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STOCHASTIC MODELLING OF CONJUGATE HEAT TRANSFER IN NEAR-WALL TURBULENCE

机译:近壁湍流共轭传热的随机建模

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摘要

The paper addresses the conjugate heat transfer in turbulent flows where temperature is assumed to be a passive scalar. The Lagrangian approach is applied and the heat transfer is modelled with the use of stochastic particles. The intensity of thermal fluctuations in near-wall turbulence is determined from the scalar probability density function (PDF) with externally-provided dynamical statistics. A stochastic model for the temperature field in the wall material is proposed and boundary conditions for stochastic particles at the solid-fluid interface are formulated. The heated channel flow with finite-thickness walls is considered as a validation case. Computation results for the mean temperature profiles and the variance of thermal fluctuations are presented and compared with available DNS data.
机译:本文讨论了湍流中的共轭传热,其中假定温度为被动标量。应用拉格朗日方法,并使用随机粒子对热传递进行建模。近壁湍流中的热波动强度由具有外部动态统计信息的标量概率密度函数(PDF)确定。提出了壁材料中温度场的随机模型,并建立了固液界面处随机颗粒的边界条件。具有有限厚度壁的加热通道流被视为验证案例。给出了平均温度曲线和热波动方差的计算结果,并将其与可用的DNS数据进行了比较。

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