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An improved heat transfer correlation for condensation inside inclined smooth tubes

机译:用于在倾斜光滑管内凝结的改进传热相关性

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To date, there has been no robust model that can satisfactorily predict the condensation heat transfer coefficients in smooth tubes when oriented at some angles other than horizontal and vertical. Therefore, it was the motivation of this investigation to develop a universally acceptable model capable of predicting the heat transfer coefficients during convective condensation inside inclined tubes subject to diabatic conditions. An extensive database of experimental results collected from our previous studies was used in the development of the proposed model. The database consisted of five hundred and fifty-nine data sets for tube orientation varying between - 90° and + 90°, mass velocities 100 kg/m~2s to 400 kg/m~2s, mean vapour qualities 10% to 90% and saturated condensing temperatures 30 °C to 50 °C. The proposed model showed a magniflcient agreement with the experimental data within an global average and mean absolute deviations of -5.74% and 1.13% respectively. The performance of the new empirical model was validated with inclined flow data from three sources in the open literature and was found to predict them with high accuracy.
机译:迄今为止,当以除水平和垂直的某些角度定向时,没有稳健地预测平滑管中的冷凝传热系数。因此,这项研究的动机是开发一种能够在经受糖尿病条件的倾斜管内的对流凝结期间预测传热系数的普遍可接受的模型。从我们以前的研究中收集的大量实验结果数据库用于开发拟议的模型。数据库由五百五十九个数据集组成,用于管取向的管取样 - 90°和+ 90°,质量速度100kg / m〜2s至400kg / m〜2s,平均蒸气质量为10%至90%饱和冷凝温度30℃至50℃。该拟议的模型显示了与全球平均水平的实验数据和平均偏差分别为-5.74%和1.13%的实验数据的换头协议。新的经验模型的性能被验证了从开放文献中的三个来源的倾斜流数据验证,并被发现以高精度预测它们。

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