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Internally cooled membrane-based absorber for dehumidification and water heating: Validated model and simulation study

机译:基于内部冷却的膜吸收剂,用于除湿和水加热:验证模型和仿真研究

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This paper presents a comprehensive model for advanced membrane-based absorber components accounting for three separate fluid streams, one of them providing internal cooling, with complex flow patterns. The model was implemented with various liquid desiccants and their properties (including LiCl, CaCl2, and [emim][OMS] ionic liquid [IL]). The model has been validated using data from two laboratory prototype absorbers, one with CaCl2 as the working fluid and one with an IL as the working fluid. Entropy analysis was further carried out to verify the model and understand effect of internal cooling on the entropy variation of three fluid streams. The developed model and codes are expected to enable detailed configuration optimization and provide in-depth understanding of three-fluid heat and mass exchanger (HMX) performance. The paper also describes parametric studies of the HMX components in utilizing the latent heat removed in space cooling to heat water and numerically explores the unique benefit of its application in a semi-open absorption heat pump water heater. The results show that a single three-fluid HMX has the potential to achieve simultaneous dehumidification and water heating efficiently at cost effectiveness, particularly in hot and humid climates.commentSuperscript/Subscript Available/comment
机译:本文为三个单独的流体流占三个单独的流体流,提供内部冷却,具有复杂的流动模式。该模型用各种液体干燥剂及其性质(包括LiCl,CaCl 2和[ems]离子液体[IL])实施。使用来自两个实验室原型吸收器的数据进行验证,其中一个具有CaCl2作为工作流体,作为工作流体的数据。进一步开展熵分析以验证模型,并了解内部冷却对三种流体流熵变化的影响。预计开发的模型和代码将实现详细的配置优化,并提供对三种流体热和质量交换器(HMX)性能的深入了解。本文还描述了利用空间冷却中除去的潜热的HMX组分的参数研究,以加热水,数值探讨其在半开放吸收热泵热水器中应用的独特优点。结果表明,单个三种流体HMX有可能以成本效益有效地实现同时除湿和水,特别是在炎热和潮湿的气候中。<注释>上标/下标的

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