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Unsteady motion of a vertically falling non-spherical particle has attracted considerable attention due to its frequent applications in nature and industry.A series of semi-analytical methods have been used to raise the results' accuracy as well as widening the region of convergence.The current study pursued a new analytical solution for the unsteady motion of a rigid non-spherical particle in a quiescent Newtonian fluid,based on the Optimal Homotopy Analysis Method.With a view towards obtaining the highest level of accuracy and ensuring the convergence of the analytical results,the averaged residual errors were obtained and minimized.In addition to flexibility,it was also proven that the proposed method can lead to completely reliable and precisely accurate results.Based on the series solution,the effects of physical parameters on the terminal settling velocity(i.e.the greatest velocity that a falling body may reach)and the acceleration time(i.e.the time that a particle reaches the settling velocity) are investigated.  相似文献   
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根据冰层钻进特点,从钻孔水力学角度出发,分析测试了钻具的质量、长度与钻井液的粘度、密度等因素对钻具下降速度特性的影响规律。通过对4种长度、不同质量的钻具在2种酯类钻井液中下落过程的测试,得出了钻具的下落速度与钻具的长度呈反比,与钻具的质量呈正比,且钻具的下落速度随钻井液的粘度和密度的增大而减小。钻具下落的加速运动时间主要与钻井液的粘度、密度及钻井液在钻具表面流动时的剪切速率有关。  相似文献   
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