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首页> 外文期刊>International journal of non-linear mechanics >Linear and non-linear double diffusive convection in a rotating porous layer using a thermal non-equilibrium model
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Linear and non-linear double diffusive convection in a rotating porous layer using a thermal non-equilibrium model

机译:使用热非平衡模型的旋转多孔层中的线性和非线性双扩散对流

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Double diffusive convection in a fluid-saturated rotating porous layer heated from below and cooled from above is studied when the fluid and solid phases are not in local thermal equilibrium, using both linear and non-linear stability analyses. The Darcy model that includes the time derivative and Coriolis terms is employed as momentum equation. A two-field model that represents the fluid and solid phase temperature fields separately is used for energy equation. The onset criterion for stationary, oscillatory and finite amplitude convection is derived analytically. It is found that small inter-phase heat transfer coefficient has significant effect on the stability of the system. There is a competition between the processes of thermal and solute diffusions that causes the convection to set in through either oscillatory or finite amplitude mode rather than stationary. The effect of solute Rayleigh number, porosity modified conductivity ratio, Lewis number, diffusivity ratio, Vadasz number and Taylor number on the stability of the system is investigated. The non-linear theory based on the truncated representation of Fourier series method predicts the occurrence of subcritical instability in the form of finite amplitude motions. The effect of thermal non-equilibrium on heat and mass transfer is also brought out.
机译:使用线性和非线性稳定性分析,研究了当流体和固相不处于局部热平衡状态时,从下方加热并从上方冷却的饱和流体旋转多孔层中的双扩散对流。包含时间导数和科里奥利项的Darcy模型用作动量方程。分别代表流体和固相温度场的两场模型用于能量方程。通过分析得出静止,振荡和有限振幅对流的起始准则。发现相间传热系数小对系统的稳定性有重要影响。在热扩散过程和溶质扩散过程之间存在竞争,这导致对流通过振荡或有限幅度模式而不是平稳模式进入。研究了溶质瑞利数,孔隙率修正电导率比,路易斯数,扩散率比,瓦达兹数和泰勒数对体系稳定性的影响。基于傅立叶级数方法的截断表示的非线性理论以有限振幅运动的形式预测了亚临界不稳定性的发生。还提出了热不平衡对传热和传质的影响。

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