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首页> 外文期刊>Journal of porous media >THE EFFECT OF LOCAL THERMAL NONEQUILIBRIUM ON THE ONSET OF CONVECTION IN A POROUS MEDIUM LAYER SATURATED BY A NANOFLUID: BRINKMAN MODEL
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THE EFFECT OF LOCAL THERMAL NONEQUILIBRIUM ON THE ONSET OF CONVECTION IN A POROUS MEDIUM LAYER SATURATED BY A NANOFLUID: BRINKMAN MODEL

机译:纳米流体饱和的多孔中层中局部热非平衡对对流开始的影响:布林克曼模型

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摘要

The onset of convection in a horizontal layer of a porous medium saturated by a nanofluid is studied analytically. The model used for the nanofluid incorporates the effects of Brownian motion and thermophoresis. For the porous medium the Brinkman model is employed. Three cases of free-free, rigid-rigid, and rigid-free boundaries are considered. The effect of local thermal nonequilibrium between the particle, fluid, and solid-matrix phases is investigated using a three-temperature model. The analysis reveals that in some circumstances the effect of local thermal nonequilibrium (LTNE) can be significant, but for a typical dilute nanofluid (with large Lewis number and with small particle-to-fluid heat capacity ratio) the effect is small.
机译:分析地研究了被纳米流体饱和的多孔介质的水平层中对流的开始。用于纳米流体的模型结合了布朗运动和热泳的影响。对于多孔介质,采用Brinkman模型。考虑了自由-自由,刚性-刚性和刚性-自由边界的三种情况。使用三温度模型研究了颗粒,流体和固相之间局部热不平衡的影响。分析表明,在某些情况下,局部热不平衡(LTNE)的影响可能很大,但是对于典型的稀纳米流体(具有较大的Lewis数和较小的颗粒与流体热容比),效果很小。

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