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A fully-developed boundary condition for the random walk particle tracking method

机译:完善的随机游动粒子跟踪方法的边界条件

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Random walk particle tracking (RWPT) is an effective and flexible approach to resolve scalar transport in direct numerical simulations (DNS) of single and multi-phase flows. It is often part of a hybrid scheme where the flow field is recovered by a separate hydrodynamic solver and the scalar field is resolved by RWPT. Since RWPT method tracks the displacement of passive Brownian tracers, rather than discretizing the advection-diffusion equation, development of boundary conditions for RWPT is not trivial. Namely, rules imposed upon a single tracer at the boundary must, after averaging, recover the desired continuum scale boundary condition. Here we develop means for imposing a fully-developed outflow boundary condition for the RWPT method. The technique developed here utilizes a semi-reflecting barrier at the outflow boundary. Tracers that reach the boundary plane are either reflected back into the domain or allowed to vacate the domain. We show that the semi-reflecting barrier developed here converges to the classic reflective boundary and open boundary in the asymptotic limit of low and high Peclet number, respectively. The new outflow boundary condition is verified against boundary layer (BL) theory for flow past a hot plate. The temperature field extracted at the outflow boundary is observed to be in agreement with BL solutions. (C) 2018 Elsevier Ltd. All rights reserved.
机译:随机游动粒子跟踪(RWPT)是解决单相和多相流直接数值模拟(DNS)中标量传输的一种有效且灵活的方法。它通常是混合方案的一部分,其中流场由单独的流体动力求解器恢复,标量场由RWPT求解。由于RWPT方法跟踪被动布朗示踪剂的位移,而不是离散对流扩散方程,因此RWPT边界条件的发展并非易事。即,对边界上的单个示踪剂施加的规则必须求平均后才能恢复所需的连续标度边界条件。在这里,我们开发了为RWPT方法施加完全发展的流出边界条件的方法。此处开发的技术在流出边界处使用了半反射屏障。到达边界平面的示踪剂要么反射回域中,要么允许其离开域。我们表明,在低和高Peclet数的渐近极限中,此处开发的半反射屏障分别收敛到经典反射边界和开放边界。根据流过热板的边界层(BL)理论验证了新的流出边界条件。观察到在流出边界处提取的温度场与BL解一致。 (C)2018 Elsevier Ltd.保留所有权利。

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