首页> 外文期刊>International communications in heat and mass transfer >Experimental and numerical investigation of thermophysical properties, heat transfer and pressure drop of covalent and noncovalent functionalized graphene nanoplatelet-based water nanofluids in an annular heat exchanger
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Experimental and numerical investigation of thermophysical properties, heat transfer and pressure drop of covalent and noncovalent functionalized graphene nanoplatelet-based water nanofluids in an annular heat exchanger

机译:共价和非共价功能化石墨烯纳米片基水纳米流体在环形热交换器中的热物理性质,传热和压降的实验和数值研究

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摘要

The new design of heat exchangers utilizing an annular distributor opens a new gateway for realizing higher energy optimization. To realize this goal, graphene nanoplatelet-based water nanofluids with promising thermophysical properties were synthesized in the presence of covalent and noncovalent functionalization. Thermal conductivity, density, viscosity and specific heat capacity were investigated and employed as a raw data for ANSYS-Fluent to be used in two-phase approach. After validation of obtained results by analytical equations, two special parameters of convective heat transfer coefficient and pressure drop were investigated. The study followed by studying other heat transfer parameters of annular pass in the presence of graphene nanopleteles-based water nanofluids at different weight concentrations, input powers and temperatures. As a result, Nusselt number profiles and friction factor are measured for both synthesized nanofluids.
机译:利用环形分配器的热交换器的新设计为实现更高的能量优化开辟了新的途径。为了实现这个目标,在共价和非共价官能化的存在下,合成了具有前途热物理性质的石墨烯纳米片基水纳米流体。研究了热导率,密度,粘度和比热容,并将其用作用于两相方法的ANSYS-Fluent的原始数据。通过解析方程验证了所得结果后,研究了对流传热系数和压降的两个特殊参数。在研究之后,研究了在不同重量浓度,输入功率和温度的情况下,在存在基于石墨烯纳米微粒的水纳米流体的情况下,环形通过的其他传热参数。结果,测量了两种合成的纳米流体的努塞尔数分布和摩擦系数。

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