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High Performance Recuperator With Oblique Wavy Walls

机译:斜波壁高性能换热器

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A series of numerical simulation of the flow and heat transfer in modeled counterflow heat exchangers with oblique wavy walls has been made toward optimal shape design of recuperators. The effects of oblique angles and amplitudes of the wavy walls are systematically evaluated, and the heat transfer and pressure loss characteristics are investigated. It is found that counter-rotating streamwise vortices are induced by the wavy walls, and the flow field has been drastically modified due to the intense secondary flow. By using the optimum set of oblique angle and wave amplitude, significant heat transfer enhancement has been achieved at the cost of relatively small pressure loss, and the jlf factor becomes much larger than that of straight square duct or conventional compact recuperators. When thermal coupling of hot and cold fluid passages is considered, the heat transfer is found to be strongly dependent on the arrangement of counterflow passages. The total heat transfer surface area required for a given pumping power and heat transfer rate can be reduced by more than 60% if compared to the straight square duct.
机译:为了实现换热器的最佳形状设计,对带有斜波壁的模拟逆流热交换器中的流动和传热进行了一系列数值模拟。系统地评估了波浪壁的斜角和振幅的影响,并研究了传热和压力损失特性。已经发现,波浪形的壁引起反向旋转的涡流,并且由于强烈的二次流,流场已经发生了巨大的变化。通过使用倾斜角和波幅的最佳设置,以相对较小的压力损失为代价实现了显着的传热增强,并且jlf因子变得比直角方管或常规紧凑型换热器大得多。当考虑热流体通道和冷流体通道的热耦合时,发现热传递强烈地取决于逆流通道的布置。与直角方管相比,给定泵送功率和传热速率所需的总传热表面积可减少60%以上。

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