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首页> 外文期刊>Indian Journal of Science and Technology >The Study of a Dilute Suspension of Periodically Forced Spherical Particles in an Oscillating Newtonian Fluid at Low Reynolds Numbers
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The Study of a Dilute Suspension of Periodically Forced Spherical Particles in an Oscillating Newtonian Fluid at Low Reynolds Numbers

机译:低雷诺数振荡牛顿流体中周期强迫球形粒子的稀悬浮研究。

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Background/Objective: The dynamics of a dilute suspension of periodically forced spherical particles in an oscillating Newtonian fluid at low Reynolds numbers is discussed. The behavior of the particle(s) due to the periodic force imposed on the spherical particle, the particle Reynolds number and the oscillating fluid has been studied. Methods: The expression for the hydrodynamic force acting on a particle moving in a fluid undergoing uniform time dependent flow, given by Lovalenti and Brady, is used and equations for the particle velocity and particle displacement under these conditions have been formulated. These integro differential equations have been solved numerically and are compared with analytical solutions obtained from a linearized version of the equations. Findings: It is observed that the phase space plots obtained by omitting the nonlinear term are reasonably accurate for most of the parametric regimes considered. It is also shown that the numerical solution can be approximated from the analytical solution of the linearized equations by scaling them suitably. The numerical solution obtained from the full nonlinear equation has also been compared with the solutions obtained by a perturbation method obtained by using Re1/2 (where Re is the particle Reynolds’ number), as the perturbation parameter. The variation of the rheological parameters with the parameters of the system is depicted. The particle motion had a preferred direction and it was seen that the direction of the initial motion was its preferred direction of motion. Hence the reflection of the phase plots was obtained, when the forces were applied in the opposite direction. Applications: The software/ program developed and the study will serve as a test case for the study of periodically forced particles in a fluid at low to moderate Reynolds numbers.
机译:背景/目的:讨论了在低雷诺数下周期性牛顿流体在振荡牛顿流体中稀悬浮液的动力学。已经研究了由于施加在球形颗粒上的周期性力,颗粒雷诺数和振​​荡流体而引起的颗粒行为。方法:使用由Lovalenti和Brady给出的,作用于在均匀时变流中的流体中运动的粒子上的流体动力的表达式,并公式化了这些条件下的粒子速度和粒子位移。这些积分微分方程已得到数值求解,并与从线性方程式获得的解析解进行了比较。研究结果:观察到,通过忽略非线性项而获得的相空间图对于所考虑的大多数参数体系都相当准确。还表明,可以通过适当地缩放线性化方程组的解析解来近似数值解。还将从完全非线性方程式获得的数值解与通过使用Re1 / 2(其中Re是粒子雷诺数)作为摄动参数的摄动方法获得的解进行了比较。描绘了流变参数随系统参数的变化。质点运动具有优选的方向,并且可以看出初始运动的方向是其优选的运动方向。因此,当在相反方向施加力时,获得了相位图的反射。应用:开发的软件/程序和该研究将作为研究案例,用于研究低至中等雷诺数的流体中周期性强迫颗粒。

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