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首页> 外文期刊>International Journal of Heat and Mass Transfer >The onset of Lapwood-Brinkman convection using a thermal non-equilibrium model
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The onset of Lapwood-Brinkman convection using a thermal non-equilibrium model

机译:热非平衡模型对Lapwood-Brinkman对流的开始

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The stability of a horizontal fluid saturated sparsely packed porous layer heated from below and cooled form above when the solid and fluid phases are not in local thermal equilibrium is examined analytically. The Lapwood-Brinkman model is used for the momentum equation and a two-field model is used for energy equation each representing the solid and fluid phases separately. Although the inertia term is included in the general formulation, it does not affect the stability condition since the basic state is motionless. The linear stability theory is employed to obtain the condition for the onset of convection. The effect of thermal non-equilibrium on the onset of convection is discussed. It is shown that the results of Darcy model for the non-equilibrium case can be recovered in the limit as Darcy number Da→ 0. Asymptotic analysis for both small and large values of the inter phase heat transfer coefficient H is also presented. An excellent agreement is found between the exact solutions and asymptotic solutions when H is very small.
机译:当固相和液相不处于局部热平衡时,从下方加热并从上方冷却的水平流体饱和稀疏堆积多孔层的稳定性通过分析进行了研究。 Lapwood-Brinkman模型用于动量方程,两场模型用于能量方程,分别代表固相和液相。尽管惯性项包含在一般公式中,但由于基本状态是静止的,因此它不会影响稳定性条件。采用线性稳定性理论来获得对流发生的条件。讨论了热不平衡对流开始的影响。结果表明,达西模型在非平衡情况下的结果可以在达西数Da→0的极限内得到恢复。还给出了相间传热系数H的小数值和大数值的渐近分析。当H很小时,在精确解和渐近解之间找到了一个极好的协议。

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