Academic literature on the topic 'Autodesk Revit Architecture'

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Journal articles on the topic "Autodesk Revit Architecture"

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Bolotin, S. A., A. I. Gurinov, A. Kh Dadar, and Z. Kh Oolakay. "An energy efficiency evaluation of architectural and construction solutions of an initial design stage in Autodesk REVIT Architecture." Magazine of Civil Engineering 43, no. 8 (December 2013): 64–73. http://dx.doi.org/10.5862/mce.43.9.

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Zanina, Anna, Olga Kitsenyuk, Yuriy Morozov, Andrey Dzhur, and Ilya Serbin. "3D models of buildings of the future for use in construction printing." E3S Web of Conferences 244 (2021): 05022. http://dx.doi.org/10.1051/e3sconf/202124405022.

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The article presents the development of conceptual models of buildings constructed with using Building Information Modeling software complexes. It describes the advantages and disadvantages of modern additive technologies. Features of their using are specified. Examples of their integration in modern construction are shown. Construction areas for which building models were developed were selected. The main ways of development of construction in the selected areas of activity are indicated. An analysis of current trends in the field of architecture is presented, and a forecast of future architectural trends for the coming decades based on the results provided by 3D Fast Build technology is made. The functional features of the buildings construction of the designated time period are taken into account. They were theoretically integrated into selected objects related to various construction areas, with their further design and modeling in the Autodesk Revit program, taking into account all identified trends and expected functionality.
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Vasov, Miomir, Dragan Cvetkovic, Veliborka Bogdanovic, and Igor Bjelic. "Assessment of reliability predictions of the reverberation time by using the architectonic software package Ecotect." Facta universitatis - series: Architecture and Civil Engineering 15, no. 3 (2017): 359–70. http://dx.doi.org/10.2298/fuace170808022v.

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Contemporary architectonic design mostly relies on the software tools which enable the engineers to analyze multiple factors affecting a space, and to timely detect and correct certain errors in designing, resulting from attempting to satisfy certain aspects of a space at the expense of others. Those tools which apart from architecture itself also consider other fields of science, depending on the function of these areas are important; thus in the lecture halls designing process, adequate software for analysis is used. In addition to a number of acoustic parameters characterizing the acoustic response of a room, in terms of design, one of the most important factors affecting the acoustics of the indoor areas is reverberation time, which is characterized by the architectonic parameters: room volume (dimensions), shape (form) and materialization (finish material). In this paper, for the purposes of acoustic analysis of the A amphitheater, the parametric values obtained in two ways, by experimental measuring and by software - Autodesk Ecotect and Autodesk Revit Architecture are compared. The software is increasingly used in contemporary architectonic software because of the option to analyze acoustics of indoor space, so there is a need to analyzed the values provided by the software and compare them with actually measured reverberation time.
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Popova, O., N. Silvestrova, and V. Koshel. "MODERN SOFTWARE FOR COMPUTER MODELING IN ARCHITECTURAL EDUCATION." Municipal economy of cities 1, no. 161 (March 26, 2021): 82–87. http://dx.doi.org/10.33042/2522-1809-2021-1-161-82-87.

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The article considers the most modern software that can be used in the development of various architectural and design projects of interior and exterior spaces, as well as highlights the features and benefits of using each of them in projects within the disciplines of specialty 191 Architecture and Urban Planning. The main problem of modern architectural education is that with evolution of computer technologies, began the active development, implementation and modernization of various software tools for various types of design, 3-D modeling, sketching, etc. This area has developed very rapidly and almost every year new versions of programs are developed, where new features appear that increase the quality, efficiency, convenience and speed of work with these programs. Due to such a rapid software update, the previously developed curricula for the specialty 191 Architecture and Urban Planning need to be updated. Today in the world there is a situation that the greater the number of programs owned by the employee and the higher the skill of working with them, the greater the value and need for staff in the global labor market. Therefore, modern educational programs need to be modernized by introducing practical work with new software, which was discussed in the article. Namely, the Magic Plan, Ruler App and Photo Ruler programs that will be useful for measuring the designed premises. Home Design 3D and Homestyler interior design programs will come in handy for developing and approving a general interior design solution with a customer. To develop the working documentation, the CAD programs Autodesk Revit, Autodesk Autocad, Graphisoft Archicad and the BIMx Viever application were considered. BIMx Viever may be needed for demonstrating the work done to the customer or additional consultations with him. The article also discussed 3-D modeling programs Sketchup, Sculptris, Autodesk 3ds Max, Grasshopper and visualization programs Corona Render, V-Ray, Lumion and Abvent Artlantis. Additionally, the programs that may be needed for designing a project album were considered, they include CAD programs, programs for working with PDF files such as Adobe Acrobat Reader, and graphic editors Adobe Photoshop and its analogues.
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Papadopoulos, Nicolas Alexandros, Elisa Dominguez Sotelino, Luiz Fernando Martha, Daniel Luiz Mattos Nascimento, and Pedro Saieg Faria. "Avaliação da integração entre uma plataforma BIM e uma ferramenta de análise estrutural." Sistemas & Gestão 1, no. 1 (July 22, 2017): 108. http://dx.doi.org/10.20985/1980-5160.2017.v1n1.1203.

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<p>Today, the process<strong> </strong>of building an enterprise is based on printed and disconnected documents. There is a global tendency that a project is designed by many companies and different teams, however computer tools used in present time are the same from decades ago. Due to the chang in paradigm, the methodology known as building information modeling (BIM) is little by little finding space in the area of Architecture, Engineering, and Construction (AEC). Moved by the process of transition, this research aims to study and evaluate the integration between a BIM modeling platform and a tool for structural analysis. In order to achieve the expected result, it was used a structural project of a real enterprise, first using traditional methodologies, or in other words, based on 2D indepenendent documents. The project was modeled in 3D with an integrated database according to BIM, with the support of the software <em>Autodesk Revit Structure</em> 2012. The model was then exported to the software for structural analysis <em>Autodesk Robot</em> 2012. Strategies for integration are tested and the best practices are described in detail. The results found suggest the use of the methodology in structural analysis is promising, and its implementation must be seriously considered in Brazil. </p>
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Günther-Diringer, Detlef. "From BIM to GIS at the Smithsonian Institution." Proceedings of the ICA 1 (May 16, 2018): 1–5. http://dx.doi.org/10.5194/ica-proc-1-52-2018.

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BIM-files (Building Information Models) are in modern architecture and building management a basic prerequisite for successful creation of construction engineering projects. At the facilities department of the Smithsonian Institution more than six hundred buildings were maintained. All facilities were digital available in an ESRI ArcGIS-environment with connection to the database information about single rooms with the usage and further maintenance information. These data are organization wide available by an intranet viewer, but only in a two-dimensional representation. Goal of the carried out project was the development of a workflow from available BIM-models to the given GIS-structure. The test-environment were the BIM-models of the buildings of the Smithsonian museums along the Washington Mall. Based on new software editions of Autodesk Revit, FME and ArcGIS Pro the workflow from BIM to the GIS-data structure of the Smithsonian was successfully developed and may be applied for the setup of the future 3D intranet viewer.
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Lin, Pao-Hung, Chin-Chuan Chang, Yu-Hui Lin, and Wei-Liang Lin. "Green BIM Assessment Applying for Energy Consumption and Comfort in the Traditional Public Market: A Case Study." Sustainability 11, no. 17 (August 26, 2019): 4636. http://dx.doi.org/10.3390/su11174636.

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This study focused on the energy consumption and environmental comfort of the traditional Xindian Central Public Retail Market. Established for more than 30 years, the market has been a crucial role in the daily life of local residents. Thus, the energy consumption and comfort level of the market are subjects of great concern. By using green building information modeling (BIM) simulation, which is an innovative assessment process that combines green buildings and BIM for the architecture, engineering, and construction (AEC) industries to achieve sustainability, this study explored the current situation of energy efficiency and comfort level of the market. A green BIM model of the market and surrounding area was constructed in Autodesk Revit. Subsequently, nine items pertaining to energy consumption and environmental comfort were selected from the green BIM model to conduct simulation by using the software package Integrated Environmental Solutions Virtual Environment (IES VE). Based on the IES VE simulation results, heat radiation was identified as one of the main causes of energy consumption in the market. Moreover, the results indicated problems of ventilation and insufficient sunlight inside the market. These analytical outcomes and optimization suggestions can be provided as references for retrofitting to obtain sustainable architectures in future.
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Khoshdelnezamiha, Ghazaleh, San Chuin Liew, Victor Nee Shin Bong, and Dominic Ek Leong Ong. "EVALUATION OF BIM APPLICATION FOR WATER EFFICIENCY ASSESSMENT." Journal of Green Building 15, no. 4 (September 1, 2020): 91–115. http://dx.doi.org/10.3992/jgb.15.4.91.

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ABSTRACT Application of Building Information Modelling (BIM) in architecture, engineering, and construction industry is known for its productivity and efficiency. Green BIM is one of the recent applications that aids users in achieving sustainability and/or improved building performance objectives through design and analysis of digital semantic models. The focus is on the application of green BIM for water efficiency (WE) analysis in accordance with the Malaysian Green Building Index (GBI) as a sustainability assessment tool. Revit Green Project Template (RGPT) and Autodesk Green Building Studio (GBS) as two available BIM tools were selected to evaluate and compare the applicability of each method for GBI WE assessment. To resolve the limitations identified from each evaluated method, automated GBI assessment tool (AGBIA) was developed as an alternative. The AGBIA as a supporting tool was established with the use of Dynamo, a visual programming tool to compensate for the limitations faced in the investigated methods. The practicality of each method was explored using a hypothetical model in Revit to automate information correspondent to 10 water efficiency assessment points and generate reports and documents necessary for the GBI design stage certification. The final phase involves verification of results obtained from each method using the conventional GBI WE calculator. AGBIA is suitable for the green BIM users in Malaysia based on the flexibility and automation over defining and assigning green parameters that are in line with the local context, the direct link of green information to the model, as well as the detail of presented data.
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Lv, Xiao Biao, Yi Quan Zou, Yan Yan Huang, and Jun Xu. "The 3D Coordinated Building Design Based on Building Information Modeling." Advanced Materials Research 243-249 (May 2011): 6587–91. http://dx.doi.org/10.4028/www.scientific.net/amr.243-249.6587.

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As an emerging technological and procedural shift within the building design industry, Building Information Modeling (BIM) is a set of interacting processes and technologies to manage essential building design and project data in digital format throughout the design procedure. It is also a central data repository to store and recall different kinds of project information through creating a 3D model as well as providing intelligent data for this model. Besides, project documentation can be brought forward as a byproduct of the 3D model. This kind of BIM approach allows designers to finish their design work and have the documentation of a building simultaneously. As a result, this design approach can accelerate the design procedure of building project through less time and effort. This paper begins with an outlook on the mechanism that BIM approach how to increase the productivity rates and reduce the waste of resources in architecture industry. Then, it provides a project example on theuse of Autodesk Revit software system. At the end, a discussion on how BIM approach is applied to into the building design industry and on the potential benefits of BIM approach is put forward.
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Tsai, Chen, and Chang. "Development of a Project-Based Online Course for BIM Learning." Sustainability 11, no. 20 (October 17, 2019): 5772. http://dx.doi.org/10.3390/su11205772.

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The purpose of this paper was to present a method for developing a project-based online course for building information modeling (BIM) learning. As the development of BIM has gradually increased its influence on the architecture, engineering, and construction (AEC) industries, countries around the world have begun to focus on BIM education and import it into university courses. However, there have been many studies pointing out several problems with the BIM education curriculum. For example, BIM education should not be limited to modeling work, and students do not exactly know the entire BIM workflow. Therefore, this research proposed a project-based online course development method for solving BIM educational issues. The proposed method contains a course development process and guidelines for designing the course. As an example implementation, a five-week Autodesk Revit learning curriculum was developed. Such a curriculum was then utilized in a 32 student class for testing its effectiveness. The results showed that students could understand the BIM process more effectively through the designed project-based course. Additionally, with online video tutorials, students are free to allocate their study time based on their personal needs and adjust their learning progress for better understanding of the course contents.
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Dissertations / Theses on the topic "Autodesk Revit Architecture"

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Thorvaldson, Niclas, and Daniel Persson. "Utformning av konst- och musikhus med läge i unik miljö." Thesis, Linnéuniversitetet, Institutionen för teknik, TEK, 2011. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-12526.

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Examensarbetets mål var att utforma två förslag på ett musik- och konsthus för placering i Växjösjön. Konstruktionen ämnas vara flytande och mobil.Gemensamt undersökte författarna byggnadens förutsättningar och möjligheter, i syfte att underlätta utformningsprocessen. Författarna utformade var sitt förslag. Det resulterade i två förslag med skilda arkitektoniska särdrag, skapade utifrån gemensamt stipulerade avgränsningar.Det ena förslaget är utformat med hjälp av geometriska former med raka sidor. Det kontrasterar mot det andra förslaget som har organiska och mjuka former.
The purpose of this thesis was to produce two alternative architectural designs, of a building, that will house various exhibitions and activities. Mainly those will be culture related; music and arts. The building is to be located in a Swedish lake, called Växjösjön, and the structure is intended to be placed on a floating hull.Initially the authors investigated, and discussed, what possibilities and limitations that were associated with the building. The authors then, separate from one another, created one alternative design each.The first of the two designs found its inspiration in different geometrical shapes, whereas the other was more of an organic design with a smooth and flowing architecture.
De digitala ritningarna finns att tillgå från författarna på begäran.
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Hansen, Fredrik, and Jesper Palmquist. "Från CAD till BIM inom småhusindustrin." Thesis, Linnéuniversitetet, Institutionen för byggteknik (BY), 2015. http://urn.kb.se/resolve?urn=urn:nbn:se:lnu:diva-48267.

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BIM står för Building Information Modeling. Det är en ny teknik för att konstruera en virtuell modell av en byggnad i digitalt format. De stora fördelarna med BIM är att alla komponenter som läggs till i modellen innehåller information. Av informationen genereras automatiskt de handlingar och listor som behövs. Dessutom fås presentationsmaterial i form av 3D-modeller utan något extra arbete. Undersökningen behandlar ett företag och varför de inte genomfört en övergång från 2D-CAD till BIM och syftet är därför att visa dem vilka effektiviseringsmöjligheter som finns.
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Aquino, Eddie Villanueva. "PREDICTING BUILDING ENERGY PERFORMANCE: LEVERAGING BIM CONTENT FOR ENERGY EFFICIENT BUILDINGS." DigitalCommons@CalPoly, 2013. https://digitalcommons.calpoly.edu/theses/1077.

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Reducing and managing the environmental impacts of building structures has become a priority of building stakeholders and within the architecture, engineering and construction (AEC) community; although, conflicting approaches and methods to combat the issues are present. For example, green building standards are widespread throughout the world; however each one has its own characteristics and consequently its own specific requirements. While all have proven to be effective rating systems and have similar requirements, the distinguishing characteristic that separates them is their treatment of performance and prescriptive metrics. The feature they all severely lack or currently limit is the inclusion of strict engineering evaluation through energy simulations; hence, the reason why they fail to offer procedural steps to meet performance metrics. How can design professionals design energy efficient buildings with such constraints? Fortunately, advances in technology have allowed design professionals access to content found in Building Information Modeling (BIM). However, extracting pertinent information for specific use in energy analysis is problematic because BIM software currently available is filled with interoperability issues when placed in external software for energy analysis and energy analysis software itself is created with many assumptions that affect the tabulated energy results. This research investigates current building rating systems, determines how current professionals meet energy requirements, and prove that it is possible to create an add-on feature to Autodesk Revit that will allow design professionals to extract the needed information to meet energy goals with actual prescribed methods of mechanical systems selection and evaluation.
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Kuo, Chien-Hung, and 郭建宏. "The research of application of building BIM in architecture field using Autodesk Revit & Dynamo." Thesis, 2017. http://ndltd.ncl.edu.tw/handle/574kke.

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碩士
國立臺灣科技大學
建築系
105
The discussion about the application of Building Information Modeling in this industry is hot, many architects, building factories, construction companies, design institutes are discussing the benefits of this model, whether it is an application that can increase the industry's economic benefits or an application which simplify the design procedures, construction and operating costs. In recent years the institutes and enterprises which introduce Building Information Model are becoming more and more, while the introduction of new tools often produce many problems, and these problems also is slowly emerging. The Building Information Modeling software, Revit and Dynamo was applied into the research to study how to simplify repetitive tasks so as to increase interaction design and review in various fields of the two sets of software when applied in the construction project design, creating original software things that original software function cannot achieve and increasing the ability and speed of project implementation. The application of BIM is wide, many application methods of BIM in different fields and application case of Dynamo in design phase (calculation of escape path distance, automatic numbering of parking spaces, automatic creation of drawing's title and list of drawing, automatic creation of the drawing number's list, automatic creation of a curtain plate opening according to the sun angle created by Dynamo and Revit's the passing back report from Navisworks Manage) are proposed in this study, all these application cases can be fully used in institute's design, and can increase the efficiency and new model of institutes, the difference between BIM design and traditional design brought in different aspects of application is also presented.
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Tseng, Kuan-Lin, and 曾冠霖. "The Survey of Usage for Autodesk Revit Architecture Software of BIM—JuneSun Digicom Co., Ltd. as a Case Study." Thesis, 2013. http://ndltd.ncl.edu.tw/handle/62467661144728869284.

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碩士
中國文化大學
建築及都市設計學系碩士在職專班
101
Recently, the development of technique about Building Information Modeling (Briefly called BIM) makes more and more mature in design tools of 3D computer drawing software designed for building trade. In addition, the globally competitive pressure is more and more enormous and also starting facing more and more international team’s competition and challenge. Because of the ability about building design of 3D computer assistance will become basic threshold in international competition. For this reason, this research according to JuneSun Digicom Co., Ltd. as object for understanding as BIM to be a conceptual basic and using the situation of Autodesk Revit Architecture. To understand evolutional processes of hand-draft to computer-draft that users use Autodesk Revit Architecture’s difficult positions, problems and issues. And further by expert’s interview to bring up topics and strategies. Finally bring up conclusions and suggestions and make reference that in the future Taiwan will develop BIM software Autodesk Revit Architecture. The research divided into five chapters and nineteen parts. It’s below as: Chapter one: to mainly sure the probe about origin, cause, purpose, range, context, procedure, method, noun definition, process. Chapter two: to discover difficult positions, to offer to the evolution, characteristic, function of Autodesk Revit Architecture and about the using data application of BIM software, to discuss to relate to datum of BIM software. All of them are established as structure of probe. Chapter three: the probe is as JuneSun Digicom Co., Ltd. for a case study. Use questionnaire and interview to survey the software of BIM. Chapter four: to verify results and offer to questions, issues, topics and strategies of using the software of BIM. Chapter five: to offer to conclusions and suggestions as references for user from now on.
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Books on the topic "Autodesk Revit Architecture"

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1972-, Krygiel Eddy, and Vandezande James 1972-, eds. Autodesk Revit architecture essentials. Indianapolis: Wiley Technology Pub., 2011.

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Patrick, Davis, ed. Introducing Autodesk Revit Architecture 2011. Hoboken, N.J: Wiley Pub., 2010.

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Introducing Autodesk Revit Architecture 2012. Indianapolis, Ind: Wiley Pub., 2011.

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Autodesk Revit Architecture 2010 in practice. Sudbury, Mass: Jones and Bartlett Publishers, 2011.

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1965-, Read Phil, and Vandezande James 1972-, eds. Mastering Autodesk Revit architecture 2012: Autodesk official training guide. Indianapolis, Ind: Wiley Pub., 2011.

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Mastering Revit Architecture 2008. New York: John Wiley & Sons, Ltd., 2008.

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Tatjana, Dzambazova, and Demchak Greg, eds. Mastering Revit architecture 2008. Hoboken: Wiley Technology, 2008.

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Autodesk Revit architecture 2011: No experience required. Indianapolis: Wiley Pub., 2010.

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Priyanka, Kashkari, and CADCIM Technologies, eds. Autodesk Revit architecture 2008 for architects & designers. Schererville, IN: CADCIM Technologies, 2008.

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Kim, Marcus, Eddy Krygiel, and Lance Kirby. Mastering Autodesk® Revit® for Architecture. Indianapolis, Indiana: John Wiley & Sons, Inc., 2017. http://dx.doi.org/10.1002/9781119414315.

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Book chapters on the topic "Autodesk Revit Architecture"

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"Autodesk Revit Certification." In Mastering Autodesk® Revit® for Architecture, 985–86. Indianapolis, Indiana: John Wiley & Sons, Inc., 2017. http://dx.doi.org/10.1002/9781119414315.app3.

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"Autodesk Revit Architecture Certification." In Mastering Autodesk® Revit® 2017 for Architecture, 917–19. Indianapolis, Indiana: Wiley Publishing, Inc., 2017. http://dx.doi.org/10.1002/9781119415565.app3.

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"The Autodesk Revit World." In Autodesk® Revit® 2017 for Architecture, 1–43. Indianapolis, Indiana: Wiley Publishing, Inc., 2017. http://dx.doi.org/10.1002/9781119415589.ch1.

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"Managing Revit Projects." In Mastering Autodesk® Revit® for Architecture, 291–302. Indianapolis, Indiana: John Wiley & Sons, Inc., 2017. http://dx.doi.org/10.1002/9781119414315.ch8.

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"Working with the Autodesk Revit Tools." In Autodesk® Revit® 2017 for Architecture, 165–212. Indianapolis, Indiana: Wiley Publishing, Inc., 2017. http://dx.doi.org/10.1002/9781119415589.ch4.

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"Creating Specific Views and Match Lines." In Autodesk® Revit® 2017 for Architecture, 595–610. Indianapolis, Indiana: Wiley Publishing, Inc., 2017. http://dx.doi.org/10.1002/9781119415589.ch12.

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"Stairs, Ramps, and Railings." In Autodesk® Revit® 2017 for Architecture, 463–527. Indianapolis, Indiana: Wiley Publishing, Inc., 2017. http://dx.doi.org/10.1002/9781119415589.ch10.

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"Detailing." In Autodesk® Revit® 2017 for Architecture, 529–93. Indianapolis, Indiana: Wiley Publishing, Inc., 2017. http://dx.doi.org/10.1002/9781119415589.ch11.

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"Creating Sheets and Printing." In Autodesk® Revit® 2017 for Architecture, 611–40. Indianapolis, Indiana: Wiley Publishing, Inc., 2017. http://dx.doi.org/10.1002/9781119415589.ch13.

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"Creating Rooms and Area Plans." In Autodesk® Revit® 2017 for Architecture, 641–63. Indianapolis, Indiana: Wiley Publishing, Inc., 2017. http://dx.doi.org/10.1002/9781119415589.ch14.

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Conference papers on the topic "Autodesk Revit Architecture"

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Ведерникова, Алёна Андреевна, and Руслан Андреевич Шишмарев. "Автоматизация инженерных расчетов в программе Autodesk Revit." In III International Conference “BIM in Construction & Architecture”. Saint Petersburg State University of Architecture and Civil Engineering, 2020. http://dx.doi.org/10.23968/bimac.2020.025.

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Федотов, Илья Денисович, and Кирилл Олегович Суханов. "Гидравлический расчет системы отопления с использованием надстройки liNear для Autodesk Revit." In III International Conference “BIM in Construction & Architecture”. Saint Petersburg State University of Architecture and Civil Engineering, 2020. http://dx.doi.org/10.23968/bimac.2020.055.

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Mikayelyan, Zorik, and David Sirunyan. "Interaction of Autodesk Revit and IES VE Software Suites in Building Information Modeling." In III International Conference “BIM in Construction & Architecture”. Saint Petersburg State University of Architecture and Civil Engineering, 2020. http://dx.doi.org/10.23968/bimac.2020.003.

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Zgoda, Iurii Nikolaevich, and Konstantin Avgustovich Shumilov. "Problems and perspectives of automated interactive visualization generation for information building models of Autodesk Revit and Renga." In II International Conference “BIM in Construction & Architecture”. Saint Petersburg State University of Architecture and Civil Engineering, 2019. http://dx.doi.org/10.23968/bimac.2019.021.

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