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Energy And Economic Analysis Of An Integrated Solar Absorption Cooling And Heating System In Different Building Types And Climates

机译:不同建筑物类型和气候下集成的太阳能吸收式制冷和供热系统的能源和经济分析

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The use of solar energy in buildings is an important contribution for the reduction of fossil fuel consumption and harmful emissions to the environment. Solar thermal cooling systems are still in their infancy regarding practical applications, although the technology is sufficiently developed for a number of years. In many cases, their application has been conditioned by the lack of integration between cooling and heating systems. This study aims to evaluate the potential of integrated solar absorption cooling and heating systems for building applications. The TRNSYS software tool was used as a basis for assessment. Different building types were considered: residential, office and hotel. The TRNSYS models are able to run for a whole year (365 days), according to control rules (self-deciding whether to operate in heating or cooling modes), and with the possibility of combining cooling, heating and DHW applications. Three different locations and climates were considered: Berlin (Germany), Lisbon (Portugal), and Rome (Italy). Both energy and economic results are presented for all cases. The different local costs for energy (gas, electricity and water) were taken into account. Savings in CO_2 emissions were also assessed. An optimization of solar collector size and other system parameters was also analysed.
机译:在建筑物中使用太阳能是减少化石燃料消耗和对环境有害排放的重要贡献。尽管该技术已经发展了很多年,但太阳能热冷却系统仍处于实际应用的初期阶段。在许多情况下,它们的应用受制于冷却和加热系统之间缺乏集成。这项研究旨在评估建筑应用中集成的太阳能吸收式制冷和供暖系统的潜力。 TRNSYS软件工具被用作评估的基础。考虑了不同的建筑类型:住宅,办公室和酒店。根据控制规则(自行决定以供热还是制冷模式运行),TRNSYS模型可以运行整整一年(365天),并且可以将制冷,供热和DHW应用结合起来。考虑了三个不同的位置和气候:柏林(德国),里斯本(葡萄牙)和罗马(意大利)。给出了所有情况下的能源和经济结果。考虑了当地不同的能源成本(燃气,电和水)。还评估了CO_2排放量的节省。还分析了太阳能收集器尺寸和其他系统参数的优化。

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