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首页> 外文期刊>Engineering >Solid Boundary as Energy Source and Sink in a Dry Granular Dense Flow: A Comparison between Two Turbulent Closure Models
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Solid Boundary as Energy Source and Sink in a Dry Granular Dense Flow: A Comparison between Two Turbulent Closure Models

机译:固体边界作为干颗粒密流中的能源和汇:两种湍流闭合模型之间的比较

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摘要

Solid boundary as energy source and sink of the turbulent kinetic energy of the grains, and its influence on the mean and turbulent features of a dry granular dense flow, are investigated by using the proposed zero- and first-order turbulent closure models. The first and second laws of thermodynamics are used to derive the equilibrium closure relations, with the dynamic responses postulated by a quasi-static theory for weak turbulent intensity. Two closure models are applied to analyses of a gravity-driven flow down an inclined moving plane. While the calculated mean porosity and velocity correspond to the experimental outcomes, the influence of the turbulent eddy evolution can be taken into account in the first-order model. Increasing velocity slip on the inclined plane tends to enhance the turbulent dissipation nearby, and the turbulent kinetic energy near the free surface. The turbulent dissipation demonstrates a similarity with that of Newtonian fluids in turbulent boundary layer flows. While two-fold roles of the solid boundary are apparent in the first-order model, its role as an energy sink is more obvious in the zero-order model.
机译:利用提出的零阶和一阶湍流闭合模型,研究了固体边界作为能量来源和谷物湍动能的吸收者,以及其对干颗粒密实流的平均和湍流特征的影响。利用热力学的第一定律和第二定律推导出平衡的闭合关系,其动态响应由准静态理论针对弱湍流强度假设。将两个封闭模型应用于分析倾斜运动平面上重力驱动的流动。虽然计算出的平均孔隙度和速度与实验结果相对应,但在一阶模型中可以考虑湍流涡流演变的影响。在斜面上增加的速度滑移往往会增加附近的湍流耗散,并增加自由表面附近的湍流动能。湍流耗散与湍流边界层流中的牛顿流体表现出相似性。固相边界的双重作用在一阶模型中很明显,但在零阶模型中它作为能量吸收体的作用更为明显。

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