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Numerical simulation and experimental validation of heat transfer within rotating flows for three-dimensional non-axisymmetric, turbulent conditions

机译:三维非轴对称湍流条件下旋转流内传热的数值模拟和实验验证

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摘要

A control volume type numerical methodology for the analysis of steady three-dimensional rotating flows with heat transfer, in both laminar and turbulent conditions, is implemented and experimentally tested. Non-axisymmetric momentum and heat transfer phenomena are allowed for. Turbulent transport is alternatively represented through three existing versions of the k-ε model that were adjusted to take into account the turbulence anisotropy promoted by rotation, streamline curvature and thermal buoyancy. Their relative performance is evaluated by comparison of calculated local and global heat balances with those obtained through measurements in a laboratory device. A modified version of the Lam and Bremhorst, low Reynolds number model is seen to give the best results. A preliminary analysis focused on the flow structure and the transfer of heat is reported. Copyright © 2002 John Wiley & Sons, Ltd.
机译:一种控制体积类型的数值方法,用于分析在层流和湍流条件下带有传热的稳定三维旋转流,并进行了实验测试。非轴对称的动量和热传递现象是允许的。湍流输运也可以通过k-ε模型的三个现有版本表示,这些版本经过调整以考虑到旋转,流线曲率和热浮力所促进的湍流各向异性。通过将计算出的局部和全局热平衡与通过实验室设备的测量获得的热平衡进行比较,可以评估它们的相对性能。可以看到Lam和Bremhorst低雷诺数模型的修改版本可提供最佳结果。报告了对流动结构和传热的初步分析。版权所有©2002 John Wiley&Sons,Ltd.

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