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Parameter optimization on condensation heat transfer of R22 outside horizontal integral-fin tubes

机译:R22水平集成翅片管外冷凝传热参数优化

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Experimental studies of film condensation of R22 on single horizontal smooth tube and five enhanced tubes have been conducted. The objective is to obtain optimum fin density on condensation heat transfer characteristics. The results indicate that the predicted condensation heat transfer coefficients of smooth tube from Nusselt theory agree within ± 10 percent with the experimental data. Experimental results show that integral-fin can effectively enhance condensation heat transfer. It is found that the optimum fin density is 1720fpm from the present study when R22 condensing outside the integral-fin tube. At a saturation temperature of 40"C and for the same values of heat flux, average enhancement factors of five enhanced tubes C21–C25 are 10.36, 11.46, 9.19, 7.69, 5.63, and for the same values of temperature difference, the average factors are 5.78, 6.24, 5.28, 4.62, 3.65 respectively. It is found that the enhancement of condensation heat transfer is larger than that of the area increase for R22 condensing outside integral-fin tubes.
机译:已经进行了R22在单个水平光滑管和五个增强管上的膜凝结的实验研究。目的是在冷凝传热特性上获得最佳的翅片密度。结果表明,根据Nusselt理论预测的光滑管冷凝水传热系数与实验数据吻合在±10%之内。实验结果表明,一体式翅片可以有效地提高冷凝水的传热效率。从本研究发现,当R22在整体翅片管外冷凝时,最佳翅片密度为1720fpm。在40“ C的饱和温度下,对于相同的热通量,五个增强管C21–C25的平均增强因子为10.36、11.46、9.19、7.69、5.63,对于相同的温差值,平均因子分别为5.78、6.24、5.28、4.62、3.65,发现冷凝传热的增强大于R22在整体翅片管外冷凝的面积的增加。

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