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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Assessment of liquid desiccant dehumidification aided vapor-compression refrigeration system based on thermo-economic approach
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Assessment of liquid desiccant dehumidification aided vapor-compression refrigeration system based on thermo-economic approach

机译:基于热经济法的液体干燥剂除湿辅助辅助压缩制冷系统评估

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摘要

This work presents the analysis of a modified liquid desiccant dehumidification incorporated vapour compression refrigeration system based on thermo-economic approach. The thermal model of the proposed system is developed and optimized by considering the co-efficient of performance and the total annual cost of the system as objectives. To focus on the liquid desiccant dehumidification subsystem, seven design variables including thermodynamic and geometric parameters are selected accordingly. The multi-objective optimization results are obtained in the form of Pareto solutions. The effect of dehumidifier height and desiccant to air mass flow rate on the optimized performance of the system is investigated. Further, the effect of design variables on the performance of the system is also examined. The results show that 51.3% of the total cooling load is handled by the desiccant dehumidifier alone. This significant sharing of heat duty by addition of liquid desiccant dehumidification to conventional vapour compression refrigeration system justifies this hybridization for humid and hotter climates. Further investigation at an optimal solution point shows that the co-efficient of performance of the hybrid system is improved up to 68.4% compared to co-efficient of performance of standalone vapour compression refrigeration system for handling the same cooling load. Also, the payback duration of the hybrid system comes out to be 1.54 years.
机译:该作品介绍了基于热经济法的改进的液体干燥剂除湿掺入蒸汽压缩制冷系统的分析。通过考虑绩效的共同效率和系统的总成本作为目标,开发和优化了所提出的系统的热模型。要专注于液体干燥剂除湿子系统,因此选择了七个设计变量,包括热力学和几何参数。多目标优化结果以帕累托溶液的形式获得。研究了除湿器高度和干燥剂对系统的优化性能的空气质量流速的影响。此外,还检查了设计变量对系统性能的影响。结果表明,除湿剂除湿器的总冷却负荷的51.3%仅由干燥剂除湿器处理。通过向传统的蒸汽压缩制冷系统添加液体干燥剂除湿来说,这种显着的加热造金分担证明了这种杂交的潮湿和更热的气候。与独立蒸汽压缩制冷系统的性能相同的冷却负荷的性能相比,在最佳解决方案点处进一步研究了杂交系统的性能的高效增长高达68.4%。此外,混合系统的回报持续时间为1.54年。

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