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首页> 外文期刊>International Journal of Multiphase Flow >Application of the Exact Regularized Point Particle method (ERPP) to particle laden turbulent shear flows in the two-way coupling regime
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Application of the Exact Regularized Point Particle method (ERPP) to particle laden turbulent shear flows in the two-way coupling regime

机译:将精确的正则点粒子法(ERPP)应用于双向耦合状态下粒子升起湍流剪切流动

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The Exact Regularized Point Particle method (ERPP), which is a new inter-phase momentum coupling approach, is extensively used for the first time to explore the response of homogeneous shear turbulence in presence of different particle populations. Particle suspensions with different Stokes number and/or mass loading are considered. Particles with Kolmogorov Stokes number of order one suppress turbulent kinetic energy when the mass loading is increased. In contrast, heavier particles leave this observable almost unchanged with respect to the reference uncoupled case. Turbulence modulation is found to be anisotropic, leaving the streamwise velocity fluctuations less affected by unitary Stokes number particles whilst it is increased by heavier particles. The analysis of the energy spectra shows that the turbulence modulation occurs throughout the entire range of resolved scales leading to non-trivial augmentation/depletion of the energy content among the different velocity components at different length-scales. In this regard, the ERPP approach is able to provide convergent statistics up to the smallest dissipative scales of the flow, giving the opportunity to trust the ensuing results. Indeed, a substantial modification of the turbulent fluctuations at the smallest-scales, i.e. at the level of the velocity gradients, is observed due to the particle backreaction. Small scale anisotropies are enhanced and fluctuations show a greater level of intermittency as measured by the probability distribution function of the longitudinal velocity increments and by the corresponding flatness. (C) 2018 The Authors. Published by Elsevier Ltd.
机译:作为一种新的相相间动量耦合方法的确切正则化点颗粒方法(ERPP)是广泛使用的第一次用于探讨在不同颗粒群体存在下均匀剪切湍流的响应。考虑了具有不同斯托克斯数和/或大众装载的颗粒悬浮液。颗粒与kolmogorov stokes序号数量抑制湍流动能时抑制肿块加载。相反,较重的颗粒几乎不变地使其相对于参考的解耦外壳。发现湍流调制是各向异性的,留下通过单一斯托克斯数颗粒影响的流动速度波动,同时通过较重的颗粒增加。能谱的分析表明,湍流调制发生在整个分辨的尺度范围内,导致不同长度尺度的不同速度分量中的能量内容的非普通增强/消耗。在这方面,ERPP方法能够向流量的最小耗散尺度提供会聚统计,使得有机会信任随后的结果。实际上,由于颗粒反射,观察到最小尺度的湍流波动的大幅改变,即在速度梯度的水平上观察到。提高小规模各向异性,并且波动显示通过纵向速度增量的概率分布函数和相应的平坦度来测量更大的间歇性。 (c)2018作者。 elsevier有限公司出版

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