首页> 外文会议>MIT Conference on Computational Fluid and Solid Mechanics Vol.2 Jun 12-15, 2001 >Heat transfer calculations of high-Reynolds-number flows around a circular cylinder
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Heat transfer calculations of high-Reynolds-number flows around a circular cylinder

机译:高雷诺数绕圆柱流的传热计算

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Heat transfer calculations of the flow around a circular cylinder are conducted in a range of Reynolds numbers significantly higher than those for any previous attempts on such problem. This is a challenging numerical simulation problem because the heat transfer rate, critically dependent on the molecular process in the thin boundary layer, can not be determined without the velocity and temperature gradients being precisely computed on the surface of the cylinder. The numerical instabilities encountered in the turbulent wake further complicate the problem. In the present simulation, this difficulty is resolved by including a small subgrid scale viscosity which, at the wall, is only a small fraction of the molecular viscosity. The subgrid viscosity does not affect the heat transfer rate but is effective in suppressing the numerical instabilities initiated by turbulence of the subgrid scales in the wake.
机译:在雷诺数范围内进行的绕圆柱体流的传热计算明显高于以前对此类问题的任何尝试。这是一个具有挑战性的数值模拟问题,因为在没有精确计算圆柱体表面速度和温度梯度的情况下,无法确定薄边界层中分子过程的传热速率,而传热速率主要取决于薄边界层中的分子过程。在湍流尾流中遇到的数值不稳定性使问题进一步复杂化。在目前的模拟中,通过包括小的亚网格规模的粘度解决了这一困难,该粘度在壁上仅是分子粘度的一小部分。子网格的粘度不影响传热速率,但是对于抑制由尾流中的子网格刻度的湍流引起的数值不稳定是有效的。

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