A scaling relationship between power and shear for Bernoulli pads at equilibrium

IF 2.8 Q2 MECHANICS Flow (Cambridge, England) Pub Date : 2022-10-17 DOI:10.1017/flo.2022.23
Anshul S. Tomar, Kristina M. Kamensky, R. Mejía-Alvarez, A. Hellum, R. Mukherjee
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Abstract

Abstract Bernoulli pads can create a significant normal force on an object without contact. The radial outflow which creates this force also imposes a significant shear force on the object. Better understanding this shear force can improve pad designs in order to mitigate material deformation and damage, or allow the pads to be used as shear-based cleaning implements. Here, we use computational fluid dynamics to explore the parameter space and show a power-law relationship between the fluid power at the pad inlet and the maximum shear stress. These simulations are validated by a particle tracking velocimetry experiment. A relationship between the maximum shear stress and the inlet Reynolds number is provided, and some implications of the observed scaling relationships are explored.
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平衡状态下伯努利垫的功率和剪切力之间的比例关系
摘要伯努利垫可以在没有接触的情况下在物体上产生显著的法向力。产生这种力的径向流出也在物体上施加了显著的剪切力。更好地理解这种剪切力可以改进衬垫设计,以减轻材料变形和损坏,或者允许衬垫用作基于剪切的清洁工具。在这里,我们使用计算流体动力学来探索参数空间,并显示了衬垫入口处的流体功率和最大剪切应力之间的幂律关系。粒子跟踪测速实验验证了这些模拟。提供了最大剪切应力和入口雷诺数之间的关系,并探讨了观测到的标度关系的一些含义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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