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An Experimental Study on Flow and Heat Transfer Characteristics of Ethanol/Polyalphaolefin Nanoemulsion Flowing Through Circular Minichannels

机译:乙醇/聚α-烯烃纳米乳液流经圆形微通道的流动和传热特性的实验研究

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摘要

This work experimentally studied the convective flow and heat transfer characteristics of a novel nanostructured heat transfer fluid: “ethanol/polyalphaolefin nanoemulsion” flowing through 12 circular minichannels of 1-mm diameter each. Ethanol/polyalphaolefin nanoemulsion is a thermodynamically stable system formed by dispersing ethanol into a mixture of “polyalphaolefin (PAO)” and surfactants. In this study, ethanol/PAO nanoemulsion is used as the working fluid to study the effect of ethanol nanodroplets on its convective flow and heat transfer characteristics. In addition, the effect of flow regime on its heat transfer is examined. It is found that using ethanol/PAO nanoemulsion fluids can improve convective heat transfer compared to that of pure PAO under both single- and two-phase flow regimes. For single-phase flow, there is no significant difference in Nusselt number between ethanol/PAO nanoemulsion and pure PAO in laminar flow regime. However, when entering transition flow regime, the ethanol/PAO nanoemulsion fluid showed a substantial increase in Nusselt number. Meanwhile, there is an increase in pressure drop and early onset of the laminar-turbulent transitional region for the ethanol/PAO nanoemulsion compared to pure PAO. The heat transfer coefficient of ethanol/PAO nanoemulsion can be further enhanced when the ethanol nanodroplets undergo phase change, which is hypothesized that such an effect is likely related to the enhanced interfacial thermal transport between the nanodroplets and base fluid under elevated temperature and the latent heat of phase changeable nanodroplets inside nanoemulsion. Further studies are needed to fully explore the convective heat transfer properties of nanoemulsion fluids.
机译:这项工作通过实验研究了新型纳米结构传热流体:“乙醇/聚α-烯烃纳米乳液”的对流流动和传热特性,该流体分别流经12个直径为1mm的圆形微通道。乙醇/聚α烯烃纳米乳液是一种热力学稳定的体系,通过将乙醇分散到“聚α烯烃(PAO)”和表面活性剂的混合物中形成。在这项研究中,乙醇/ PAO纳米乳液被用作工作流体,以研究乙醇纳米滴对其对流流动和传热特性的影响。另外,研究了流动方式对其传热的影响。发现在单相和两相流态下,与纯PAO相比,使用乙醇/ PAO纳米乳液可以改善对流传热。对于单相流,在层流状态下,乙醇/ PAO纳米乳液与纯PAO之间的Nusselt值无显着差异。然而,当进入过渡流动状态时,乙醇/ PAO纳米乳液的Nusselt数显着增加。同时,与纯PAO相比,乙醇/ PAO纳米乳液的压降增加,并且层流湍流过渡区域开始提前。当乙醇纳米液滴发生相变时,乙醇/ PAO纳米乳液的传热系数可以进一步提高,这被认为这种作用很可能与纳米液滴和基础流体在高温和潜热下的界面热传递增强有关。纳米乳液内部相变纳米液滴的制备。为了进一步探索纳米乳液的对流传热特性,还需要进一步的研究。

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