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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Stokes flow of micropolar fluid past a viscous fluid spheroid with non-zero boundary condition for microrotation
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Stokes flow of micropolar fluid past a viscous fluid spheroid with non-zero boundary condition for microrotation

机译:微极性流体的斯托克斯流经过粘性流体球体的非零边界条件,从而实现微旋转

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The Stokes axisymmetric flow of an incompressible micropolar fluid past a viscous fluid spheroid whose shape deviates slightly from that of a sphere is studied analytically. The boundary conditions used are the vanishing of the normal velocities, the continuity of the tangential velocities, continuity of shear stresses and spin-vorticity relation at the surface of the spheroid. The hydrodynamic drag force acting on the spheroid is calculated. An exact solution of the problem is obtained to the first order in the small parameter characterizing the deformation. It is observed that due to increased spin parameter value, the drag coefficient decreases. Well-known results are deduced and comparisons are made with classical viscous fluid and micropolar fluids.
机译:通过分析研究了不可压缩的微极性流体经过粘性流体球体的斯托克斯轴对称流动,该粘性流体球体的形状与球体的形状略有偏离。所使用的边界条件是法向速度的消失,切向速度的连续性,剪切应力的连续性以及球体表面的自旋涡度关系。计算作用在球体上的流体动力阻力。在表征变形的小参数中,可以将问题精确地求解到一阶。可以看出,由于旋转参数值增加,阻力系数减小。推论出众所周知的结果,并与经典的粘性流体和微极性流体进行了比较。

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