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首页> 外文期刊>Journal of Fluid Mechanics >Shear-induced incipient motion of a single sphere on uniform substrates at low particle Reynolds numbers
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Shear-induced incipient motion of a single sphere on uniform substrates at low particle Reynolds numbers

机译:在低粒子雷诺数的均匀基材上的剪切引起的单个球体的初始运动

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We study the incipient motion of single spheres in steady shear flow on regular substrates at low particle Reynolds numbers. The substrate consists of a monolayer of regularly arranged fixed beads, in which the spacing between beads is varied resulting in different angles of repose and exposures of the particle to the main flow. The flow-induced forces and the level of flow penetration into the substrate are determined numerically. Since experiments in this range had shown that the critical Shields number is independent of inertia but strongly dependent on the substrate geometry, the particle Reynolds number was fixed to 0.01 in the numerical study. Numerics indicates that rolling motion is always preferred to sliding and that the flow penetration is linearly dependent on the spacing between the substrate particles. Besides, we propose an analytical model for the incipient motion. The model is an extension of Goldman's classical result for a single sphere near a plain surface taking into account the angle of repose, flow orientation with respect to substrate topography and shielding of the sphere to the linear shear flow. The effective level of flow penetration is the only external parameter. The model, applied to triangular and quadratic arrangements with different spacings, is able to predict the dependence of the critical Shields number on the geometry and on the orientation of the substrate. The model is in very good agreement with numerical results. For well-exposed particles, we observed that the minimum critical Shields number for a certain angle of repose does not depend sensitively on the considered arrangement. At large angles of repose, as expected in fully armoured beds, the model is consistent with experimental results for erodible beds at saturated conditions.
机译:我们在低粒子雷诺数下稳定剪切流动稳定剪切流动的初始运动。基板由一体的定期布置的固定珠组成,其中珠子之间的间隔改变,从而导致颗粒的储存和暴露于主流的不同角度。流动引起的力和流动渗透到基板上的水平在数值上确定。由于该范围中的实验表明,临界屏蔽数与惯性无关,而是依赖于基板几何形状,因此在数值研究中将粒子雷诺数固定为0.01。数值表示轧制运动始终优选滑动,并且流动穿透是线性地取决于基板颗粒之间的间隔。此外,我们提出了初期运动的分析模型。该模型是Goldman的常规结果的延伸,在普通表面附近的单个球体,考虑到旋转的旋转角度,相对于基板地形和球体屏蔽线性剪切流程。流动渗透的有效水平是唯一的外部参数。应用于具有不同间隔的三角形和二次布置的模型能够预测临界屏蔽号对几何形状和基板的取向的依赖性。该模型与数值结果非常好。对于曝光良好的颗粒,我们观察到,某个休息角度的最小关键屏蔽号不会敏感地依赖于所考虑的布置。在大角度的休息中,正如在完全装甲的床上所预期的那样,该模型与饱和条件下蚀刻床的实验结果一致。

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