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水平小管内R290的凝结换热特性实验
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作者 戴源德 郭玉洁 +1 位作者 邹思凯 何国庚 《太阳能学报》 EI CAS CSCD 北大核心 2020年第8期251-257,共7页
以管内径为4 mm的水平光滑铜管,质量流速100~250 kg/(m^2·s),热流密度5~10 kW/m^2,饱和温度分别为40、50、55℃,干度0~1,对R290(丙烷)进行凝结换热实验。结果表明:提高质量流速或增大热流密度,均可增大凝结换热系数;而饱和温度升... 以管内径为4 mm的水平光滑铜管,质量流速100~250 kg/(m^2·s),热流密度5~10 kW/m^2,饱和温度分别为40、50、55℃,干度0~1,对R290(丙烷)进行凝结换热实验。结果表明:提高质量流速或增大热流密度,均可增大凝结换热系数;而饱和温度升高则会使凝结换热系数减小;此外,随着凝结过程的进行,干度逐渐降低,凝结换热系数通常也随之减小,仅在热流密度过大时出现先增后减的现象。最后,选取6种经典的凝结换热关联式计算凝结换热系数,并与实验结果对比,Cavallini关联式和Bohdal关联式的预测效果较好。 展开更多
关键词 R290 凝结 传热系数 小管径 水平光滑管 关联式
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Visualization Investigation on Temperature Oscillation and Two-Phase Behaviors of A Flat Loop Heat Pipe
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作者 DU Sheng ZHANG Quan +3 位作者 LING Li zou sikai LIU Lijun MENG Fanxi 《Journal of Thermal Science》 SCIE EI CAS CSCD 2023年第4期1536-1546,共11页
To better analyzing the temperature oscillation and the two-phase behavior inside a flat loop heat pipe,visual studies were conducted.Under the 20℃ water cooling and horizontal orientation,the effects of the filling ... To better analyzing the temperature oscillation and the two-phase behavior inside a flat loop heat pipe,visual studies were conducted.Under the 20℃ water cooling and horizontal orientation,the effects of the filling ratio and heat loads on the temperature oscillation were analyzed.Based on the experimental data,the results indicate that owing to the increased system pressure,the temperature oscillation decays as the filling ratio increases from 34%to 58%.Meanwhile,during the startup process,temperature oscillation tends to occur during the boiling and steady stages due to the more violent two-phase behavior,while the temperature curves are smooth during the slow evaporation stage.Moreover,as the heat load increases,the evaporation becomes more intense at the active zone of evaporator,leading to a faster startup process and a higher oscillation frequency.Besides,owing to the synergistic effect of two-phase flow in the compensation chamber caused by heat leak and subcooled liquid backflowing,a“breathing”oscillation behavior of the vapor-liquid interface is observed at the compensation chamber,which further leads to the unstable operation behavior of the loop heat pipe system. 展开更多
关键词 loop heat pipe temperature oscillation visualization observations two-phase flow patterns start-up characteristics vapor-liquid interface fluctuation
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