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Enhanced heat transport behavior of micro channel heat sink with graphene based nanofluids

机译:基于石墨烯的纳米流体增强微通道散热器的热传输行为

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This paper investigates the convective heat transfer characteristics of f-GnP (functionalized Graphene Nanoplatelets) suspended in distilled water. The effect of mass flow rate (5 g/s to 30 g/s) and the GnP concentration (0 vol% to 0.2 vol%) on various heat transport parameters such as convective heat transfer coefficient, temperature drop, Nusselt Number, Pressure drop have been discussed in this study. Experiments with GnP based nanofluids in the heat sink decreases the heat sink temperature by 10 °C and enhances the convective heat transfer coefficient and Nusselt number by 71% and 60% with a little increment in the pressure drop of about 12% higher as compared with water. The results prove that the functionalized GnP based nanofluids would effectively replace the existing nanofluids that improves the performance of the electronic chips due to enhanced thermal conductivity and convective heat transfer coefficient.
机译:本文研究了悬浮在蒸馏水中的F-GNP(官能化石墨烯纳米孔)的对流传热特性。在各种热传递参数如对流传热系数,温度下降,露珠数,压降等各种热传输参数上,质量流速(5g / s至30g / s)和GNP浓度(0体积%至0.2体积%)的影响已经在这项研究中讨论过。散热器中基于GNP的纳米流体的实验将散热器温度降低10°C,并增强了对流传热系数,并营养数量为71%和60%,与较高的压降略高约12%水。结果证明,官能化的基于GNP的纳米流体将有效取代现有的纳米流体,这是由于增强的导热性和对流传热系数而改善了电子芯片的性能。

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