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Study of Wind Effects on Unique Buildings

机译:独特建筑风效研究

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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).
机译:本文涉及在大学斯克地区博览区山谷山谷山谷垄断教堂建设的风效的数值模拟。我们提出了一种计算算法,并获得了风流的压力场,速度场和动能的动能,以及流线。计算流体动态(CFD)在微积分数学和理论流体力学的界面上演变,已经成为一个单独的科学分支,其主题是不同流体和气体流量的数值模拟,以及引起问题的解决方案涉及计算机系统的方法的帮助。这种科学领域具有巨大的实用价值是集中发展的。 CFD计算的增加是由计算机技术的改进引起的,创建多功能易于使用的CFD包装者,这些CFD包装器可用于广泛的研究人员和应对各种任务。这些方案与物理实验相比,这些方案不仅具有竞争力,但有时它们提供了回答研究问题的唯一机会。计算机仿真的以下优点可以指出:a)与实验相比(边界条件的变化)的模型设计和开发的时间减少。 b)数值实验允许模拟不与环境测试再现的条件(使用理想的气体为环境)。 c)计算气体动力学的使用提供了一个具有完整和充分信息的研究人员,可以完全描述实验的不同过程。 d)计算机计算的经济效率比实验更具吸引力。 e)修改计算模型的可能性,该计算模型确保有效定时(根据所选择的湍流模型的墙层电池的尺寸的变化)。

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