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Saturated flow boiling heat transfer and critical heat flux in small horizontal flattened tubes

机译:小型水平扁平管中的饱和流沸腾传热和临界热通量

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This paper presents experimental results for flow boiling heat transfer coefficient and critical heat flux (CHF) in small flattened tubes. The tested flattened tubes have the same equivalent internal diameter of 2.2 mm, but different aspect height/width ratios (H/W) of 1/4, 1/2, 2 and 4. The experimental data were compared against results for circular tubes using R134a and R245fa as working fluids at a nominal saturation temperature of 31 ℃. For mass velocities higher than 200 kg/m~2s, the flattened and circular tubes presented similar heat transfer coefficients. Such a behavior is related to the fact that stratification effects are negligible under conditions of higher mass velocities. Heat transfer correlations from the literature, usually developed using only circular-channel experimental data, predicted the flattened tube results for mass velocities higher than 200 kg/m~2s with mean absolute error lower than 20% using the equivalent diameter to account for the geometry effect. Similarly, the critical heat flux results were found to be independent of the tube aspect ratio when the same equivalent length was kept. Equivalent length is a new parameter which takes into account the channel heat transfer area. The CHF correlations for round tubes predicted the flattened tube data relatively well when using the equivalent diameter and length. Furthermore, a new proposed CHF correlation predicted the present flattened tube data with a mean absolute error of 5%.
机译:本文介绍了小型扁平管中流动沸腾传热系数和临界热通量(CHF)的实验结果。测试的扁平管具有相同的等效内径2.2毫米,但纵横比的高/宽比(H / W)分别为1 / 4、1 / 2、2和4。 R134a和R245fa作为工作流体,额定饱和温度为31℃。对于高于200 kg / m〜2s的质量速度,扁平管和圆形管的传热系数相似。这种行为与这样的事实有关,即在较高质量速度的条件下,分层效应可忽略不计。文献中的传热相关性通常仅使用圆形通道的实验数据得出,使用等效直径考虑几何形状,可以预测质量速度高于200 kg / m〜2s且平均绝对误差低于20%的扁平管结果影响。类似地,发现当保持相同的等效长度时,临界热通量结果与管的纵横比无关。当量长度是一个新的参数,它考虑了通道的传热面积。当使用等效直径和长度时,圆管的CHF相关性相对较好地预测了扁平管数据。此外,新提出的CHF相关性预测了当前的扁平管数据,平均绝对误差为5%。

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