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Inlet Temperature Effects on Sensible Heat Transfer to Falling Liquid Films on Horizontal Round Tubes

机译:入口温度对水平圆管上下降的液膜显热传递的影响

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The horizontal-tube, falling film heat exchanger has advantages over flooded bundles and finds widely use in vapor-compression and absorption systems for air-conditioning and refrigeration. The effects of the liquid feeding temperature on inter-tube falling-film heat transfer behavior are investigated experimentally for distilled water, pure ethylene glycol and Dowtherm 4000. It is found that the liquid feeding temperature significantly impacts the heat transfer coefficient for a fluid with a large viscosity (such as pure ethylene glycol and Dowtherm 4000), but has almost no effect on the heat transfer coefficient for a fluid with a small viscosity (such as water). It is also observed that the fluid thermophysical property changes associated with feeding temperature changes from about 20 to 45°C have a significant effect on the Nusselt number at a fixed Reynolds number. The Nusselt number increase is around 50% with a decreased liquid feeding temperature from 45 °C to 20 °C for water at Re ≈ 600. For pure ethylene glycol and Dowtherm 4000, the Nusselt number increases around 100% and 80% with a decreased liquid feeding temperature from 45 to 20°C at Re ≈ 30, respectively.
机译:水平管降膜式换热器具有优于溢流管束的优点,并且广泛用于空调和制冷的蒸汽压缩和吸收系统中。实验研究了蒸馏水,纯乙二醇和Dowtherm 4000的液体进料温度对管间降膜传热行为的影响。发现液体进料温度显着影响液体的传热系数。粘度大(例如纯乙二醇和Dowtherm 4000),但对于粘度小(例如水)的流体的传热系数几乎没有影响。还观察到,与进料温度从约20℃变化至45℃相关的流体热物理性质变化在固定的雷诺数下对努塞尔数具有显着影响。对于Re≈600的水,当液体进料温度从45°C降低到20°C时,Nusselt值增加大约50%。对于纯乙二醇和Dowtherm 4000,Nusselt值增加大约100%和80%,而降低液体进料温度分别在Re≈30时从45到20°C。

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