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首页> 外文期刊>International Journal of Heat and Mass Transfer >A comprehensive numerical study on the subcooled falling film heat transfer on a horizontal smooth tube
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A comprehensive numerical study on the subcooled falling film heat transfer on a horizontal smooth tube

机译:水平光滑管上过冷降膜传热的综合数值研究

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HighlightsA comprehensive numerical study on the subcooled falling film heat transfer on a horizontal smooth tube is conducted.The role of surface tension in the calculation of falling film heat transfer is discussed.A heat transfer correlation considering a multitude of factors is developed.AbstractThe effects of film flow rate, heat flux, inlet liquid temperature, tube diameter and liquid distributor height on subcooled falling film heat transfer outside a horizontal smooth tube are numerically studied, and a heat transfer correlation based on the current data is developed. Comparisons between the predicted results and the published experimental data in the literature are also conducted. The calculation ranges are: film flow rate from 0.025 to 0.284 kg m−1 s−1, heat flux from 1.0 to 100 kW m−2, inlet liquid temperature from 2 to 104 °C, tube diameter from 6.35 to 50.8 mm and liquid distributor height from 3.0 to 50.8 mm. The results indicate that: (1) the numerical results of the local heat transfer coefficient are in good agreement with the experimental data in the literature; (2) the surface tension plays an important role in the calculations of heat transfer in two stagnation zones, (3) the heat transfer coefficient shows four distinct zones along with peripheral angle: stagnation zone, impingement zone, thermal layer development zone and departure zone; (4) the heat transfer coefficient increases with increase in film flow rate, tube diameter or liquid distributor height, while keeps constant with increasing heat flux; (5) the correlation predicts 92% of the total 141 calculated data with deviations within ±10%, and predicts 78% of 284 data available in literature with deviations within ±30%.
机译: 突出显示 对水平冷却管上的过冷降膜传热进行了全面的数值研究。 表面张力的作用 < ce:para id =“ p0015” view =“ all”>已开发出考虑多种因素的传热关联。 摘要 薄膜流率,热通量,入口液体温度,管径和液体分布器高度对水平光滑管外部过冷降膜传热的影响进行了数值研究,并且建立了基于当前数据的传热相关性。还对预测结果与文献中已发表的实验数据进行了比较。计算范围是:薄膜流速从0.025到0.284 kg m -1 s -1 ,热通量从1.0到100 kW m − 2 ,入口液体温度从2到104 C,管径从6.35到50.8 mm,液体分配器高度从3.0到50.8mm结果表明:(1)局部传热系数的数值结果与文献中的实验数据吻合良好; (2)表面张力在两个停滞区的传热计算中起着重要作用,(3)传热系数随圆周角显示四个不同的区域:停滞区,冲击区,热层发育区和离去区; (4)传热系数随着膜流量,管径或液体分布器高度的增加而增加,而随着热通量的增加而保持恒定。 (5)相关性预测了141个计算数据中的92%,偏差在±10%以内,并预测了284个文献中可用数据的78%,偏差在±30%以内。

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