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Exergetic Comparison of Two Configurations for an Upgraded Absorption/Compression Heat Pump Integrated Organic Mixtures

机译:升级的吸收/压缩热泵集成有机混合物的两种配置的有效比较

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Reducing gas emissions and fighting climate change have become key issues of today's modern society. An energy efficiency strategy consists of developing policies and implementing measures and means to change the conditions of energy consumption in all economic and social activities by improving the efficiency of methods and consumer equipment. Energy efficiency improvement programs are important levers for reconciling growth, social development and respect to the environment. Through them, it is possible to commit sustainable development and to protect the global environment. Special interest is given to different configurations of hybrid refrigeration, which seems to be interesting when one has a heat source practically free. This process is more economical in terms of electricity consumption by ensuring an efficient production of cold. This work presents a comparison between the different configurations studied previously, those that work with organic couples and others that are powered with a photovoltaic unit. Analysis and evaluation of the performance of the heat pump is in question of its exergy efficiency, the destruction of total exergy as well as those relating to every element of the installation. Parameters evaluated are exergetic efficiency, coefficient of performance and the irreversibility relative to each configuration. Results show that the performance of the solar model is improved significantly while obviously using the organic mixture. Its energetic efficiency is 20% more important than that for the ammonia / water. Exergetic efficiency of the system is also improved by about 15%.
机译:减少气体排放和应对气候变化已成为当今现代社会的关键问题。能源效率战略包括制定政策,实施措施和手段,以通过提高方法和消费设备的效率来改变所有经济和社会活动中的能源消耗状况。能源效率改善计划是协调增长,社会发展和对环境的尊重的重要杠杆。通过它们,可以实现可持续发展并保护全球环境。特别关注混合制冷的不同配置,当人们几乎没有热源时,这似乎很有趣。通过确保有效产生冷量,此过程在电力消耗方面更为经济。这项工作提出了以前研究过的不同配置之间的比较,这些配置适用于有机电偶和其他使用光伏装置供电的配置。对热泵性能的分析和评估存在以下问题:热能效率,总热能的破坏以及与设备每个元素有关的热能的破坏。评估的参数是能量效率,性能系数和相对于每种配置的不可逆性。结果表明,在明显使用有机混合物的同时,太阳能模型的性能得到了显着改善。它的能量效率比氨/水的能量效率重要20%。该系统的有效效率也提高了约15%。

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