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Coriolis effect on thermal convective instability of viscoelastic fluids in a rotating porous cylindrical annulus

机译:科里奥利效应对旋转多孔圆柱环中粘弹性流体的热对流不稳定性的影响

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摘要

Linear stability analysis of thermal convection is studied for a viscoelastic fluid in a rotating porous cylindrical annulus. The modified Darcy–Jeffrey model with the addition of the Coriolis term in a rotating frame of reference is applied to characterize the non-Newtonian rheology in porous media. We investigate how the interaction among the Coriolis force, viscoelasticity, and bounded sidewalls affects the preferred mode at the onset of convection. The results show that for a slowly rotating case, the oscillatory mode is always preferred for any considered cylindrical radii. However, for a moderately rotating case, the oscillatory preferred mode only arises intermittently as the outer cylindrical radius gradually increases. This result is quite different from the case for viscoelastic fluids in a rotating porous layer or in a porous cylinder without rotation. Further, we discover that for a pair of given cylindrical radii when the Taylor number exceeds a critical value depending on the viscoelastic parameters, the oscillatory convection does not occur. We also examine how the variations of the Taylor number and the viscoelastic parameters affect the patterns of temperature disturbance at the onset of convection.
机译:研究了旋转多孔圆柱环空中的粘弹性流体的热对流线性稳定性分析。修改后的Darcy-Jeffrey模型在旋转参考系中添加了Coriolis项,以表征多孔介质中的非牛顿流变学。我们研究在对流开始时科里奥利力,粘弹性和边界侧壁之间的相互作用如何影响首选模式。结果表明,对于缓慢旋转的情况,对于任何考虑的圆柱半径,始终首选振荡模式。但是,对于适度旋转的情况,随着圆柱外半径逐渐增大,振荡优先模式只会间歇出现。该结果与旋转的多孔层或不旋转的多孔圆柱体中的粘弹性流体的情况大不相同。此外,我们发现,当泰勒数根据粘弹性参数超过临界值时,对于一对给定的圆柱半径,不会发生振荡对流。我们还研究了泰勒数和粘弹性参数的变化如何在对流开始时影响温度扰动的模式。

著录项

  • 来源
    《Transport in Porous Media》 |2013年第2期|349-362|共14页
  • 作者单位

    State Key Lab for Turbulence Complex Systems and Department of Mechanics and Engineering Science College of Engineering Peking University">(1);

    State Key Lab for Turbulence Complex Systems and Department of Mechanics and Engineering Science College of Engineering Peking University">(1);

    State Key Lab for Turbulence Complex Systems and Department of Mechanics and Engineering Science College of Engineering Peking University">(1);

    State Key Lab for Turbulence Complex Systems and Department of Mechanics and Engineering Science College of Engineering Peking University">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Thermal convection; Porous media; Viscoelstic fluids; Rotating; Cylindrical annulus;

    机译:热对流;多孔介质粘液;旋转圆柱环;

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