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Three-Dimensional Thermal Boundary Layer Corrections for Circular Heat Flux Gauges Mounted in a Flat Plate with a Surface Temperature Discontinuity

机译:安装在表面温度不连续的平板中的圆形热通量计的三维热边界层校正

摘要

Three-dimensional Navier-Stokes computational fluid dynamics (CFD) analysis has been performed in an effort to determine thermal boundary layer correction factors for circular convective heat flux gauges (such as Schmidt-Boelter and plug type)mounted flush in a flat plate subjected to a stepwise surface temperature discontinuity. Turbulent flow solutions with temperature-dependent properties are obtained for a free stream Reynolds number of 1E6, and freestream Mach numbers of 2 and 4. The effect of gauge diameter and the plate surface temperature have been investigated. The 3-D CFD results for the heat flux correction factors are compared to quasi-21) results deduced from constant property integral solutions and also 2-D CFD analysis with both constant and variable properties. The role of three-dimensionality and of property variations on the heat flux correction factors has been demonstrated.
机译:进行了三维Navier-Stokes计算流体动力学(CFD)分析,目的是确定圆形对流热通量计(例如Schmidt-Boelter和Plug型)平齐安装在平板上,并经受逐步的表面温度不连续性。对于自由流雷诺数为1E6,自由流马赫数为2和4,获得了具有温度相关特性的湍流解决方案。已经研究了标称直径和板表面温度的影响。将热通量校正因子的3-D CFD结果与准21)结果进行比较,这些结果是由恒定特性积分解以及具有恒定特性和可变特性的二维CFD分析得出的。已经证明了三维度和性质变化对热通量校正因子的作用。

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