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STUDY ON THE CHARACTERISTICS OF FLOW AND HEAT TRANSFER OF POLYMERIC-FLUID-BASED CU NANOFLUIDS

机译:聚合物基铜纳米流体的流动与传热特性研究

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In this paper, we propose a new fluid: drag-reducing-fluid-based nanofluids (DRFBN), i.e., nanoparticles are added into polymer aqueous solution. In order to investigate the flow and heat transfer characteristics of this new fluid, the Reynolds stress turbulence model and equivalent viscosity model are used in the simulations. Wall shear stress and Nusselt number (Nu) are chosen to represent the effects of drag reduction and heat enhancement respectively. The numerical studies mainly focus on the effects of different parameters on wall shear stress and Nu. The results show that comparison with water flow, DRFBN flow still has remarkable drag-reducing effect; comparison with polymer aqueous solution flow, DRFBN flow has some improvement on heat transfer. Therefore, DRFBN has duel effects: drag reduction and heat transfer enhancement. Besides, it is found that the parameters of nanoparticle volume fraction, Reynolds number and drag-reducing parameter have remarkable effects on wall shear stress and Nu of DRFBN flow.
机译:在本文中,我们提出了一种新的流体:基于减阻流体的纳米流体(DRFBN),即将纳米颗粒添加到聚合物水溶液中。为了研究这种新流体的流动和传热特性,在仿真中使用了雷诺应力湍流模型和等效粘度模型。选择壁面剪应力和Nusselt数(Nu)分别代表减阻作用和热增强作用。数值研究主要集中在不同参数对墙体剪应力和Nu的影响上。结果表明,与水流相比,DRFBN流仍具有显着的减阻作用;与聚合物水溶液流动相比,DRFBN流动在传热方面有一些改进。因此,DRFBN具有双重效果:减阻和传热增强。此外,发现纳米粒子的体积分数,雷诺数和减阻参数对壁面剪应力和DRFBN流的Nu有显着影响。

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