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首页> 外文期刊>Applied Mechanics and Engineering >EFFECT OF COMPRESSIBILITY AND SUSPENDED PARTICLES ON THERMAL CONVECTION IN A WALTERS' B' ELASTICO-VISCOUS FLUID IN HYDROMAGNETICS
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EFFECT OF COMPRESSIBILITY AND SUSPENDED PARTICLES ON THERMAL CONVECTION IN A WALTERS' B' ELASTICO-VISCOUS FLUID IN HYDROMAGNETICS

机译:流体力学中可压缩性和悬浮颗粒对沃尔夫B'弹性粘流体的热对流的影响

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摘要

A layer of a compressible, electrically conducting Walters' B' elastico-viscous fluid permeated with suspended particles heated from below in the presence of a magnetic field is considered. For the case of stationary convection, the Walters'(model B') elastico-viscous fluid behaves like a Newtonian fluid and the compressibility, magnetic field are found to have stabilizing effects, whereas the suspended particles have a destabilizing effect on the thermal convection. The presence of each - viscoelasticity, magnetic field and suspended particles introduces oscillatory modes in the system which were non-existent in their absence.
机译:考虑了一层可压缩的,导电的沃尔特斯B'弹性粘滞流体,该流体渗透有在磁场存在下从下方加热的悬浮颗粒。对于固定对流,沃尔特斯(B型)弹性粘滞流体的行为类似于牛顿流体,并且发现可压缩性,磁场具有稳定作用,而悬浮颗粒对热对流则具有不稳定作用。粘弹性,磁场和悬浮颗粒中的每一个的存在都会在系统中引入振荡模态,而在不存在振荡模态的情况下则不存在。

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