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首页> 外文期刊>Acta Mechanica >Stability of viscous flow driven by an azimuthal pressure gradient between two porous concentric cylinders with radial flow and a radial temperature gradient
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Stability of viscous flow driven by an azimuthal pressure gradient between two porous concentric cylinders with radial flow and a radial temperature gradient

机译:由两个多孔同心圆柱之间的径向压力梯度和径向温度梯度驱动的粘性流的稳定性

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摘要

The effect of a radial temperature gradient on the stability of viscous flow between two porous concentric circular cylinders driven by a constant azimuthal pressure gradient is studied when a radial flow through the permeable walls of the cylinders is present. The radial Reynolds number β based on the radial velocity at the inner cylinder and the inner radius R 1 is varied from ?130 to 30 and both positive and negative values of the parameter N are taken, where N depends on the temperature difference T 2 ? T 1 between the outer and inner cylinders. The linearized stability equations form an eigenvalue problem, which are solved by using a classical Runge-Kutta scheme combined with a shooting method, termed unit disturbance method. It is found that for a given value of N the radially outward flow (β > 0) has a stabilizing effect and the stabilization is more as the gap between the cylinders increases. But the inward throughflow (β < 0) has a destabilizing influence when |β| increases up to a certain critical value and thereafter the throughflow is stabilizing with further increase in |β|. When the outer cylinder is kept at a lower temperature than the inner one (N < 0), the flow becomes more and more stable with an increase in |N|. On the other hand, for N > 0, the flow becomes more and more unstable with an increase in N.
机译:当存在通过圆柱体的可渗透壁的径向流时,研究了径向温度梯度对两个多孔同心圆柱体之间由恒定方位角压力梯度驱动的粘性流稳定性的影响。基于内筒处的径向速度和内半径R 1 的径向雷诺数β从?130变为30,并且取参数N的正值和负值,其中N取决于温度差异T 2 ? T 1 在外圆柱和内圆柱之间。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,对于给定的N值,径向向外的流动(β> 0)具有稳定作用,并且随着气缸之间的间隙增加,稳定作用更大。但是,当|β|时,向内通流(β<0)具有不稳定的影响。增大到一定的临界值,然后|β|进一步增加,通流稳定。当外筒的温度低于内筒的温度(N <0)时,流量随着| N |的增加而变得越来越稳定。另一方面,对于N> 0,随着N的增加,流动变得越来越不稳定。

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  • 来源
    《Acta Mechanica》 |2007年第4期|73-86|共14页
  • 作者单位

    Department of Mathematics Gauhati University Guwahati 781 014;

    Department of Mathematics Indian Institute of Technology Kharagpur 721 302;

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  • 正文语种 eng
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