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首页> 外文期刊>Journal of nuclear science and technology >Advanced MicroChannel Heat Exchanger with S-shaped Fins
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Advanced MicroChannel Heat Exchanger with S-shaped Fins

机译:带有S形散热片的高级微通道热交换器

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摘要

Fin shape effects on thermal-hydraulic characteristics were studied for a MicroChannel Heat Exchanger (MCHE) with S-shaped fins using 3D-CFD and changing the fin parameters: fin angle, overlapping length, fin width, fin length, and edge roundness. The fin angle effect on the pressure drop is consistent with the equation obtained experimentally by Weisbach for a circular bent tube: the pressure drop in the S-shaped fin configuration results from bent flow. The overlap of fins with those located immediately downstream at the offset position provides a guide wing effect that reduces the pressure drop remarkably. The overlap was changed by changing the fin radial position and arc length. The pressure drop was minimized when the downstream fins are placed in the middle of the bent flow channels formed by the fins upstream, which differs from Ito's configuration obtained from experiments with a single bent duct. Regarding arc length, the pressure drop is minimized at the standard overlapping length, which was formed to have the longest arc without a change in channel width. Shorter arc lengths from the optimum value by 30 and 50%, respectively, give 2.4 and 4.6% decreases in the heat transfer rate and 17 and 13% increases in the pressure drop. Thinner fins show better thermal-hydraulic performance for fin widths of 0.2-0.8 mm. However, the pressure drop reduced by the longer fin and heat transfer rate was also reduced. Rounded fins with 0.1 mm radius increased the pressure drop by about 30% compared with that of the fin designed with no roundness.
机译:使用3D-CFD研究了带有S形翅片的微通道换热器(MCHE)的翅片形状对热工液压特性的影响,并更改了翅片参数:翅片角度,重叠长度,翅片宽度,翅片长度和边缘圆度。翅片角度对压降的影响与魏斯巴赫(Weisbach)通过实验得出的圆弯曲管的方程式一致:S形翅片构型中的压降由弯曲流产生。鳍片与在偏移位置紧接下游的鳍片的重叠提供了导翼效果,从而显着降低了压降。通过改变鳍的径向位置和弧长来改变重叠。当下游散热片放置在上游散热片形成的弯曲流动通道的中间时,压降最小化,这与伊藤通过单个弯曲导管的实验获得的构造不同。关于电弧长度,在标准重叠长度处将压降最小化,该标准重叠长度被形成为具有最长的电弧,而不改变通道宽度。电弧长度分别比最佳值短30%和50%,使传热速率降低2.4%和4.6%,而压降提高17%和13%。较薄的散热片在0.2-0.8毫米的散热片宽度下显示出更好的热工性能。但是,翅片越长,压降越小,传热率也降低。与没有圆度的鳍片相比,半径为0.1 mm的圆形鳍片的压降增加了约30%。

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