首页> 外文会议>ASME international conference on energy sustainability;ES2009 >PERFORMANCE OF AN ABSORBER WITH HYDROPHOBIC MEMBRANE CONTACTOR AT AQUEOUS SOLUTION-WATER VAPOR INTERFACE
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PERFORMANCE OF AN ABSORBER WITH HYDROPHOBIC MEMBRANE CONTACTOR AT AQUEOUS SOLUTION-WATER VAPOR INTERFACE

机译:疏水性膜接触剂在水溶液-水-蒸气界面的吸收性能

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摘要

In this study, analytical investigation at off-design conditions on performance of a plates-and-frames absorber with hydrophobic microporous membrane contactor at aqueous solution-water vapor interface are carried out. The absorber is a component of a single-effect lithium bromide-water absorption chiller with a hot water thermally driven generator and water-cooled absorber and condenser. Integrating the absorber model with the chiller model is used to evaluate the absorber performance at off-design conditions corresponding to different inlet both driving hot water and cooling water (coolant) temperatures. For the same cooling capacity of the chiller and referring to design point values, the results indicate that, increasing the inlet driving hot water temperature results in an increase in the required absorber size, consequently, a decrease in the absorber performance. While, decreasing the cooling water (coolant) inlet temperature leads to slightly decreases in the required absorber size, consequently, an increase in the absorber performance.
机译:在这项研究中,在非设计条件下对具有疏水性微孔膜接触器的板框式吸收器在水溶液-水蒸气界面处的性能进行了分析研究。该吸收器是单效溴化锂吸水式制冷机的组成部分,该制冷机具有热水热驱动发电机,水冷式吸收器和冷凝器。将吸收器模型与冷却器模型集成在一起,可以在非设计条件下评估吸收器性能,这些条件对应于驱动热水和冷却水(冷却剂)温度不同的入口。对于相同的冷却器冷却能力并参考设计点值,结果表明,增加入口驱动热水温度会导致所需吸收器尺寸的增加,从而导致吸收器性能的下降。同时,降低冷却水(冷却剂)的入口温度会导致所需吸收器尺寸略有减小,因此,吸收器性能会提高。

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