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Density-driven sinking dynamics of a granular ring in sheared granular flows

机译:剪切粒状流动中颗粒环的密度驱动沉降动力学

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This study reports experimental findings on the sinking dynamics of a heavy granular ring caused by the density-driven segregation effect in sheared granular flows. Specifically, this study systematically investigates the influences of the density ratio, shear rate, and solid fraction of the granular material on the sinking behavior of a heavy granular ring. The parameters of the dimensionless sinking depth and sinking rate, respectively, describe the change in the granular ring position and quantify the particle sinking speed. Experimental results show that both the dimensionless sinking depth and the sinking rate increase as the bottom wall velocity (shear rate) and solid fraction increase. The dimensionless sinking depth and the sinking rate also exhibit a linear relation. The dimensionless sinking depth does not increase monotonically as the density ratio increases. The sinking rate increases linearly with the final steady-state sinking depth for the same heavy granular ring structure, regardless of the wall velocity (shear rate), solid fraction, and density ratio. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:本研究报告了由剪切颗粒流动中的密度驱动的分离效应引起的重质粒状沉降动力学的实验结果。具体地,本研究系统地研究了粒状材料的密度比,剪切速率和固体部分对重粒状环的沉没行为的影响。无量纲下沉深度和下沉速率的参数分别描述了粒状位置的变化并量化了粒子沉降速度。实验结果表明,随着底壁速度(剪切速率)和固体馏分增加,无量纲下沉深度和下沉速率都会增加。无量纲下沉深度和下沉率也表现出线性关系。随着密度的比率增加,无量纲下沉深度不会单调地增加。由于壁速度(剪切速率),固体分数和密度比,沉降速率随着最终稳态下沉深度而线性增加。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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