Academic literature on the topic 'Autodesk Navisworks Manage'

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Journal articles on the topic "Autodesk Navisworks Manage"

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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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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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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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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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Dissertations / Theses on the topic "Autodesk Navisworks Manage"

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Holm, Daniel, and Josefine Wallgren. "Kvalitets- och kollisionskontroller i BIM-projekt : En analytisk jämförelse mellan programvarorna Autodesk Navisworks Manage, Solibri Model Checker och Tekla BIMsight." Thesis, KTH, Byggteknik och design, 2013. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-127033.

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I ett BIM-projekt skapas ett flertal intelligenta 3D-modeller innehållande geometrier och information. Respektive fackområde skapar modeller innehållande sina byggdelar och installationskomponenter. Genom att samordna modellerna från alla områden skapas en BIM-modell över hela projektet. En förutsättning för att projekteringen ska effektiviseras är att modellerna håller god kvalitet. Då allt fler byggnader projekteras i 3D-miljö finns det idag goda möjligheter att underlätta arbetet med kvalitetssäkring. Det finns ett flertal programvaror där det är möjligt att sammanfoga och granska modeller. Förutom att upptäcka kollisioner och kvalitetsfel, innehåller programmen flera andra funktioner som kan effektivisera projekt. En egenskap är möjligheten att virtuellt gå omkring i en byggnad innan den uppförs. Det finns även möjlighet att mäta avstånd, rita och göra noteringar i modellen och dess vyer, vilket är till hjälp när den ska granskas av de olika disciplinerna. Bakgrunden till det här examensarbetet är att konsultföretaget Byggteknik AB vill veta vilken programvara för samordning som uppfyller deras behov bäst. Genom implementering av programvaran vill de kunna ta på sig samordningsansvaret i framtida BIM-projekt. Frågeställningen är: Vilken programvara lämpar sig bäst för konsultföretaget Byggteknik AB? Den besvarades genom att en fallstudie genomfördes. I fallstudien jämfördes tre olika programvaror för kvalitets- och kollisionskontroller; Autodesk Navisworks Manage, Solibri Model Checker och Tekla BIMsight. Svaret på frågeställningen, som presenteras i rapporten, är att Autodesk Navisworks Manage är den programvara som i dagsläget lämpar sig bäst för Byggteknik AB.
In a BIM-project several intelligent 3D-models is being created. The 3D-models contain both geometries and information. Each discipline creates models containing their building and installation components. By coordinating the models from all the disciplines, a BIM-model of the entire project is being created. A prerequisite for the design to be effective is that the models have a good quality. Today there are good opportunities to facilitate the work of quality assurance, since more and more buildings are designed in 3D. There are several softwares for merging and checking models. In addition to detecting collisions and quality defects, the software can do several tasks to make projects more effective. One feature is the ability to virtually walk around in the building before it is constructed. It is also possible to measure distances, draw and make notes in the model and its views, which is helpful when it will be reviewed by the various disciplines. The background to this thesis is that the consultancy Byggteknik AB would like to know what software for coordination that meets their needs best. By implementing the software, they want to be able to assume responsibility for coordination in future BIM-projects. The question for this thesis is: What software is best suited for the consultancy Byggteknik AB? To answer the question a case study was conducted. In the case study three different softwares for quality and collision checks was being compared. The softwares being compared were Autodesk Navisworks Manage, Solibri Model Checker and Tekla BIMsight. The answer to the question, presented in this report, is that Autodesk Navisworks Manage in the current situation is best suited for Byggteknik AB.
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Victor, Nyström. "En utredande jämförelse av programvaror vid BIM-samordning." Thesis, Örebro universitet, Institutionen för naturvetenskap och teknik, 2018. http://urn.kb.se/resolve?urn=urn:nbn:se:oru:diva-69681.

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BIM är en fras som har tagits upp allt frekventare inom byggbranschen senaste åren. Uttrycket har olika innebörd beroende på vem som tillfrågas och dennes kunskap inom området. BIM-verktyg är något som med åren också har ökat på marknaden. Verktygen har olika användningsområden beroende på vilken aktör som ska utnyttja det. I BIM-projekt används såkallade samordningsverktyg för att bland annat kontrollera olika discipliners modeller där valet av programvara är avgörande beroende på funktionalitet och nyttjare.  I detta arbete studerades två programvaror som kan användas vid BIM-samordning. Genom en fallstudie har det undersökts vilket utav programvarorna Autodesk Navisworks Manage 2015 och Solibri Model Checker 9.5 som passar bäst för Grontmij AB i Eskilstuna efter deras behov och förutsättningar. Efter en grundlig studie av båda programvarorna påvisar rapporten att den rekommenderade programvaran specifikt för Grontmij AB i Eskilstuna är Solibri Model Checker 9.5 i enlighet med företagets behov och förutsättningar.
BIM is a phrase that has been raised increasingly frequent in the construction industry in recent years. The term has different meanings depending on who is asked. BIM tools is something that over the years also has increased on the market. The tools have different use depending on the user. Bim projects use so-called coordination tools for including control of various disciplines models where the choice of software is different, depending on functionality and users. This thesis addresses two software programs that can be used in BIM coordination. Through a case study, the author investigated which of the softwares Autodesk Navisworks Manage 2015 and Solibri Model Checker 9.5 is best for Grontmij AB in Eskilstuna to their needs and circumstances.
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Conference papers on the topic "Autodesk Navisworks Manage"

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Ribeiro, Sandra Albino, and Paulo Fernando Krauss. "Análise comparativa entre versões de arquivos IFC utilizando a verificação de interferência." In SIMPÓSIO BRASILEIRO DE TECNOLOGIA DA INFORMAÇÃO E COMUNICAÇÃO NA CONSTRUÇÃO. Antac, 2019. http://dx.doi.org/10.46421/sbtic.v2i00.176.

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A adoção da metodologia BIM vem crescendo nos últimos anos nos níveis internacional e nacional e, com ela, o fluxo de trabalho, que envolve todas as etapas do ciclo de vida do edifício, está se tornando mais eficiente, reduzindo erros, atrasos e custos. Nesse contexto, a troca e a integração de informações ocorrem em vários formatos, sendo o mais conhecido deles o IFC, que evoluiu desde a sua criação nos anos 1990 e pode ser importado e exportado por vários softwares BIM. Apesar de sua importância para o BIM, no Brasil existem poucos estudos sobre o IFC, especialmente quando se refere à análise de suas versões. O presente estudo teve como objetivo avaliar a diferença entre as versões IFC 2x3 e IFC4 através da detecção de interferência utilizando o software Autodesk Navisworks Manage. A metodologia utilizada foi a pesquisa exploratória, desenvolvida a partir de um estudo de caso. OS resultados revelaram que existem diferenças e estas podem interferir na percepção dos conflitos durante a compatibilização.
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Ribeiro, Sandra Albino, and Edy Jones Barbosa. "Coordenadas em modelo BIM." In ENCONTRO NACIONAL SOBRE O ENSINO DE BIM. Antac, 2021. http://dx.doi.org/10.46421/enebim.v3i00.303.

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O Modelo Federado, também conhecido por Modelo Integrado e Modelo Multi-Disciplinar, é definido pela combinação de vários modelos BIM (arquitetura, estrutura, instalações e outros) em um único ambiente virtual. O entendimento desse conceito é fundamental para o adequado fluxo de trabalho em BIM e a partir dele é possível realizar diversas ações como a coordenação de modelos e compatibilização de projetos. Além disso, mediante a ajustes em qualquer modelo de autoria o modelo federado pode ser atualizado de modo síncrono. Diversos meios possibilitam a criação do modelo federado entre eles o BIMSync, Trimble Connect, BIMColab zoom usBIM.Clash, Navisworks Manage, Revit entre outros. Diante deste cenário, o presente trabalho apresenta um material didático, transcrito como um guia prático, que explana os pontos de referências e coordenadas no modelo de autoria e as suas implicações no processo de federação. Esse material foi elaborado recetemente a partir de experimentações práticas e após consultas a profissionais do mercado e está sendo aplicado no curso Especialista BIM Autodesk. Apresentação no YouTube: https://youtu.be/56ygmebbee0
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