小伸长钝锥透水表面薄层流边界层的对流换热与摩擦

Q3 Mathematics
V. V. Gorskiy, A. G. Savvina
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引用次数: 0

摘要

解决层流边界层中对流换热和摩擦的计算问题需要对微分方程进行数值积分,并辅以那些或其他半经验的表观湍流粘度模型,这些模型应该在实验研究的结果上得到验证,这些实验研究在提供气体流动的物体的气体动力学图像模拟的条件下进行。遗憾的是,目前还没有关于钝体可渗透表面层流-湍流换热研究的文献数据,在这种情况下,只能通过将计算数据与在钝体上进行的实验结果进行比较。文献资料描述了对一个半球进行的研究结果,其中使用了一种表观湍流粘度的半经验模型,并对在这种形状的物体的不透水表面进行的实验结果进行了测试。在这种情况下,有可能获得一个物理上一致的图像,即吹气穿过壁面对对流热流阻塞程度的影响。在缺乏关于这一问题的定性实验数据的情况下,在实践中采用所考虑的表观湍流粘度的半经验模型来估计在规定条件下对流热流和摩擦的阻塞程度似乎是合理的。本文致力于解决一个类似的问题,对于一个钝锥的侧面
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Convective Heat Transfer and Friction in a Thin Laminar-Turbulent Boundary Layer on the Permeable Surface of a Blunted Cone of Small Elongation
Solving the problem of calculating convective heat transfer and friction in the laminar-turbulent boundary layer involves the need for numerical integration of differential equations, supplemented by those or other semiempirical models of apparent turbulent viscosity, which should be validated on the results of experimental studies, carried out in conditions, providing simulation of the gas dynamic picture of body flowing by a gas stream. Unfortunately, at present, there are no literature data on studies of laminar-turbulent heat exchange on the permeable surface of a blunted body, and under these conditions, one has to go by the way of comparing the calculated data with the results of experiments carried out on sharp bodies. Literature sources describe the results of studies carried out for a hemisphere, in which one of the semi-empirical models of apparent turbulent viscosity is used, tested on the results of experiments carried out on the impermeable surface of such shaped body. In this case, it was possible to obtain a physically consistent picture of the influence exerted by blowing gas through the wall on the degree of blocking of the convective heat flow. In the absence of qualitative experimental data on this issue, it seems reasonable to apply in practice the considered semi-empirical model of apparent turbulent viscosity to estimate the degree of blocking of convective heat flow and friction under the specified conditions. This article is devoted to the solution of a similar problem for the lateral surface of a blunted cone
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
40
期刊介绍: The journal is aimed at publishing most significant results of fundamental and applied studies and developments performed at research and industrial institutions in the following trends (ASJC code): 2600 Mathematics 2200 Engineering 3100 Physics and Astronomy 1600 Chemistry 1700 Computer Science.
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