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Effects of capillary force and surface deformation on particle removal in turbulent flows

机译:毛细作用力和表面变形对湍流中颗粒去除的影响

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摘要

A new rolling detachment model for particle removal in the presence of capillary forces based on the maximum adhesion resistance was developed. The new model uses an effective thermodynamic work of adhesion model that includes the effects of capillary forces generated by the formation of liquid meniscus at the interface. The JKR and DMT models for elastic particle and surface deformations and the Maugis and Pollock model for the plastic deformation were extended to include the effect of capillary forces. Under turbulent flow conditions, the criteria for incipient rolling detachments were evaluated. The turbulence burst model was used to evaluate the air velocity near the substrate. The critical shear velocities for resuspension of particles of different sizes were evaluated and the results were compared with those without capillary force. The model predictions were compared with the available experimental data and good agreement was found.
机译:建立了一种新的滚动分离模型,该模型基于毛细作用力的最大附着力来去除颗粒。新模型使用了一种有效的粘附力热力学模型,该模型包括界面处形成液体弯月面所产生的毛细作用力。扩展了用于弹性粒子和表面变形的JKR和DMT模型以及用于塑性变形的Maugis和Pollock模型,以包括毛细作用力的影响。在湍流条件下,评估了初始滚动脱离的标准。湍流爆发模型用于评估基板附近的空气速度。评估了重悬不同大小颗粒的临界剪切速度,并将结果与​​没有毛细管力的结果进行了比较。将模型预测值与可用的实验数据进行比较,并找到了很好的一致性。

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