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首页> 外文期刊>International Journal of Multiphase Flow >Interaction force and residual stress models for volume-averaged momentum equation for flow laden with particles of comparable diameter to computational grid width
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Interaction force and residual stress models for volume-averaged momentum equation for flow laden with particles of comparable diameter to computational grid width

机译:体积平均动量方程的相互作用力和残余应力模型,其载流具有与计算网格宽度可比较的直径的粒子

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摘要

An interaction model considering the local stress on a particle surface is developed based on a volume averaging technique. With a scope to apply to turbulence modulation caused by particles of diameter comparable to the Kolmogorov length scale, grid width for resolving vortical structures outside the boundary layer of the particles is set to be close to the particle diameter. The interaction force in the volume averaged momentum equation is modelled based on analytical solutions of two fundamental flows. For. the uniform. flow case, the nonlinear effect of the first -order term in a series expansion with respect to the particle Reynolds number is found to be essential for the anisotropic Eulerian distribution of the interaction force. For the shear flow case, the anisotropic distribution of the interaction force is also essential, and it is modelled based on the Stokes's solution. Considering that the length scale of the averaging volume is determined to be comparable to the grid width and the particle diameter, the residual stress, which originates from the volume averaging of the nonlinear term in the momentum equation, is also modelled based on an undisturbed linear shear flow. According to the test simulation using the interaction force and residual stress models of the fundamental flows, the anisotropic interaction force model essentially improves the representation of the flow field and the mechanical work, and the effect of the residual stress is found to be reasonably reproduced by the present model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:基于体积平均技术,开发了一种考虑颗粒表面局部应力的相互作用模型。在适用于由直径与Kolmogorov长度标度相当的颗粒引起的湍流调节的范围内,用于解决颗粒边界层之外的旋涡结构的网格宽度设置为接近粒径。基于两个基本流的解析解,对体积平均动量方程中的相互作用力进行建模。对于。制服。在流动情况下,相对于粒子雷诺数,一阶项在级数展开中的非线性效应对于相互作用力的各向异性欧拉分布至关重要。对于剪切流情况,相互作用力的各向异性分布也很重要,它是基于斯托克斯解决方案进行建模的。考虑到平均体积的长度比例被确定为可与网格宽度和颗粒直径相比较,基于动量方程中非线性项的体积平均产生的残余应力也基于无扰动线性模型进行建模。剪切流。根据使用基本流的相互作用力和残余应力模型进行的测试模拟,各向异性的相互作用力模型从本质上改善了流场和机械功的表示,并发现残余应力的影响可以合理地重现。当前模型。 (C)2016 Elsevier Ltd.保留所有权利。

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