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首页> 外文期刊>Journal of Fluid Mechanics >Instability of a bed of particles sheared by a viscous flow
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Instability of a bed of particles sheared by a viscous flow

机译:粘性流剪切的颗粒床的不稳定性

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The instability of a bed of particles sheared by a viscous fluid is investigated theoretically. The viscous flow over the wavy bed is first calculated, and the bed shear stress is derived. The particle transport rate induced by this bed shear stress is calculated from the viscous resuspension theory of Leighton & Acrivos (1986). Mass conservation of the particles then gives explicit expressions for the wave velocity and growth rate, which depend on four dimensionless parameters: the wavenumber, the fluid thickness, a viscous length and the shear stress. The mechanism of the instability is given. It appears that for high enough fluid-layer thickness, long-wave instability arises as soon as grains move, while short waves are stabilized by gravity. For smaller fluid thickness, the destabilizing effect of fluid inertia is reduced, so that the moving flat bed is stable for small shear stress, and unstable for high shear stress. The most amplified wavelength scales with the viscous length, in agreement with the few available experiments for small particle Reynolds numbers. The results are also compared with related studies for turbulent flow. [References: 40]
机译:理论上研究了被粘性流体剪切的颗粒床的不稳定性。首先计算波浪床上方的粘性流,然后得出床层的剪切应力。根据Leighton&Acrivos(1986)的粘性重悬浮理论计算了由该床切应力引起的颗粒传输速率。然后,颗粒的质量守恒给出了波速和增长率的明确表达式,该表达式取决于四个无量纲的参数:波数,流体厚度,粘性长度和剪切应力。给出了不稳定性的机理。似乎对于足够高的流体层厚度,晶粒移动后就会出现长波不稳定性,而短波则通过重力而稳定。对于较小的流体厚度,减小了流体惯性的去稳定作用,因此移动平板对于较小的剪切应力是稳定的,而对于较高的剪切应力是不稳定的。放大后的波长随粘性长度变化,这与对小粒子雷诺数的少数可用实验一致。还将结果与湍流的相关研究进行了比较。 [参考:40]

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