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Local heat and mass transfer in a counter-current slug flow absorber for ammonia-water absorption heat pump system

机译:用于氨吸收热泵系统的逆流槽流动吸收器中的局部热量和传质

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摘要

This study deals with experimental results and data reduction model for a counter-current slug flow absorber working with ammonia-water mixture for significantly low solution flow rate condition that is required for operating as the GAX cycle. From visualization results of flow pattern, frost flow just after the gas inlet followed by slug flow with well-shaped Taylor bubble are observed, while dry patch on the tube wall are not observed. The local heat flow rate is measured by varying main parameters, namely pressure, ammonia gas flow rate, solution flow rate, ammonia concentration of inlet solution and coolant inlet conditions. A data reduction model to obtain local heat and mass transfer coefficient on the liquid side is proposed by using the drift flux model to analyze the flow characteristics. Control volume method and heat and mass transfer analogy are employed to solve the combined heat and mass transfer problem As a result, it is found that the local heat and mass transfer coefficient on the liquid side is greatly; influenced by the flow pattern. The heat and mass transfer coefficient at the frost flow region is higher than that at the slug flow region due to flow disturbance and random fluctuation.
机译:该研究涉及用于使用氨水混合物的反电流块流量吸收器的实验结果和数据还原模型,以显着低溶液流量条件,其作为储质循环所需的操作。从流动模式的可视化结果,观察到刚刚用孔形泰勒气泡的燃气进气后的霜流动,而管壁上的干贴片不会观察到。通过改变主要参数,即压力,氨气流速,溶液流速,入口溶液的氨浓度和冷却剂入口条件来测量局部热流速。通过使用漂移通量模型提出了在液面上获得局部热量和质量传递系数的数据缩减模型来分析流动特性。使用控制体积和热量和传质类别来解决综合的热量和传质问题,发现液体侧的局部热量和质量传递系数大大;受流动模式的影响。由于流动干扰和随机波动,霜流量区域处的热量和质量传递系数高于在块状流动区域处的热量。

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