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Laminar convective heat transfer and viscous pressure loss of alumina-water and zirconia-water nanofluids

机译:氧化铝-水和氧化锆-水纳米流体的层流对流换热和粘性压力损失

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摘要

Laminar convective heat transfer and viscous pressure loss were investigated for alumina-water and zirconia-water nanofluids in a flow loop with a vertical heated tube. The heat transfer coefficients in the entrance region and in the fully developed region are found to increase by 17% and 27%, respectively, for alumina-water nanofluid at 6 vol % with respect to pure water. The zirconia-water nanofluid heat transfer coefficient increases by approximately 2% in the entrance region and 3% in the fully developed region at 1.32 vol %. The measured pressure loss for the nanofluids is in general much higher than for pure water. However, both the measured nanofluid heat transfer coefficient and pressure loss are in good agreement with the traditional model predictions for laminar flow, provided that the loading- and temperature-dependent thermophysical properties of the nanofluids are utilized in the evaluation of the dimensionless numbers. In other words, no abnormal heat transfer enhancement or pressure loss was observed within measurement errors.
机译:在垂直加热管的流动回路中,研究了氧化铝-水和氧化锆-水纳米流体的层流对流换热和粘性压力损失。对于氧化铝水纳米流体,相对于纯净水为6体积%,发现在入口区域和完全发达区域的传热系数分别增加了17%和27%。氧化锆-水纳米流体的传热系数在入口区域增加了约2%,在完全展开的区域中增加了3%(1.32体积%)。测得的纳米流体的压力损失通常远高于纯水。但是,所测得的纳米流体的传热系数和压力损失都与传统的层流模型预测非常吻合,前提是纳米流体的载荷和温度相关的热物理性质可用于评估无量纲数。换句话说,在测量误差内没有观察到异常的传热增强或压力损失。

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