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Experimental assessment of convective heat transfer coefficient enhancement of nanofluids prepared from high surface area nanoporous graphene

机译:高表面积纳米多孔石墨烯制备的纳米流体对流换热系数增强的实验评估

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In this research convective heat transfer coefficient enhancement of nanofluids prepared from high surface area graphene has been investigated in laminar flow in the developing region. The nanofluid has been prepared from nanoporous graphene with high surface area and with concentration of 0.025 to 0.1 wt.%. Deionized water has been used as the base fluid and a type of Ter-Polymer has been utilized as the surfactant The results indicate that thermal conductivity of nanofluid with concentration of 0.1 wt.% remains quite constant, with only 3.8% enhancement, while convective heat transfer coefficient improves significantly, with 34% enhancement. The behavior of this enhancement related to the concentration of graphene is linear. Also the results revealed that convective heat transfer coefficient of graphene nanofluids improves by temperature increase and the rate of improvement enhances by temperature increase. Increase in Reynolds number enhances the convective heat transfer.
机译:在这项研究中,研究了由高表面积石墨烯制得的纳米流体的对流换热系数的提高,该现象在发展中地区的层流中进行了研究。纳米流体由具有高表面积且浓度为0.025至0.1重量%的纳米多孔石墨烯制备。去离子水已用作基础流体,一种Ter-Polymer已用作表面活性剂。结果表明,浓度为0.1 wt。%的纳米流体的热导率保持相当恒定,仅提高了3.8%,而对流热传输系数显着提高,提高了34%。与石墨烯浓度有关的这种增强行为是线性的。结果还表明,石墨烯纳米流体的对流传热系数随着温度的升高而改善,并且改善速率随着温度的升高而提高。雷诺数的增加增强了对流传热。

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