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Performance results of a solar adsorption cooling and heating unit

机译:太阳能吸附式制冷制热机组的性能结果

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The high environmental impact of conventional methods of cooling and heating has increased the need for renewable energy deployment for covering thermal loads. Towards that direction, the proposed system aims at offering an efficient solar powered alternative, coupling a zeolite-water adsorption chiller with a conventional vapor compression cycle. The system is designed to operate under intermittent heat supply of low-temperature solar thermal energy (<90 °C) provided by evacuated tube collectors. A prototype was developed and tested in cooling mode operation. The results of separate components testing showed that the adsorption chiller was operating efficiently, achieving a maximum coefficient of performance (COP) of 0.65. With respect to the combined performance of the system, evaluated on a typical week of summer in Athens, the maximum reported COP was approximately 0.575, mainly due to the lower driving temperatures at a range of 75 °C. The corresponding mean energy efficiency ratio (EER) obtained was 5.8.
机译:传统的冷却和加热方法对环境的强烈影响增加了对可再生能源的部署以覆盖热负荷的需求。朝着这个方向,所提出的系统旨在提供一种有效的太阳能替代方案,将沸石-水吸附式冷却器与常规的蒸气压缩循环相结合。该系统设计为在由真空管收集器提供的低温太阳能(<90°C)的间歇供热下运行。开发了原型,并在冷却模式下进行了测试。单独的组件测试结果表明,吸附式冷却器运行高效,最大性能系数(COP)为0.65。关于系统的综合性能(在雅典夏季的典型一周进行评估),报告的最大COP约为0.575,这主要是由于在75°C范围内较低的行驶温度。获得的相应平均能量效率比(EER)为5.8。

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