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首页> 外文期刊>International Journal of Thermal Sciences >Experimental comparative evaluation of a graphene nanofluid coolant in miniature plate heat exchanger
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Experimental comparative evaluation of a graphene nanofluid coolant in miniature plate heat exchanger

机译:微型板式换热器中石墨烯纳米流体冷却剂的实验对比评价

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摘要

As a novel coolant, the ethylene glycol-water (50 wt.%:0:50 wt.%) with graphene nanoplatelets nanofluids (GnP-EGW) were prepared at four weight concentrations (0.01, 0.1 0.5 and 1.0 wt.%), and heat transfer and pressure drop characteristics in a miniature plate heat exchanger (MPHE) were investigated. All nanofluid samples were prepared and diluted by ultrasonic vibration, and their thermal conductivity and dynamic viscosity were measured by a transient plane source method and a rotational rheometer, respectively. Firstly, the convective heat transfer coefficient (HTC) and pressure drop correlations were predicted under the condition that water was employed as working fluid in both the hot and cold sides of the MPHE. Then, the effects of GnP concentrations of nanofluids on the thermal and hydraulic performances have been determined for the MPHE with the nanofluid in hot side and the water in cold side. Parametric evaluation and performance comparison of the MPHE using GnP-EGW were analyzed via various operating conditions. Experimental analysis showed that: the proposed correlations from water can predict the experimental data of the base fluid and GnP-EGW nanofluids. In the proper concentration range from 0.01 to 0.1 wt.%, the GnP-EGW nanofluid has an acceptable pressure drop penalty but a higher heat transfer performance compared with the base fluid in the MPHE, which reveals that it might be a potential cooling medium.
机译:作为一种新的冷却剂,用石墨烯纳米片(50重量%:0:50重量%)以四重重量浓度(0.01,0.1.0.5和1.0重量%)制备纳米烯纳米孔(GNP-EGW),研究了微型板热交换器(MPHE)中的传热和压降特性。通过超声波振动制备和稀释所有纳米流体样品,并通过瞬态平面源法和旋转流变仪测量它们的导热率和动态粘度。首先,在将水被用作MPHE的热和冷侧的工作流体的条件下预测了对流传热系数(HTC)和压降相关性。然后,已经确定了用纳米流体在热侧和冷侧的水中的MPHE确定了GNP浓度对热和液压性能的影响。通过各种操作条件分析使用GNP-EGW的MPHE的参数评估和性能比较。实验分析表明:来自水的提出的相关性可以预测基础流体和GNP-EGW纳​​米流体的实验数据。在适当的浓度范围为0.01至0.1重量%。%,GNP-EGW纳​​米流体具有可接受的压降损失,但与MPHE中的基础流体相比具有更高的传热性能,这表明它可能是潜在的冷却介质。

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