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Numerical Investigation of Heat Transfer Enhancement Using Hybrid Vortex Generator Arrays in Fin-and-Tube Heat Exchangers

机译:翅片管换热器中混合涡流发生器阵列强化传热的数值研究

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摘要

This is a novel study for assessing the heat transfer enhancement in a multi-row inline-tube heat exchanger using hybrid vortex generator (VG) arrays, i.e., rectangular winglet pairs (RWPs) with different geometrical configurations installed in coherence for enhanced heat transfer. The three-dimensional numerical study uses a full scale seven-tube inline heat exchanger model. The effect of roll of rectangular winglet VG on heat transfer enhancement is analyzed and optimized roll angle is determined for maximum heat transfer enhancement. Four different configurations are analyzed and compared in this regard: (a) single RWP (no roll); (b) 3RWP-inline array (alternating tube row with no roll of VGs); (c) single RWP (with optimized roll angle VGs); and (d) 3RWP-inline array (alternating tube row with all VGs having optimized roll angle). It was found that the inward roll of VGs increased the heat transfer from the immediately downstream tube but reduced heat transfer enhancement capability of other VG pairs downstream. Further, four different hybrid configurations of VGs were analyzed and the optimum configuration was obtained. For the optimized hybrid configuration at Re = 670, RWP with optimized roll angle increased heat transfer by 17.5% from the tube it was installed on and by 42% from the immediately downstream tube. Increase in j/f of 36.7% is obtained by use of hybrid VGs in the optimized hybrid configuration. The deductions from the current study are supposed to well enhance the performance of heat exchangers with different design configurations.
机译:这是一项新颖的研究,用于评估使用混合涡流发生器(VG)阵列(即具有不同几何构型的矩形小翼对(RWP),以相干方式安装以增强传热)的多行直管式换热器中的传热增强。三维数值研究使用全尺寸七管串联换热器模型。分析了矩形小翼VG的滚动对传热增强的影响,并确定了最佳的滚动角,以实现最大的传热增强。在这方面,分析并比较了四种不同的配置:(a)单个RWP(无滚动); (b)3RWP内联阵列(每排不带VG的交替管); (c)单个RWP(具有优化的侧倾角VG); (d)3RWP内联阵列(在所有VG都具有最佳侧倾角的情况下交替排列管子)。已发现,VG的向内滚动增加了从紧邻下游管的传热,但降低了其他下游VG对的传热增强能力。此外,分析了四种不同的VG混合配置,并获得了最佳配置。对于Re = 670时的优化混合配置,具有最佳侧倾角的RWP将其安装在管上的传热提高了17.5%,而在下游管上则提高了42%。通过在优化的混合配置中使用混合VG,j / f的增加为36.7%。当前研究的推论应该可以很好地提高具有不同设计配置的热交换器的性能。

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