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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >CFD simulation of heat transfer enhancement of Al2O3/water and Al2O3/ethylene glycol nanofluids in a car radiator
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CFD simulation of heat transfer enhancement of Al2O3/water and Al2O3/ethylene glycol nanofluids in a car radiator

机译:汽车散热器中Al2O3 /水和Al2O3 /乙二醇纳米流体传热增强的CFD模拟

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The present numerical study simulated turbulent and laminar flow heat transfer in nanofluids (Al2O3 particles in water and ethylene glycol-based fluid) passing through a flat tube in 3D using computational fluid dynamics (CFD) for single and two-phase approaches. The advantages over pure base fluids were evaluated. Empirical correlations were used to calculate nanofluid viscosity and thermal conductivity as a function of the volumetric concentration of the nanoparticles. First, the Nusselt numbers of the pure water and pure ethylene glycol in flat tubes were compared with the experimental data. Next, the Nusselt numbers for both approaches were compared with those for experimental data at the same Reynolds number for different concentrations of nanoparticles. A small difference in the friction factors of the tube was observed between the two approaches and the Nusselt number for the two-phase model was markedly different from that for the single-phase model; however, the volumetric flow for the same heat transfer rate decreased and less pumping power was required for the nanofluids. (C) 2014 Elsevier Ltd. All rights reserved.
机译:目前的数值研究使用计算流体力学(CFD)对单相和两相方法模拟了通过3D扁平管的纳米流体(水和乙二醇基流体中的Al2O3颗粒)的湍流和层流传热。评估了相对于纯基础油的优势。经验相关性用于计算纳米流体的粘度和热导率,其是纳米颗粒体积浓度的函数。首先,将扁管中纯水和纯乙二醇的努塞尔数与实验数据进行比较。接下来,针对不同浓度的纳米粒子,将两种方法的努塞尔数与相同雷诺数下的实验数据进行比较。在两种方法之间观察到管的摩擦系数存在细微差异,并且两相模型的努塞尔数与单相模型的努塞尔数显着不同。然而,相同传热速率下的体积流量减少,纳米流体所需的泵送功率更低。 (C)2014 Elsevier Ltd.保留所有权利。

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