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A review on integration and design of desiccant air-conditioning systems for overall performance improvements

机译:用于整体性能改进的干燥剂空调系统集成与设计综述

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摘要

With independent temperature and humidity control, desiccant air-conditioning (DAC) systems have multi aspect advantages (e.g., high-efficiency moisture control, no ozone-depleting coolants use and easy renewable integration etc.) compared with conventional vapor-compression cooling systems, thereby attracting increasingly more research attention. Recently, many studies have been conducted to improve DAC system overall performance by integrating various energy sub-systems/technologies, improving system configurations and optimizing system designs and controls. This study, therefore, provides a timely and systematic review on the above mentioned studies. The study first overviews three typical DAC system configurations, their operating processes, and the commonly used performance indicators. Second, the study summarizes the main integration approaches of DAC systems. Detailed comparative analysis has been provided regarding these integration approaches. Third, the study presents the DAC system configuration improvements in four main categories, and comparatively analyzes their performance enhancements. Last, the study briefly reviews the DAC system design and control optimizations. Meanwhile, based on the DAC system latest developments, the study provides discussions on pressing issues and recommendations for future works. The study can help improve the understanding of the latest developments on DAC system integration and design for overall performance improvements. Associated discussions and recommendations may help focus the needed efforts on solving the pressing issues and outstanding problems, thereby leading to DAC system further performance improvements.
机译:与传统的蒸汽压缩冷却系统相比,具有独立的温度和湿度控制,干燥剂空调(DAC)系统具有多个方面优势(例如,高效水分控制,无臭氧耗尽冷却剂使用和易于可再生的集成等),因此,吸引了越来越多的研究关注。最近,已经进行了许多研究,以通过整合各种能源子系统/技术,改进系统配置和优化系统设计和控制来提高DAC系统的整体性能。因此,本研究提供了对上述研究的及时和系统的审查。该研究首先概述了三种典型的DAC系统配置,其操作流程和常用的性能指标。其次,该研究总结了DAC系统的主要集成方法。关于这些整合方法提供了详细的比较分析。第三,该研究提出了四个主要类别的DAC系统配置,并相对分析了它们的性能增强。最后,该研究简要介绍了DAC系统设计和控制优化。同时,根据DAC系统最新发展,该研究提供了关于迫切问题和未来作品的建议的讨论。该研究可以帮助改善对DAC系统集成和整体性能改进设计的最新发展的理解。相关的讨论和建议可能有助于重点关注解决紧迫问题和出色问题的所需努力,从而导致DAC系统进一步的性能改进。

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