基于压缩机辅助吸收式制冷机的地热能-太阳能制冷装置研究

IF 4.2 Q2 ENERGY & FUELS
Evangelos Bellos, Dimitra Gonidaki, John K. Kaldellis
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引用次数: 0

摘要

这项工作的目的是设计一种由可再生能源提供的混合型吸收式制冷机。在蒸发器和吸收器之间增加一个机械压缩机,采用溴化锂/水工作对的单效吸收式制冷机是本工程的主要装置。混合系统的热量输入由驱动温度为92℃的地热热源提供,而压缩机则由光伏发电提供电力。该系统仅在有可用的太阳照射时以混合模式运行。分析是参数化的,但也有通过基于小时的模型进行动态分析。研究时间为5月至9月有制冷需求的时间段,研究地点为希腊的Lesbos岛。研究发现,与地热场驱动的传统吸收式制冷机相比,地热和太阳能混合驱动的制冷机在季节内的制冷量提高了21.21%。在最温暖的月份,这一增幅更高,这表明压缩机在系统中的辅助作用非常重要。然而,由于系统散热效率的提高和一天中最温暖时期光伏输出的减少,在最温暖月份的制冷产量比其他夏季时期要低。季节系统能源效率为28.86%,各自的火用效率为15.41%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of a geothermal-solar cooling unit based on a compressor-assisted absorption chiller
The objective of this work is the design of a hybrid absorption chiller that is fed by renewable energies. A single-effect absorption chiller operating with LiBr/water working pair is the main device of this work which incorporates an extra mechanical compressor between the evaporator and the absorber. The heat input in the hybrid system is given by a geothermal heat source of 92οC driving temperature, while the compressor is fed by electricity produced by photovoltaics. The system operates in hybrid mode only when there is available solar irradiation. The analysis is parametric, but there is also dynamic analysis through an hourly-based model. The studied period is from May to September when there is cooling demand, and the studied location is Lesbos Island in Greece. It was found that the hybrid chiller driven by geothermal and solar energy leads to 21.21 % higher cooling production during the season compared to the conventional absorption chiller driven by a geothermal field. The increase is higher in the warmest months, something that indicates the high importance of the compressor assistance in the system. However, the cooling production during the warmest months is lower compared to the other summer periods due to the rise in the system’s heat rejection efficiency and the reduction of PV output during the warmest periods of the day. The seasonal system energy efficiency was found to be 28.86% and the respective exergy efficiency at 15.41 %.
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来源期刊
Renewable Energy Focus
Renewable Energy Focus Renewable Energy, Sustainability and the Environment
CiteScore
7.10
自引率
8.30%
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0
审稿时长
48 days
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