International Conference on Construction, Architecture and Technosphere Safety 2017 | |
Study of Wind Effects on Unique Buildings | |
土木建筑工程 | |
Olenkov, V.^1 ; Puzyrev, P.^2 | |
Department Town Planning, Engineering Systems and Networks, Institute of Architecture and Construction, South Ural State University, Lenin Avenue 76, Chelyabinsk | |
454080, Russia^1 | |
Corporate Group GIRD, 26-67, Oktyabrya av., Miass | |
456320, Russia^2 | |
关键词: Calculation algorithms; Computational model; Computer calculation; Computer technology; Design and Development; Economic efficiency; Numerical experiments; Physical experiments; | |
Others : https://iopscience.iop.org/article/10.1088/1757-899X/262/1/012154/pdf DOI : 10.1088/1757-899X/262/1/012154 |
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学科分类:土木及结构工程学 | |
来源: IOP | |
【 摘 要 】
The article deals with a numerical simulation of wind effects on the building of the Church of the Intercession of the Holy Virgin in the village Bulzi of the Chelyabinsk region. We presented a calculation algorithm and obtained pressure fields, velocity fields and the fields of kinetic energy of a wind stream, as well as streamlines. Computational fluid dynamic (CFD) evolved three decades ago at the interfaces of calculus mathematics and theoretical hydromechanics and has become a separate branch of science the subject of which is a numerical simulation of different fluid and gas flows as well as the solution of arising problems with the help of methods that involve computer systems. This scientific field which is of a great practical value is intensively developing. The increase in CFD-calculations is caused by the improvement of computer technologies, creation of multipurpose easy-to-use CFD-packagers that are available to a wide group of researchers and cope with various tasks. Such programs are not only competitive in comparison with physical experiments but sometimes they provide the only opportunity to answer the research questions. The following advantages of computer simulation can be pointed out: a) Reduction in time spent on design and development of a model in comparison with a real experiment (variation of boundary conditions). b) Numerical experiment allows for the simulation of conditions that are not reproducible with environmental tests (use of ideal gas as environment). c) Use of computational gas dynamics methods provides a researcher with a complete and ample information that is necessary to fully describe different processes of the experiment. d) Economic efficiency of computer calculations is more attractive than an experiment. e) Possibility to modify a computational model which ensures efficient timing (change of the sizes of wall layer cells in accordance with the chosen turbulence model).
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