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首页> 外文期刊>Journal of thermal analysis and calorimetry >Entropy generation of turbulent Cu-water nanofluid flows inside thermal systems equipped with transverse-cut twisted turbulators
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Entropy generation of turbulent Cu-water nanofluid flows inside thermal systems equipped with transverse-cut twisted turbulators

机译:湍流Cu-water纳米流体流动的熵生成,配备横向切割扭曲湍流器的热系统内部

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摘要

In the present study, numerical simulations have been carried out on thermal characteristics and second-law analysis of turbulent Cu-H2O nanofluid flow with the nanoparticle volume fraction of 0 < phi < 1.5% inside heat exchangers fitted by transverse-cut twisted tapes (TCTTs) with alternate axis. The transverse-cut ratios are in the range of 0.7 < b/c < 0.9 and 2 < s/c < 2.5, and the Reynolds number is varied between 5000 and 15,000. The impacts of the design variables on the turbulent kinetic energy, temperature distribution, thermal and frictional entropy generations and Bejan number have been evaluated. The simulations show that the TCTTs withb/c = 0.7 generate higher turbulent kinetic energy compared to theb/c = 0.9 due to higher swirl generation and flow disturbance. The additional recirculating flow produced near the alternate edges is another main physical factor for heat transfer augmentation. It is found that raising the nanoparticles volume concentration reduces the thermal entropy generation which is attributed to the thermal conductivity enhancement of nanofluids. Besides, raising the nanoparticles volume concentration from 0 to 1.5% reduces the N-g,N-thermal by 23%.
机译:在本研究中,对纳米颗粒体积分数为0<φ<1.5%的Cu-H2O纳米流体在换热器内的湍流流动进行了数值模拟和第二定律分析,换热器采用了交替轴的横向剪切扭带(TCTT)。横向切割比在0.7

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