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Review of Technology Used to Improve Heat and Mass Transfer Characteristics of Adsorption Refrigeration System

机译:改善吸附式制冷系统传热传质特性的技术综述

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摘要

Researchers proved that, heat powered adsorption refrigeration technology is very effective methods for reutilization of low-grade thermal energy such as industrial waste heat, solar energy, and exhaust gases from engines. But to make it commercially competitive with the well-known vapor compression and absorption refrigeration system, the processes require high rates of heat and mass transfer characteristic between adsorbate and adsorbent as well as externally supplied heat exchanging fluid. This paper reviews various techniques that have been developed and applied to enhance the heat transfer and mass transfer in adsorber beds, and also discuss their effects of the performance on adsorption system. A comprehensive literature review has been conducted and it was concluded that this technology, although attractive, has limitations regarding its heat and mass transfer performance that seem difficult to overcome. Therefore, more researches are required to improve heat and mass transfer performance and sustainability of basic adsorption cycles.
机译:研究人员证明,热吸附制冷技术是一种有效利用低级热能的有效方法,例如工业余热,太阳能和发动机废气。但是,为了使其在商业上与众所周知的蒸气压缩和吸收式制冷系统竞争,这些过程需要在被吸附物和吸附剂之间以及外部供应的热交换流体之间具有较高的热速率和传质特性。本文概述了已开发和应用来增强吸附床传热和传质的各种技术,并讨论了其性能对吸附系统的影响。进行了全面的文献综述,得出的结论是,该技术尽管很有吸引力,但在传热和传质性能方面存在局限性,似乎难以克服。因此,需要更多的研究来改善传热和传质性能以及基本吸附循环的可持续性。

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