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首页> 外文期刊>日本冷凍空調学会論文集 >Effect of fin shape on condensation heat transfer and pressure drop inside herringbone micro fin tubes
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Effect of fin shape on condensation heat transfer and pressure drop inside herringbone micro fin tubes

机译:翅片形状对人字形微翅片管内凝结换热和压降的影响

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摘要

Experiments of in-tube condensation of R410A have been carried out for a smooth tube, a helical micro fin tube and five types of herringbone micro fin tubes. In the herringbone micro fin tube, the micro fins work to remove liquid at fin-diverging parts and collect liquid at fin-converging parts. In the high mass velocity region, heat transfer coefficient of all the herringbone tubes is about 2~4 times higher than that of the helical micro fin tube. In the low mass velocity region, however, the heat transfer coefficients of the herringbone micro fin tubes are equal to or smaller than those of the helical micro fin tube. Up to the fin height of 0.18 mm, the heat transfer coefficient is higher for higher fin, whereas that of a higher fin tube is saturated. The pressure drop increases with increasing fin height. The helix angle strongly affects the heat transfer and pressure drop. Higher helix angle causes higher heat transfer coefficient and higher pressure drop. In the case of the herringbone tube which has shorter fin and/or smaller helix angle, pressure drops are equal to or lower than that of the helical micro fin tube, whereas those of other tubes are higher.
机译:R410A的管内冷凝实验已针对光滑管,螺旋微翅片管和五种人字形微翅片管进行。在人字形微翅片管中,微翅片用于去除翅片散开部分处的液体并收集翅片会聚部分处的液体。在高速度区域,所有人字管的传热系数约为螺旋微翅片管的传热系数的2〜4倍。然而,在低质量速度区域中,人字形微翅片管的传热系数等于或小于螺旋形微翅片管的传热系数。翅片高度最高为0.18 mm时,翅片较高的传热系数较高,翅片较高的管的传热系数饱和。压降随着翅片高度的增加而增加。螺旋角强烈影响传热和压降。较高的螺旋角导致较高的传热系数和较高的压降。在人字形管的翅片较短和/或螺旋角较小的情况下,压降等于或小于螺旋形微翅片管的压降,而其他管的压降较高。

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