Application Study of Green Building Based on BIM Technology

2014 ◽  
Vol 587-589 ◽  
pp. 2275-2278
Author(s):  
Lin Zhang

Through the analysis on Building Information Modeling (BIM) technology, by which several projects on green building are implemented, this paper illustrates that the application of BIM has been transformed from architectural design of the narrow scope to other environmental applications like green building.

The Computer Models Of Buildings That Contain All The Information About Future Facilities, Which Is Called BIM (Building Information Modeling) Technologies, Took An Important Place In Architectural Offices And Architectural Design. By Means Of BIM Technologies, The Main Groups Of Specialists Had A Chance To Collaborate From The Very Beginning Of The Creation Of The Building Model And Its Use Up To The End Of The Design Of The Building. Since The 1960s, Computer Programs Were Mainly For Drawing, But With BIM Technologies, It Is Possible To Present A Virtual Reality Of A Building Process. Since It Is Extremely Important To Select Suitable Software To Perform The Analysis And Design In Building Tasks, With The Existence Of Much-Specialized Software In These Domains, In This Paper, Based On The Investigations Performed Especially For The Last Decade Developments And Added Capabilities, A Guideline For Architects And Engineers Is Presented. In This Regard Many Software Were Evaluated And The Most Useful Used Ones Such As Graphisoft Archicad, Autodesk Revit Architecture, Gehry Tech., Nemetschek Allplan Architecture, TAD, Nemetschek Vectorworks Architect, Digital Project Designer, Microstation, Dynamo Studio, Freecad Architecture, Sketchup Software Are Recommended To Be Employed In Analysis And Design Of Buildings. Employing The Recommended Software, Not Only Facilitate The Teamwork In Design But Also Increase The Performance Of The Design


2020 ◽  
Vol 12 (23) ◽  
pp. 9988
Author(s):  
Quan Wen ◽  
Zhongfu Li ◽  
Yifeng Peng ◽  
Baorong Guo

Building information modeling (BIM) is an emerging technique in the construction industry. It is regarded as an effective approach for green building development; however, its effectiveness has not been sufficiently investigated from a lifecycle perspective. To bridge this research gap, this study investigates BIM application value in different phases of a green building through a convolutional neural network (CNN) method. To begin with, an assessment framework was developed with the consideration of balancing the estimation accuracy and the data size. Then, the validity of the developed model was verified from both theoretical and practical perspectives. Finally, the effectiveness of BIM was tested using the proposed framework. Results showed that the overall score of the tested project was four in the five-point Likert scale, with an average relative error less than 1%. From a value-based perspective, it is revealed that the application value of BIM represented a descending order throughout the lifecycle of the tested project. In addition, it is found that the functional value obtained the highest score, whereas social value was at the bottom. The findings of this study can help decision makers to detect the weaknesses of BIM implementation during green building development.


2014 ◽  
Vol 1073-1076 ◽  
pp. 1271-1274
Author(s):  
Yun Hui Yang

Green building is rapidly transforming the design and construction industry around the globe. Simultaneously, a growing numbers of industry practitioners are taking the advantages of building information modeling (BIM) to upgrade the sustainable performance of green building. BIM tools encourage an integrated lifecycle green building management from design, construction, and prefabrication to operation and maintenance. This paper represents using BIM technology to achieve green building objectives and sustainable performances.


2013 ◽  
Vol 368-370 ◽  
pp. 1191-1195 ◽  
Author(s):  
Yi Zi Wang ◽  
Li Hong Juang ◽  
Wen Hua Liu

Firstly, this article induces out the theme of reforming the energy-saving of campus buildings through the current situation about huge energy consumption from campus construction. Secondly, taking the buildings of Shantou University’s “Engineering Institute, CDIO innovation center” as an example and combining BIM(Building Information Modeling) with green building come up with every green reform strategy we will use to reach the purpose that changing the current building into a kind of better building which is water-saving, electricity-saving, ventilation and heat protection. Finally, we will make a conclusion that combining BIM with green building is a good way to make a feasible design for guide construction.


2015 ◽  
Vol 1 (1) ◽  
pp. 26-31
Author(s):  
Zdenka Hulínová ◽  
Jana Madová

Civil engineering is considered to be the area with the highest occurrence of occupational injuries. Workers perform plenty of activities that endanger their health and put them at risk of occupational injuries and diseases. There are many convincing proves that dangerous risk situations appear already in the early stages of project proposals. On the basis of this fact we can estimate that one of the most effective methods of preventing and reducing occupational injuries is elimination of potential risk at the very beginning, i.e. already in the architectural design. Information models BIM enable us to simulate the overall situation of the project both structurally and visually. Thanks to this fact we can prevent multiple problems occurring not only during the realisation phase, but during the usage of buildings as well.


2020 ◽  
Vol 9 ◽  
pp. 125
Author(s):  
Breno Pontes Pimentel ◽  
Andréa Teresa Riccio Barbosa ◽  
Mayara Dias de Souza

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.


2020 ◽  
Vol 25 ◽  
pp. 1-40 ◽  
Author(s):  
Yun-Tsui Chang ◽  
Shang-Hsien Hsieh

The strength of Building Information Modeling (BIM) in achieving sustainable buildings is well recognized by the global construction industry. However, current understanding of the state-of-the-art green BIM research is still limited. In particular, a focus study on how BIM contribute to green building design through building performance analysis (BPA) is not available. This paper aims to provide systematic and comprehensive insights on current trends and future potentials of green BIM research by analyzing the existing literature with their research features (i.e. research backgrounds, goals, methods and outputs). In total, 80 publications have been collected, analyzed and discussed. The results show that among ten main BPA types, energy & thermal analysis, green building rating analysis, and cost and benefit analysis are the most studied. However, wind & ventilation analysis, acoustic analysis, and water efficiency analysis receive little attention. Moreover, more research focusing on integrated design analysis should be carried out for optimal design outcome. In addition, most of the collected literature research on the capability of data integration and analysis of green BIM tools, while their capability of visualization and documentation has limited examination. Furthermore, most researchers utilized one main software package while utilization of information exchange formats (IEF) is limited. To increase interoperability of green BIM tools, how different BIM authoring tools and IEFs can be utilized for BPA requires further investigation.


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