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Comprehensive strategies for performance improvement of adsorption air conditioning systems: A review

机译:改善吸附式空调系统性能的综合策略:综述

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Adsorption chiller technology has received much attention in the last few decades due to its advantages in utilizing low grade thermal energy and eco-friendly refrigerant. However, it has not been wide commercialized due to its low coefficient of performance (COP) and low specific cooling power (SCP) compared to conventional refrigeration technologies. This paper reviews different strategies to improve the COP and SCP of adsorption chillers. Heat recovery, mass recovery, multi-stage, multi-bed, improved adsorption structures and optimized operating conditions are discussed in this review. This study revealed that: (i) for operating conditions of low evaporative temperature, low generation temperature or high condensing temperature, a mass recovery technique is strongly recommended; (ii) in the case of intermittent cold production systems, use of constant temperature adsorption cooling cycle strategy is preferred; (iii) an appropriate cycle time and switching time are important to achieve the optimal system performance since the adsorption chiller performance is strongly dependent on the operating conditions; (iv) by employing a novel composite adsorbent material, along with improvements in heat exchanger design, advanced adsorption cycles can be a promising technology to improve adsorption chiller performance. This review highlights the need for further research to reduce chiller manufacture costs, increase power-to-mass ratio and improve understanding of dynamic long term chiller performance when driven by solar or waste thermal energy.
机译:吸附式制冷机技术在利用低品位热能和环保型制冷剂方面具有优势,因此在过去的几十年中受到了广泛关注。但是,由于其性能系数(COP)和比制冷能力(SCP)低,与常规制冷技术相比,尚未得到广泛的商业化。本文概述了提高吸附式制冷机的COP和SCP的不同策略。在这篇综述中讨论了热回收,质量回收,多级,多床,改进的吸附结构和优化的操作条件。该研究表明:(i)对于低蒸发温度,低生成温度或高冷凝温度的操作条件,强烈建议采用质量回收技术; (ii)对于间歇式冷生产系统,最好采用恒温吸附冷却循环策略; (iii)适当的循环时间和切换时间对于实现最佳系统性能至关重要,因为吸附式冷却器的性能在很大程度上取决于运行条件; (iv)通过使用新型的复合吸附材料,以及在热交换器设计上的改进,先进的吸附循环可以成为改善吸附冷却器性能的有前途的技术。这篇评论强调了需要进行进一步研究以降低冷水机的制造成本,增加功率质量比以及增进对由太阳能或废热能驱动的冷水机动态长期性能的了解。

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