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Numerical investigation of heat exchanger effectiveness in a double pipe heat exchanger filled with nanofluid: A sensitivity analysis by response surface methodology

机译:纳米流体填充双管热交换器热交换器有效性的数值研究:响应面法的敏感性分析

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In this paper, the Response Surface Methodology (RSM) and two phase mixture model are proposed to investigate the sensitivity analysis of heat transfer and heat exchanger effectiveness in a double pipe heat exchanger filled with Al2O3 nanofluid. The effective parameters of the Reynolds number (50 <= Res 250), nanoparticles volume fraction (0.01 <= phi <= 0.05) and the entrance status of nanofluid S (inner pipe, outer pipe and both of them) are considered to serve the purpose. The governing equations are solved with SIMPLE algorithm and Discretized using a finite volume method. It is found that the mean Nusselt number enhances with the Re number, and this enhancement is in the vicinity of 57.70% for the case with Re = 50 to 150 and phi = 0.03, when the nanofluid enters the outer pipe. Increasing the phi and S reduces the mean Nusselt number. The heat exchanger effectiveness enhances with phi. and reduces with S. Furthermore, the sensitivity of the mean Nusselt number to the Re number is positive but to phi is negative; while the sensitivity to the Re number and phi is positive for heat exchanger effectiveness. Additionally, the effects of physical parameters are illustrated graphically.(C) 2017 Elsevier B.V. All rights reserved.
机译:本文采用响应面法(RSM)和两相混合模型对填充Al2O3纳米流体的双管换热器的传热和换热效率进行了敏感性分析。考虑了雷诺数(50<=Res 250)、纳米颗粒体积分数(0.01<=phi<=0.05)和纳米流体入口状态(内管、外管和两者)的有效参数。控制方程用SIMPLE算法求解,并用有限体积法离散。研究发现,平均努塞尔数随Re数的增加而增加,当Re=50至150且phi=0.03时,当纳米流体进入外管时,这种增加在57.70%附近。增加phi和S会降低平均努塞尔数。换热器的效率随着phi的增加而提高。此外,平均努塞尔数对Re数的敏感性为正,而对phi的敏感性为负;而对Re数和phi的敏感性对热交换器的有效性是正的。此外,物理参数的影响也以图形的方式进行了说明。(C) 2017爱思唯尔B.V.版权所有。

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