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Validation of Large Eddy Simulation in a Relaminarizing Boundary Layer Flow

机译:再边界化层流中大涡模拟的验证

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Coexistence of laminar, transitional and turbulent flow regimes is very common in blood flows through arteries, airflows in human respiratory systems, and indoor airflow etc.??Due to the complexity of flow physics involved, most Reynolds-averaged Navier-Stokes (RANS) turbulence models are not suitable for these flows because they are designed primarily for high Reynolds number turbulent flows.??In this paper, large eddy simulation with dynamic subgrid model has been applied to simulate the flow in a relaminarizing boundary layer that undergoes reverse transition from turbulent state to laminar one.??Simulated mean velocities and turbulent intensities are in good agreement with corresponding experimental data at different streamwise positions where different flow regimes exist.??The appropriateness of dynamic subgrid model for the study of relaminarizing boundary layer flow is demonstrated by the spatial variation of subgrid constant: it is somewhat constant in fully turbulent regime, decreases in transitional regime and reaches zero in laminar regime.??Comparison of the experimental data and computational results from three low Reynolds number RANS models shows that they do not adequately predict the flow relaminarization.??The present study suggests the use of large eddy simulation with dynamic model in the study of complex flows where a combination of flow regimes (laminar, transitional, and turbulent) may exist. ? ?
机译:层流,过渡流和湍流流态并存在通过动脉的血流,人类呼吸系统的气流和室内气流等中非常普遍湍流模型不适用于这些流,因为它们主要是为高雷诺数湍流设计的。本文中,采用动态子网格模型进行大涡模拟,以模拟在重新分层边界层中的流动,该边界层经历了从湍流状态为层流状态。??模拟平均速度和湍流强度与存在不同流态的不同流向位置处的相应实验数据吻合良好。??证明了动态亚网格模型对于再分层边界层流研究的适用性通过亚网格常数的空间变化:在完全湍流状态下,d一定是常数过渡态增加,层流态达到零。三种低雷诺数RANS模型的实验数据和计算结果的比较表明,它们不能充分预测流动层流化。本研究建议使用大涡流。在可能存在多种流态(层流,过渡和湍流)组合的复杂流研究中,用动态模型进行模拟。 ? ?

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