An application of bim technology in computer-aided building energy saving design

被引:0
作者
Zhao W. [1 ]
机构
[1] College of Applied Science, Jiangxi University of Science and Techonology, Ganzhou, 341000, Jiangxi
来源
Computer-Aided Design and Applications | 2020年 / 18卷 / S1期
关键词
BIM technology; Building energy saving design; Building structure design; Computer-aided tools; Planning and layout design;
D O I
10.14733/CADAPS.2021.S1.133-143
中图分类号
学科分类号
摘要
The global environmental problems are increasingly prominent, and the problem of lack of resources is further highlighted. As the main carrier of energy consumption in modern cities, construction engineering is an important factor affecting global energy consumption. BIM technology, as the main analysis tool of modern building energy technology, takes BIM technology as the main theoretical system as the support. It discusses the applicability of computer-aided architectural design and performance analysis. In this paper, based on the existing problems of a city's architectural design, based on BIM technology collaborative design of the corresponding building energy-saving construction algorithm, integration of the entire architectural design process, analysis of the corresponding architectural design process, process information and the relevant components of the corresponding building materials and building structure, etc., at the same time, this paper will combine the actual project. Finally, based on the energy-saving renovation and optimization of the corresponding building scheme of a university in a city, this paper analyzes the actual cases. © 2021 CAD Solutions, LLC,.
引用
收藏
页码:133 / 143
页数:10
相关论文
共 13 条
[1]  
Li Y.-C., Liu H., Wang H.-T., GO-guided direct growth of highly oriented metal–organic framework nanosheet membranes for H2/CO2 separation, Chemical Science, 9, 3, pp. 56-67, (2018)
[2]  
Yang Z., Arto K., Stephen W.-J., A review of risk management through BIM and BIM-related technologies, Safety Science, 97, 3, pp. 88-98, (2017)
[3]  
Yang S.-J., Li J.-Y., Hong R.-J., Application Study on BIM Technology in Prefabricated Concrete Structure Construction of Senile Apartment, Heart, 36, 9, pp. 872-879, (2014)
[4]  
Xu X.-H., Liu Y., Li D.-J., Effect of shRNA-Mediated Gene Silencing of Bmi-1 Expression on Chemosensitivity of CD44+ Nasopharyngeal Carcinoma Cancer Stem-Like Cells, Technology in Cancer Research & Treatment, 15, 5, pp. 27-35, (2016)
[5]  
Adi I., Che A., Suhana J., Norngainy M.-T., Building information modeling (BIM)-based building condition assessment: A survey of water ponding defect on a flat roof, Chemical Research in Chinese Universities, 75, 9, pp. 925-927, (2015)
[6]  
Seulki L., Jungho Y., Discriminant model of BIM acceptance readiness in a construction organization, Ksce Journal of Civil Engineering, 21, 3, pp. 1-10, (2016)
[7]  
LU Q., Lee S.-H., Image-Based Technologies for Constructing As-Is Building Information Models for Existing Buildings, Journal of Computing in Civil Engineering, 31, 4, pp. 7005-7014, (2017)
[8]  
Li B.-P., Zhang Z.-G., Liao X.-F., Research on BIM Model Creation of Concrete Wind Tunnel Project in Construction Stage, Nucleus, 22, 2, pp. 183-184, (2014)
[9]  
Francesco G., Galizia W., Hoda E., The evolution of molds in manufacturing: from rigid to flexible, Procedia Manufacturing, 3, 3, pp. 319-326, (2019)
[10]  
Maharshi P., Singh S.K., Gulati M., Yadav A.K., Garg V., Kumari B., Gowthamarajan K., ANovel Three-pronged Approach for Colon Delivery of Sulfasalazine: Concomitant Use of pH-Responsive, Microbially Triggered Polymers and Liquisolid Technology, Current Drug Delivery, 15, 2, pp. 814-821, (2018)