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Comparison of parallel and counter flow coil absorber performance

机译:平行和逆流盘管吸收器性能比较

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This study concentrates on the absorber used in the vapor absorption systems using water-lithium bromide solution with water as the refrigerant and investigates the simultaneously occurred heat and mass transfer during the absorption process. The heat and mass transfer equations were applied to simulate this process and solved using a computer program written in Delphi 7 for the parallel and counter flow absorbers. The simulation results were compared with the results of the past studies. The solution and cooling water temperatures, the overall heat transfer coefficient, the heat transferred and the mass absorbed were calculated for the parallel and counter flow absorbers. It is concluded that the counter flow absorber presents better performance for all conditions. For smaller number of coils, the difference is smaller, however if the number of coils is bigger, the counter flow absorber presents much better performance than the parallel flow absorber. When the number of coils is 20 and 120, the counter flow absorber provides 1.7% and 26% higher heat and mass transfer than the parallel flow absorber respectively.
机译:这项研究集中在使用水-溴化锂溶液,水作为制冷剂的蒸汽吸收系统中使用的吸收器,并研究吸收过程中同时发生的传热和传质。应用传热和传质方程式来模拟此过程,并使用用Delphi 7编写的并行和逆流吸收器的计算机程序进行求解。仿真结果与过去的研究结果进行了比较。计算了平行和逆流吸收器的溶液和冷却水温度,总传热系数,传热和吸收质量。结论是,逆流吸收器在所有条件下均具有更好的性能。对于较小数量的线圈,相差较小,但是,如果线圈数量较大,则逆流吸收器的性能要比平行流吸收器好得多。当线圈数为20和120时,逆流吸收器的传热和传质分别比平行流吸收器高1.7%和26%。

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