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A numerical investigation of the heat transfer characteristics of water-based mango bark nanofluid flowing in a double-pipe heat exchanger

机译:双管换热器中水基芒果皮纳米流体传热特性的数值研究

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摘要

In this study, the heat transfer characteristics of a new class of nanofluids made from mango bark was numerically simulated and studied during turbulent flow through a double pipe heat exchanger. A range of volume fractions was considered for a particle size of 100 nm. A two-phase flow was considered using the mixture model. The mixture model governing equations of continuity, momentum, energy and volume fraction were solved using the finite-volume method. The results showed an increase of the Nusselt number by 68% for a Reynolds number of 5,000 and 45% for a Reynolds number of 13 000, and the heat transfer coefficient of the nanofluid was about twice that of the base fluid. In addition, the Nusselt number decreased by an average value of 0.76 with an increase of volume fraction by 1%. It was also found that there was a range of Reynolds numbers in which the trend of the average heat transfer coefficient of the nanofluid was completely reversed, and several plots showing zones of higher heat transfer which if taken advantage of in design will lead to higher heat transfer while avoiding other zones that have low heat transfer. It is hoped that these results will influence the thermal design of new heat exchangers.
机译:在这项研究中,对由芒果树皮制成的新型纳米流体的传热特性进行了数值模拟,并在湍流通过双管换热器的过程中进行了研究。对于100nm的粒径,考虑一定范围的体积分数。使用混合模型考虑了两相流。用有限体积法求解了连续性,动量,能量和体积分数的混合模型控制方程。结果表明,雷诺数为5,000时,努塞尔数增加了68%;雷诺数为13000时,努塞尔数增加了45%,纳米流体的传热系数约为基础流体的两倍。此外,随着体积分数的增加,Nusselt数减少了0.76的平均值。还发现存在一定范围的雷诺数,其中纳米流体的平均传热系数的趋势完全相反,并且一些图显示了更高的传热区域,如果在设计中加以利用,则会导致更高的热量同时避免其他低传热区域。希望这些结果将影响新热交换器的热设计。

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