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Thermal–Hydraulic Performance in a Microchannel Heat Sink Equipped with Longitudinal Vortex Generators (LVGs) and Nanofluid

机译:微通道散热器中的热液压性能,配备纵向涡流发电机(LVG)和纳米流体

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摘要

In this study, the numerical conjugate heat transfer and hydraulic performance of nanofluids flow in a rectangular microchannel heat sink (RMCHS) with longitudinal vortex generators (LVGs) was investigated at different Reynolds numbers (200−1200). Three-dimensional simulations are performed on a microchannel heated by a constant temperature with five different configurations with different angles of attack for the LVGs under laminar flow conditions. The study uses five different nanofluid combinations of Al2O3 or CuO, containing low volume fractions in the range of 0.5% to 3.0% with various nanoparticle sizes that are dispersed in pure water, PAO (Polyalphaolefin) or ethylene glycol. The results show that for Reynolds number ranging from 100 to 1100, Al2O3−water has the best performance compared with CuO nanofluid with Nusselt number values between 7.67 and 14.7, with an associated increase in Fanning friction factor by values of 0.0219−0.095. For the case of different base fluids, the results show that CuO−PAO has the best performance with Nusselt number values between 9.57 and 15.88, with an associated increase in Fanning friction factor by 0.022−0.096. The overall performance of all configurations of microchannels equipped with LVGs and nanofluid showed higher values than the ones without LVG and water as a working fluid.
机译:在该研究中,在不同的雷诺数(200-1200)中研究了矩形微通道散热器(RMCH)中纳米流体在矩形微通道散热器(RMCH)中的数值缀合物传热和液压性能。在通过恒温下加热的微通道进行三维模拟,其中具有五种不同的配置,在层流条件下的LVG中具有不同的攻击角度。该研究使用Al 2 O 3或CuO的五种不同的纳米流体组合,含有0.5%至3.0%的低体积级分,各种纳米颗粒尺寸分散在纯水中,PaO(聚α烯烃)或乙二醇中。结果表明,对于雷诺数范围为100至1100,氧化铝 - 水与CuO的纳米流体与努塞尔数的值7.67和14.7之间,通过的0.0219-0.095值范宁摩擦系数相关联的增加相比,具有最佳的性能。对于不同基础流体的情况,结果表明,Cuo-Pao具有9.57和15.88之间的露珠数值的最佳性能,扇动摩擦因子的相关增加0.022-0.096。所有配备LVG和纳米流体的微通道的所有配置的整体性能都显示出比没有LVG和水作为工作流体的值更高的值。

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