerjaan sesuai dengan volume manual, 2 pekerjaan hampir sesuai dengan volume manual, 6 pekerjaan tidak sesuai dengan volume manual dan 1 pekerjaan tidak dapat dihitung.
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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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Biancardo, Salvatore Antonio, Francesca Russo, Rosa Veropalumbo, Viktoras Vorobjovas, and Gianluca Dell’Acqua. "Modeling Roman Pavements Using Heritage-BIM: A Case Study in Pompeii." Baltic Journal of Road and Bridge Engineering 15, no. 3 (August 14, 2020): 34–46. http://dx.doi.org/10.7250/bjrbe.2020-15.482.

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The study of ancient stone pavements represents the necessary premise for planning and execution of treatments that considers the necessity of conservation. The approach to the integrated management of information derived through H-BIM has been applied to Via del Vesuvio, one of the main roads in the archaeological site of Pompeii in Naples, Italy. The digital terrain model was carried out using Autodesk Infraworks software. Then, using Autodesk Civil 3D and Revit software, the road was digitalized creating the 3D model that included road geometric information resulting from an on-site survey, material characteristics for each pavement layer, construction period and related construction cost information. Finally, based on the existing research works available in the literature review, using Autodesk Naviswork software, it was possible to implement in the 3D model the BIM fourth dimension, namely, the time related to the construction of Via Del Vesuvio in different eras. The interoperability between the adopted BIM authoring software was exploited. The adopted procedure can be considered a benchmark case in the technical literature of H-BIM for stone pavements, highlighting the advantages in the design field.
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Biancardo, Salvatore Antonio, Nunzio Viscione, Cristina Oreto, Rosa Veropalumbo, and Francesco Abbondati. "BIM Approach for Modeling Airports Terminal Expansion." Infrastructures 5, no. 5 (May 7, 2020): 41. http://dx.doi.org/10.3390/infrastructures5050041.

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Smart societies will make more intelligent use of Information and Communication Technology (ICT), which has the potential to transform the way to plan and manage infrastructures. New developments in computer hardware, as well as new applications and software, are changing the face of the infrastructure sector and society more generally, driving greater efficiency, increasing productivity, and greatly simplifying construction processes and life-of-asset maintenance. In European countries, the adoption of Building Information Modeling (BIM) standards have been expedited. In this research article, the architectural-structural model in a BIM environment of the elevated walkway connecting the gate with the runway, a project named “IV Bridge” under construction for the expansion of the departure area of Naples Capodichino International Airport, is carried out. Software including Autodesk family, Revit for the architectural/structural model, Robot Structural Analysis (RSA) for the analytical verification and Naviswork (NW) for the 4D/5D model were used. The effectiveness and benefits obtained by implementing the BIM methodology are discussed, showing a reduction in terms of construction times and costs.
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Khasbage, Yugandhara R. "STUDY ON BUILDING INFORMATION MODELING AND IMPLEMENTATION OF CLASH DETECTION TOOL IN BUILDING DESIGN." INTERANTIONAL JOURNAL OF SCIENTIFIC RESEARCH IN ENGINEERING AND MANAGEMENT 06, no. 06 (June 13, 2022). http://dx.doi.org/10.55041/ijsrem14580.

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Building Information Modeling (BIM) is recently becoming popular and a extremely economical resolution for information management in Architecture, Engineering and Construction (AEC) industry. In Indian construction state of affairs most of the projects are still using 2D CAD drawing for his or her execution purpose. These 2D CAD drawings have lot of issues during execution like miscommunication, misunderstanding and time consuming process etc., This sort of errors and cost is reduced while using this BIM process Clash detection tool is an application of BIM which is employed for the coordination of building systems within 3D building models. This report gives a short introduction about Clash detection in BIM and it focus the methodology involved conducting clash detection analysis using building information modeling. This work involves searching for, how this clash detection tool helps to optimize of clashes in construction of particular building using BIM Coordination. The methodology involved in this report will be study of a G+3 residential building which consist of an architectural, structural and Mechanical, Electrical and Plumbing (MEP) BIM models and their subsequent clash detection analysis is done in this study, commercial software like as Autodesk Revit 2021, Autodesk Navisworks Manage 2022 are used. It also focuses on the methods of simplifying and standardizing the method of Clash Detection using Autodesk Navisworks. The entire cost of the project won't be increased and completion of the project on time and avoids overruns of budget. Key Words: BIM, Clash detection, Navisworks ,Revit etc
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Yeşilyurt, M., and E. Ergen. "Assessment of the Capabilities of Commercial Tools to Develop 4D/5D Models." Tamap Journal of Engineering 2018, no. 1 (February 4, 2019). http://dx.doi.org/10.29371/2018.3.63.

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Building Information Modeling (BIM), which is developed for improving the collaboration and interoperability in the construction sector has many dimensions. While “3D model” is developed to visualize the buildings, simulation-based “4D model” integrates 3D model with time and “5D model” is attained as a result of including cost in the 4D model. The purpose of this study is to define 5D modeling in detail and to assess the capacities of 4D/5D modeling software packages via comparison. To assess the capacities of 4D/5D modeling software packages, a test case was developed. A 3D model of a project was created in Autodesk Revit 2017 and 4D/5D models of the building were developed by using Autodesk Navisworks Manage 2017, Synchro Pro 2016.2 and Trimble Vico Office R6.0 software packages. In the test case, the stages and their durations when preparing 4D/5D models were identified and the advantages and disadvantages of each software package were determined. The results of the study could be used as a guide by the companies desiring to conduct 4D/5D application in the sector.
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"Time and Resource Management of Residential Apartment Construction using Building Information Modeling." VOLUME-8 ISSUE-10, AUGUST 2019, REGULAR ISSUE 8, no. 10 (August 10, 2019): 4238–46. http://dx.doi.org/10.35940/ijitee.j9951.0881019.

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To complete a project under the complicated situations, it is important to follow effective ways to use available tools and methods, taking into account present technology and management. Also, it is challenging to prepare accurate and achievable plans in large construction projects. Visualizing forms at an early stage in building design improves the ability of designers to deliver ideas and the capability to inspect and assess the methods helps to predict and optimize the actual presentation of the construction project. These different features form the basis for Building Information Modeling (BIM). The archetypal problems like budget overflow, lack of communication, cost overruns, overtime delays, rework can be minimized with the use of Building Information Modeling (BIM) tools for building design & resource management. In this paper, the concept of Building Information Modelling (BIM) is used for 3D modeling, which involves 4th dimension as Time (4D), 5th dimension of Cost (5D) of the project. A case study of G+5 residential apartment is presented for 3D BIM modeling and quantity take-off with the commercial software Autodesk Revit 2019. The 4D BIM carried out using Primavera P6 is explained with methodology for a case study. Further, Autodesk Navisworks Manage 2019 is used for 5D BIM, which includes a graphical presentation of the construction schedule and cost estimation of the case study.
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Oenning, Kelyn Gonçalves, and Júnior Serafim Corrêa. "Estudo De Caso: Modelagem E Verificação De Interferências Entre As Disciplinas De Um Edifício Utilizando A Metodologia Bim." Revista Científica Multidisciplinar Núcleo do Conhecimento, April 16, 2021, 30–43. http://dx.doi.org/10.32749/nucleodoconhecimento.com.br/engenharia-civil/edificio-utilizando.

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Com o passar dos anos, os projetos de construção civil começaram a aumentar sua complexidade e a metodologia tradicional, que se baseia em documentação 2D, não está suprindo de forma eficiente as demandas de mercado. As disciplinas de projetos, estão cada vez mais sendo designadas a equipes distintas, ocorrendo o aumento de interferências de projetos, que geram atrasos, retrabalhos e custos além do previsto. O processo mais comum de verificação destas interferências é através da sobreposição das plantas em 2D, porém, além de desgastante, este processo ignora alguns erros que só apareceriam em vistas tridimensionais. Este trabalho teve como objetivo a aplicação dos conceitos da metodologia BIM (Building Information Modeling) em um estudo de caso que visou a modelagem e análise de interferências dos projetos arquitetônico, estrutural, hidrossanitário e elétrico de uma edificação mista residencial multifamiliar e comercial. Para tanto, foi realizada a modelagem tridimensional a partir dos projetos já finalizados em CAD 2D, modelando-os no software Autodesk Revit® e os associando através do software Autodesk Navisworks®. A partir da modelagem e as 9 associações realizadas na compatibilização, foi possível obter um total de 162 interferências, que foram detectadas na fase de projeto e que seriam constatadas, provavelmente, apenas na fase de execução. É possível admitir que a associação mais problemática encontrada neste trabalho foi a relação entre as disciplinas de estrutura e de instalações hidrossanitárias, com 42,60% das interferências.
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Hasannejad, Ali, Javad Majrouhi Sardroud, Ali Akbar Shirzadi Javid, Towhid Purrostam, and Mohammad Hasan Ramesht. "An improvement in clash detection process by prioritizing relevance clashes using fuzzy-AHP methods." Building Services Engineering Research and Technology, April 14, 2022, 014362442210800. http://dx.doi.org/10.1177/01436244221080023.

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Design coordination and clash detection are the most common and appreciated applications of three-dimensional modeling (3D modeling). In some projects, millions of clashes are detected including a large number of irrelevant clashes. The purpose of this research is to determine the priority of resolving clashes before the construction phase. In this research, the results of Autodesk Navisworks have been used to improve the process of clash detection. Also, this study attempts to use the fuzzy-AHP for weighting criteria and then, by presenting a relationship, to provide a basis to prioritizing clashes for their resolution and, finally, for identifying irrelevant clashes. This method has been tested on a real project, and the comparison of the expert opinions and the proposed method showed that applying the proposed relationship can identify important and irrelevant clashes. Practical application If clashes are not carefully detected in the design stage, project management components face a serious challenge. In this study, using the weight of clash elements and the degree of penetration of clash elements into each other, a logical and practical relationship is presented that improves the process of clash detection.
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21

Alijani Mamaghani, Omid, and Esmatullah Noorzai. "A framework to implement augmented reality based on BIM to improve operation and maintenance of mechanical facilities of commercial complexes." Facilities, January 10, 2023. http://dx.doi.org/10.1108/f-04-2022-0064.

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Purpose The mechanical facilities of large-scale buildings have many complexities, so facility management (FM) encounters a massive amount of information during the operation, and inspection is not implemented efficiently. This study aims to integrate building information modeling (BIM), augmented reality (AR) and sensors to mitigate the operation and maintenance (O&M) problems of mechanical facilities by establishing intelligent management. Design/methodology/approach The component-level data of an under-construction commercial complex were implemented in a 3D model in Autodesk Revit and Navisworks. Then, sensors were installed in mechanical facilities to provide vital online information for the model. Moreover, Unity was used on Vuforia for the AR visualization of the devices. Findings It was found that FM not only could obtain building information but can also visualize the functioning of mechanical facilities online through a 3D model in BIM. Thus, in the case of a failure, the AR platform is used on tablets, smartphones and smart glasses to show the technician how mechanical facilities can be repaired and maintained. Originality/value Previous studies focused on some factors and processes to improve mechanical FM and did not cover the entire aspect. However, this method reduces the average maintenance time, extends the lives of mechanical devices and prevents unpredicted failures.
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22

Hasan, Rakibul, Md Farhad Hossain Rakib, and Mizanoor Rahman. "Quantification of Construction Waste through BIM." Journal of Technology Management and Business 9, no. 1 (June 29, 2022). http://dx.doi.org/10.30880/jtmb.2022.09.01.007.

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Nowadays, green environment is a great concern in the construction industry because of its rapid growth in the construction sector and its direct connection with the detrimental impact on the environment. The construction sector contributes about 23% of air pollution, 50% of the climatic change, 40% of drinking water pollution, and 50% of landfill wastes. Developing country like Bangladesh did not use any proper waste estimation process or tools which can efficiently estimate the volume of materials needed for a construction project which always results in wasting excessive materials. Waste estimation can determine the volume of materials even in the pre-construction stage and thus reducing waste, cost and environmental impact. In the light of the gap of existing tools and methods to estimate the waste amount, Building Information Modelling (BIM) based system plays a vital role to estimate construction waste in the region of the rising amount of construction waste. In this paper, clash detection process has been described to estimate construction waste with the help of Autodesk Navisworks Manage software. Clash detection process contributes to estimate a large amount of waste among total waste generated in a building model. Different manual approaches have also been described that can estimate the total amount of construction waste. This paper also presents an example scenario with a 4-storied residential building model to demonstrate construction waste estimation systems. The case study shows that BIM-based waste estimation using clash detection could prevent 40-45% of construction waste that might have been generated without using BIM.
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Nafe Assafi, Mohammad, Md Mehrab Hossain, Nicholas Chileshe, and Shuvo Dip Datta. "Development and validation of a framework for preventing and mitigating construction delay using 4D BIM platform in Bangladeshi construction sector." Construction Innovation, August 23, 2022. http://dx.doi.org/10.1108/ci-08-2021-0160.

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Purpose As a developing nation, Bangladesh still has scarce technological applications in the construction sector, which results in construction delays. This paper aims to propose a framework that will diminish manual labor, reduce human error and apply four-dimensional (4D) building information modeling (BIM)-based solutions to mitigate and prevent construction project delays. Design/methodology/approach First, a systematic literature review was conducted on analyzing the construction delay scenario in the context of Bangladesh and other countries. Next, a 4D BIM-based framework was developed using Autodesk Navisworks Manage. Finally, it was used to run on-site simulations on an ongoing construction project which faced delays because of design errors and inefficient planning. Findings Affirmative results were found from applying these methods through real-time project simulation. The current status of the project and the status after using BIM technology were compared. It was observed that during both the preconstruction and execution phases, the application of 4D BIM could reduce the delay posed by design error and inefficient planning. Practical implications The project manager and the design engineers can use these frameworks to review their projects. For the design engineers, the preconstruction phase portion of the framework will help identify the probable errors in the design. For the project managers, keeping track of time using the execution phase portion of the framework will be resourceful. Originality/value To the best of the authors’ knowledge, this study is the first to assess the significant delay factors endemic in Bangladesh and develop a BIM-based technological solution. This study is solely dedicated to reforming the construction techniques in Bangladesh through the application of 4D BIM technology.
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Mohandes, Saeed Reza, Abdul Kadir Marsono, Hossein Omrany, Amir Faghirinejadfard, and Amir Mahdiyar. "COMPARISON OF BUILDING EXISTING PARTITIONS THROUGH BUILDING INFORMATION MODELING (BIM)." Jurnal Teknologi 75, no. 1 (June 29, 2015). http://dx.doi.org/10.11113/jt.v75.3668.

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Partition walls are considered as one of the most crucial elements on interior space within the buildings. While a considerable amount of research has been carried out studying theses critical elements to be used on the interior space of the buildings, BIM has not been exploited so far in order to enhance the accuracy of work. Therefore, the main purpose of this study is to compare three types of commonly used partition walls in terms of materials, time and cost needed to install each of them using BIM. To achieve the specified goal, a case study was chosen. The framework used in this study consists of modeling the installation steps of each partition wall based on the chosen case study using Revit Architecture and Autodesk Inventor. In order to calculate the materials, time and cost required, Naviswork Manage was employed and it was found that drywall could be considered as the most useful one to be installed on the interior space of the buildings in comparison to the other two types of partitions.
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