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首页> 外文期刊>International Journal of Exergy >Comparison of air-cooled and water-cooled (hot-water and direct-fired) double effect LiBr-H2O absorption systems: energy and exergy analyses
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Comparison of air-cooled and water-cooled (hot-water and direct-fired) double effect LiBr-H2O absorption systems: energy and exergy analyses

机译:风冷和水冷(热水和直燃)双效LiBr-H2O吸收系统的比较:能量和火用分析

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摘要

In this study, air-cooled and water-cooled cooling systems including hot-water and direct-fired double effect LiBr-H2O absorption chillers are analysed and compared in different operating and climatic conditions according to the first and second laws of thermodynamics. Unlike most articles in literature, in this paper all components engaged in cooling generation have been considered to attain the total energy utilisation factor (EUF) and exergy efficiency for the cooling systems. Results show that the EUF and second law efficiency of the systems including direct-fired chillers are a little higher than the hot-water chillers. Comparison between similar water-cooled and air-cooled systems illustrates that although the EUF of water-cooled systems is considerably higher than that of air-cooled systems, the difference between their second law efficiency, especially in temperatures below 37 degrees C, is very small. This fact attests to the potential of air-cooled systems to be used specially in moderate climatic conditions.
机译:在这项研究中,根据热力学第一定律和第二定律,对包括热水和直接燃烧双效LiBr-H2O吸收式制冷机在内的风冷和水冷式制冷系统进行了分析和比较。与文献中的大多数文章不同,在本文中,所有参与冷却发电的组件都被认为可以达到冷却系统的总能量利用率(EUF)和火用效率。结果表明,包括直燃式冷水机组在内的系统的EUF和第二定律效率略高于热水冷水机组。比较类似的水冷系统和风冷系统可以看出,尽管水冷系统的EUF大大高于风冷系统,但其第二定律效率之间的差异非常明显,尤其是在低于37摄氏度的温度下小。这一事实证明了风冷系统特别适合在中等气候条件下使用的潜力。

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