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首页> 外文期刊>International Journal of Refrigeration >Prediction of heat transfer coefficient during condensation of water and R-134a on single horizontal integral-fin tubes
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Prediction of heat transfer coefficient during condensation of water and R-134a on single horizontal integral-fin tubes

机译:水和R-134a在单个水平整体翅片管上冷凝过程中的传热系数预测

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摘要

This paper presents a few salient features of an investigation carried out to study the heat transfer augmentation during condensation of water and R- 134a vapor on horizontal integral-fin tubes. The experimental investigation was performed on two different experimental set-ups for water and R-134a. The test-sections were manufactured by machining fins over plain copper tubes of 24.4 ± 0.6 mm outside diameter. The performance of two types of finned tubes viz. circular integral-fin tubes (CIFTs) and spine integral-fin tubes (SIFTs) was studied for the condensation of water and R-134a. These tubes were positioned one by one inside the test-condenser to perform the experiments. All together the experiments were conducted for the condensation on 10 different test-section tubes. With the help of the experimental results, authors have developed an empirical equation. This equation predicts the condensing heat transfer coefficient from their own experimental data for the condensation over CIFTs and SIFTs within a range of ±15% and experimental data of other thirteen investigators in a range of ± 35% for condensation of water and different refrigerants.
机译:本文介绍了一些主要特征,以研究水和R-134a蒸汽在水平整体翅片管上冷凝期间的传热增加。对水和R-134a的两种不同的实验装置进行了实验研究。通过在24.4±0.6 mm外径的普通铜管上加工翅片来制造测试部分。两种类型的翅片管的性能即。研究了圆形整体翅片管(CIFT)和脊柱整体翅片管(SIFT)用于水和R-134a的冷凝。将这些管一个接一个地放置在测试冷凝器内部以进行实验。所有实验均在10个不同的测试截面管上进行冷凝。借助实验结果,作者开发了一个经验方程。该方程式根据他们自己的关于在CIFT和SIFT上的冷凝度在±15%范围内的实验数据以及其他十三名研究人员在水和不同制冷剂的冷凝度在±35%范围内的实验数据来预测冷凝传热系数。

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