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RESEARCH ON ENHANCING FALLING-FILM PERFORMANCE OF A NEW SOLAR LIBR ABSORPTION REFRIGERATION SYSTEM

机译:一种提高新型太阳能斯波吸收制冷系统的下落膜性能研究

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A Lithium Bromide (LiBr) absorption refrigeration system with new falling-film surface is driven by simulated solar heat. This paper aims to present the falling-film evaporation and absorption performance of a solar refrigeration system, and typical experimental data. The aqueous solution of LiBr is absorbed and the condensate is evaporated in steady continuous absorption and evaporation without the absorber pump and the evaporator pump. In a cross-flow horizontal falling-film heat exchanger, the staggered coil is wrapped with the mesh screen to hold up more liquid film. The performance of the heat and mass transfer is improved due to an increase in the wet ratio of the surface. The heat, mass and momentum transport relevant to liquidvapor flows are analyzed in detail. An experimental study is carried out to analyze the performance of the refrigeration system and to characterize the effects of the absorption pressure, the inlet temperature of the solution, and the inlet temperature of the cooling water on the heat and mass transfer in the absorption process. The implications of the data are discussed in detail.
机译:具有新的下降膜表面的溴化锂(LIBR)吸收制冷系统由模拟的太阳热驱动。本文旨在展示太阳能制冷系统的下降膜蒸发和吸收性能,以及典型的实验数据。 LIBR的水溶液被吸收,并且在没有吸收泵和蒸发器泵的情况下稳定地连续吸收和蒸发蒸发冷凝物。在横流水平落膜热交换器中,交错线圈用网筛包裹以保持更多的液体膜。由于表面的湿法比率增加,可以提高热量和传质的性能。详细分析与液态蒸汽流相关的热量,质量和动量运输。进行了实验研究以分析制冷系统的性能,并表征吸收压力,溶液入口温度的影响,以及冷却水对吸收过程中的热量和传质的入口温度。详细讨论了数据的含义。

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