首页> 外文期刊>International Journal of Heat and Mass Transfer >Estimation of heat transfer coefficient on the vertical plate fin of finned-tube heat exchangers for various air speeds and fin spacings
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Estimation of heat transfer coefficient on the vertical plate fin of finned-tube heat exchangers for various air speeds and fin spacings

机译:翅片管换热器垂直板翅片在不同风速和翅片间距下的传热系数估算

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摘要

The finite difference method in conjunction with the least-squares scheme and experimental temperature data is proposed to predict the average heat transfer coefficient h and fin efficiency η_f on a vertical square fin of one-circular tube plate finned-tube heat exchangers for various air speeds and fin spacings. The distribution of the heat transfer coefficient on the fin can be very non-uniform, thus the whole square fin is divided into several sub-fin regions in order to predict the h and η_f values. These two predicted values can be obtained using the present inverse scheme in conjunction with the knowledge of the temperatures recordings at several selected measurement locations. The results show that the heat transfer coefficient on the upstream fin region can be markedly higher than that on the downstream fin region. The h value increases with increasing the fin spacing S and air speed V_(air), and the η_f value decreases with increasing the S and V_(air) values. The h and η_f values respectively approach their corresponding asymptotical values obtained from a single fin as S → ∞. The distributions of the fin temperature depart from the ideal isothermal situation and the fin temperature decreases more rapidly away from the circular center with increasing the fin spacing and air speed.
机译:提出了一种基于最小二乘方案和实验温度数据的有限差分方法,以预测不同风速下单圆管板翅片管换热器的垂直方翅片的平均传热系数h和翅片效率η_f。和鳍间距。翅片上的传热系数分布可能非常不均匀,因此将整个方形翅片划分为几个子翅片区域,以预测h和η_f值。这两个预测值可以使用当前的逆方案结合几个选定的测量位置处的温度记录知识来获得。结果表明,上游翅片区域的传热系数可以明显高于下游翅片区域的传热系数。 h值随着鳍间距S和风速V_(air)的增加而增加,而η_f值随着S和V_(air)值的增加而减小。 h和η_f值分别接近从单个鳍获得的它们相应的渐近值,如S→∞。翅片温度的分布偏离理想的等温状态,并且随着翅片间距和空气速度的增加,翅片温度远离圆形中心更快地降低。

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