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Numerical study of the possibility of improving the hydrothermal performance of an elliptical double-pipe heat exchanger through the simultaneous use of twisted tubes and non-Newtonian nanofluid

机译:通过同时使用双绞线和非牛顿纳米流体来提高椭圆双管热交换器水热性能的数值研究

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摘要

In this investigation, the combined use of twisted tubes and nanofluid (NF) to augment the performance of a double-pipe heat exchanger (DPHE) has been considered numerically. Steady-state laminar flow of the cold non-Newtonian CuO NF and hot water pass inside the tube side and annulus side, respectively. The base fluid is the aqueous solution of 0.5 mass% carboxymethyl cellulose. The effects of the Reynolds number (Re), the volume concentration of nanoparticles (phi) and twist pitch on the performance metrics are examined, and the outcomes are compared with those a plain DPHE. The outcomes showed that the increase in Re has desirable effects such as improved heat transfer and heat exchanger effectiveness, and unpleasant effects such as increased pressure drop and pumping power. Moreover, it was found that except for phi <= 1.5% and Re=500, the NF performs better than the base fluid. In addition, it was reported that the variation pattern of overall hydrothermal performance of NF with twist pitch is ascending-descending. Furthermore, the outcomes illustrated that the overall hydrothermal performance of twisted DPHE is superior to that of the plain DPHE, and its highest value is 2.671, which belongs to case of Re=2000, phi=3% and twist pitch = 4 mm.
机译:在这项研究中,我们从数值上考虑了扭曲管和纳米流体(NF)的组合使用来增强双管换热器(DPHE)的性能。冷态非牛顿CuO NF和热水的稳态层流分别在管侧和环空侧通过。基液为质量分数为0.5%的羧甲基纤维素水溶液。考察了雷诺数(Re)、纳米颗粒体积浓度(phi)和扭转节距对性能指标的影响,并将结果与普通DPHE进行了比较。结果表明,Re的增加具有良好的效果,如传热和换热器效率的提高,以及不愉快的效果,如压降和泵送功率的增加。此外,我们还发现,除了phi<=1.5%和Re=500外,NF的性能优于基础流体。此外,据报道,NF的整体水热性能随扭转沥青的变化呈上升下降趋势。此外,结果表明,扭曲DPHE的整体水热性能优于普通DPHE,其最高值为2.671,属于Re=2000、phi=3%和扭曲间距=4mm的情况。

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