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Numerical research of nature convective heat transfer enhancement filled with nanofluids in rectangular enclosures

机译:矩形壳体中填充纳米流体的自然对流换热增强的数值研究

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摘要

Heat transfer enhancement utilizing nanofluids in a two-dimensional enclosure is investigated for various pertinent parameters. The Khanafer's model is used to analyze heat transfer performance of nanofluids inside an enclosure taking into account the solid particle dispersion. Transport equations are model by a stream function-vorticity formulation and are solved numerically by finite-difference approach. Based upon the numerical predictions, the effects of Rayleigh number (R alpha) and aspect ratio (AR) on the flow pattern and energy transport within the thermal boundary layer are presented. The diameter of the nanoparticle d(p) is taken as 10 nm in nanofluids. The buoyancy parameter is 10(3) <= Ra <= 10(6) and aspect ratios (AR) of two-dimensional enclosure are 1/2, 1, 2. Results show that increasing the buoyancy parameter and volume fraction of nanofluids cause an increase in the average heat transfer coefficient. Finally, the empirical equation was built between average Nusselt number and volume fraction. (c) 2006 Elsevier Ltd. All rights reserved.
机译:对于各种相关参数,研究了在二维外壳中利用纳米流体的传热增强。 Khanafer模型用于考虑到固体颗粒的分散性来分析封闭体内纳米流体的传热性能。输运方程通过流函数涡度公式建模,并通过有限差分法进行数值求解。基于数值预测,提出了瑞利数(R alpha)和纵横比(AR)对热边界层内流型和能量传输的影响。在纳米流体中,纳米颗粒的直径d(p)取为10nm。浮力参数为10(3)<= Ra <= 10(6),二维外壳的长宽比(AR)为1 / 2、1、2。结果表明,增加浮力参数和纳米流体的体积分数会导致平均传热系数的增加。最后,建立了平均努塞尔数和体积分数之间的经验方程。 (c)2006 Elsevier Ltd.保留所有权利。

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