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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Stability of Dean Flow Between Two Porous Concentric Cylinders With Radial Flow and a Constant Heat Flux at the Inner Cylinder
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Stability of Dean Flow Between Two Porous Concentric Cylinders With Radial Flow and a Constant Heat Flux at the Inner Cylinder

机译:内圆柱恒定通量的两个径向流多孔同心圆柱之间的院长流稳定性

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摘要

A linear analysis for the instability of viscous flow between two porous concentric circular cylinders driven by a constant azimuthal pressure gradient is presented when a radial flow through the permeable walls of the cylinders is present. In addition, a constant heat flux at the inner cylinder is applied. The linearized stability equations form an eigenvalue problem, which is solved by using the classical Runge-Kutta-Fehlberg scheme combined with a shooting method, which is termed the unit disturbance method. It is found that for a given value of the constant heat flux parameter N, even for a radially weak outward flow, there is a strong stabilizing effect and the stabilization is greater as the gap between the cylinders increases. However, in the presence of a weak inward flow for a wider gap, the constant heat flux has no role on the onset.
机译:当存在穿过圆柱体的可渗透壁的径向流时,对由恒定的方位角压力梯度驱动的两个多孔同心圆柱体之间的粘性流的不稳定性进行了线性分析。另外,在内筒处施加恒定的热通量。线性化的稳定性方程形成一个特征值问题,可以通过使用经典的Runge-Kutta-Fehlberg方案与射击方法(称为单位扰动方法)相结合来解决。已经发现,对于恒定的热通量参数N的给定值,即使对于径向弱的向外流动,也具有很强的稳定作用,并且随着汽缸之间的间隙增加,稳定作用更大。但是,在存在较弱的向内流动,间隙较大的情况下,恒定的热通量对开始没有影响。

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