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Effect of tube diameter on boiling heat transfer of R-134a in horizontal small-diameter tubes

机译:管径对水平小直径管中R-134a沸腾传热的影响

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The boiling heat transfer of refrigerant R-134a flow in horizontal small-diameter tubes with inner diameter of 0.51, 1.12, and 3.1 mm was experimentally investigated. Local heat transfer coefficient and pressure drop were measured for a heat flux ranging from 5 to 39 kW/m~2, mass flux from 150 to 450 kg/m~2 s, evaporating temperature from 278.15 to 288.15 K, and inlet vapor quality from 0 to 0.2. Flow patterns were observed by using a high-speed video camera through a sight glass at the entrance of an evaporator. Results showed that with decreasing tube diameter, the local heat transfer coefficient starts decreasing at lower vapor quality. Although the effect of mass flux on the local heat transfer coefficient decreased with decreasing tube diameter, the effect of heat flux was strong in all three tubes. The measured pressure drop for the 3.1-mm-ID tube agreed well with that predicted by the Lockhart-Martinelli correlation, but when the inner tube diameter was 0.51 mm, the measured pressure drop agreed well with that predicted by the homogenous pressure drop model. With decreasing tube diameter, the flow inside a tube approached homogeneous flow. The contribution of forced convective evaporation to the boiling heat transfer decreases with decreasing the inner tube diameter.
机译:实验研究了制冷剂R-134a在内径为0.51、1.12和3.1 mm的水平小直径管中的沸腾传热。测量了5至39 kW / m〜2的热通量,150至450 kg / m〜2 s的质量通量,278.15至288.15 K的蒸发温度,以及入口蒸汽质量的局部传热系数和压降。 0至0.2。通过使用高速摄像机通过蒸发器入口处的观察镜观察流动模式。结果表明,随着管径的减小,在较低的蒸汽质量下,局部传热系数开始减小。尽管质量通量对局部传热系数的影响随管直径的减小而减小,但在所有三个管中热通量的影响都很大。 3.1毫米内径管的测得压降与Lockhart-Martinelli相关性预测的相吻合,但是当内管直径为0.51 mm时,测得的压降与均质压降模型所预测的相吻合。随着管直径的减小,管内的流量接近均匀流量。强制对流蒸发对沸腾传热的贡献随着内管直径的减小而减小。

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