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Local thermal non-equilibrium effects on thermal convection in a rotating anisotropic porous layer

机译:局部热非平衡对旋转各向异性多孔层热对流的影响

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摘要

Effects of local thermal non-equilibrium (LTNE) on thermal convection in a rotating fluid-saturated anisotropic porous layer are investigated. The analysis has been carried out by constructing a simplified model consisting of six coupled nonlinear ordinary differential equations. The study reveals the equivalence of linear and nonlinear stability boundaries indicating the linearized instability theory captures completely the physics of the onset of convection. Results show that the presence of rotation is to introduce oscillatory convection once the Taylor number exceeds a threshold value. The preferred mode of instability is found to be influenced significantly by the mechanical anisotropy parameter as well and it is demonstrated that it has both stabilizing and destabilizing effects on the steady onset in the presence of rotation. Besides, asymptotic analyses for small and large values of the interphase heat transfer coefficient are presented. Heat transport is calculated in terms of Nusselt number. Also, the coupled nonlinear ordinary differential equations are solved numerically using Runge-Kutta method and the transient behavior of Nusselt number is demonstrated for various values of physical parameters. © 2015 Elsevier Inc.
机译:研究了旋转流体饱和各向异性多孔层中局部热非平衡(LTNE)对热对流的影响。通过构建简化模型进行分析,该模型包含六个耦合的非线性常微分方程。该研究揭示了线性和非线性稳定边界的等价性,表明线性化的不稳定性理论完全掌握了对流发生的物理原理。结果表明,一旦泰勒数超过阈值,旋转的存在将引入振荡对流。发现不稳定性的优选方式也受到机械各向异性参数的显着影响,并且证明了它在旋转存在下对稳定的开始既具有稳定作用又具有不稳定作用。此外,还给出了相间传热系数的小数值和大数值的渐近分析。传热是根据努塞尔数计算的。此外,使用Runge-Kutta方法对耦合的非线性常微分方程进行数值求解,并证明了各种物理参数值的Nusselt数的瞬态行为。 ©2015 Elsevier Inc.

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