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Consistent modeling of interphase turbulent kinetic energy transfer in particle-laden turbulent flows

机译:含颗粒湍流中相间湍动能传递的一致模型

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摘要

The interphase transfer of turbulent kinetic energy (TKE) is an important term that affects the evolution of TKE in fluid and particle phases in particle-laden turbulent flow. This work shows that the interphase TKE transfer terms must obey a mathematical constraint, which in the limiting case of statistically homogeneous flow with zero mean velocity in both phases, requires these terms be equal and opposite. In the single-point statistical approach called the two-fluid theory, the interphase TKE transfer terms are unclosed and need to be modeled. Multiphase turbulence models that satisfy this constraint of conservative interphase TKE transfer admit a term-by-term comparison with true direct numerical simulations (DNS) that enforce the exact velocity boundary condition on each particle's surface. Analysis of three models reveals that not all models satisfy the requirement of conservative interphase TKE transfer. DNS that invoke the point-particle assumption also do not obey this principle of conservative interphase TKE transfer, and this precludes the comparison of model predictions of TKE budgets in each phase with point-particle DNS. This study motivates the development of multiphase turbulence models based on the insights revealed by this analysis, leading to a meaningful comparison of TKE budgets with true DNS. (C) 2007 American Institute of Physics.
机译:湍动能(TKE)的相间转移是一个重要术语,它会影响含颗粒湍流中流体和颗粒相中TKE的演化。这项工作表明,相间TKE传递项必须服从数学约束,在统计均质流的有限情况下,两相的平均速度为零,要求这些项相等且相反。在称为双流体理论的单点统计方法中,相间TKE传递项未公开,需要建模。满足保守相间TKE传递这一约束的多相湍流模型允许与真正的直接数值模拟(DNS)进行逐项比较,后者可以在每个粒子的表面上施加精确的速度边界条件。对三种模型的分析表明,并非所有模型都满足保守相间TKE转移的要求。引用点粒子假设的DNS也没有遵循保守的相间TKE转移的原理,这排除了将每个阶段TKE预算的模型预测与点粒子DNS进行比较的可能性。这项研究基于此分析揭示的见解,激发了多相湍流模型的发展,从而使TKE预算与真实DNS进行了有意义的比较。 (C)2007美国物理研究所。

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