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首页> 外文期刊>International Journal of Heat and Mass Transfer >Natural convection of a nanofluid between two eccentric cylinders saturated by porous material: Buongiorno's two phase model
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Natural convection of a nanofluid between two eccentric cylinders saturated by porous material: Buongiorno's two phase model

机译:多孔材料饱和的两个偏心圆柱之间的纳米流体自然对流:Buongiorno的两相模型

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This paper concerns with a numerical study on heat transfer by natural convection of different nanofluids inside a porous medium between two horizontal eccentric cylinders. The Buongiorno’s model was utilized to track the nanoparticles concentration. Heat transfer by natural convection of water-copper, water-diamond and water–silicon dioxide nanofluids inside a porous medium between two cylinders was studied. A set of characteristic equations were solved using finite element method. Range of parameters which are studied are Ra = 103-106, Da = 10−6-10−3, ε = 0.1–0.9 and volume fractions of 0.0–0.1, Nr = Nt = Nb = 0.1–0.5, andLe = 1–10. The porous medium was analyzed by Darcy-Brinkman model. The results showed that thermophoresis parameter and Brownian parameter have no significant effect on isothermal lines and the streamlines. The probability of collision of nanoparticles decreases with increasing the Lewis number, which consequently decreases the average Nusselt number. The maximum and minimum enhancement in natural convection was detected in water-diamond and water–silicon dioxide respectively.
机译:本文涉及对两个水平偏心圆柱体之间的多孔介质内部不同纳米流体自然对流传热的数值研究。 Buongiorno模型用于追踪纳米粒子的浓度。研究了两个圆筒之间的多孔介质内部的水铜,水金刚石和水-二氧化硅纳米流体的自然对流传热。使用有限元方法求解了一组特征方程。研究的参数范围为Ra = 103-106,Da = 10-6-6-10-3,ε= 0.1-0.9和体积分数0.0-0.1,Nr = Nt = Nb = 0.1-0.5和Le = 1– 10。通过Darcy-Brinkman模型分析多孔介质。结果表明,热泳参数和布朗参数对等温线和流线没有显着影响。纳米粒子碰撞的可能性随着Lewis数的增加而降低,从而降低了平均Nusselt数。自然对流的最大和最小增强分别在水菱形和水二氧化硅中检测到。

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