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Analysis of a Micro-Cogeneration System Using Hybrid Solar/Gas Collectors

机译:混合太阳能/瓦斯收集器的微型热电联产系统分析

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The use of solar thermal collectors for electricity production is a way to contribute to the Portuguese objective of reaching 39% of electricity production from renewable energy sources, until 2010. This is also in accordance with the objectives of the European Union and the Kyoto Protocol. The system in analysis is powered by solar energy and supplemented by a natural gas boiler, specially for periods when solar radiation is low. Use of the system would result in significant savings in primary energy consumption and a reduction in CO_2 emissions to the environment. The solar collectors are of the heat pipe type and hybrid: they act as a boiler economizer, as boiler exhaust gases circulate below the absorber plate, increasing the energy input and collector efficiency. The behaviour of a combined heat and power cycle producing 6 kW of electricity was simulated. The heat rejected in the cycle condenser can be used for space/water heating or cooling of buildings. Several refrigerants have been considered for the cycle and methanol presented the best performance. The contribution of solar energy (solar fraction) was evaluated for the climatic data of Lisbon (Portugal), for two applications: a pool complex and an office building. The energy and economic potential of the system was compared to the conventional alternative.
机译:将太阳能集热器用于发电是实现葡萄牙的目标的一种方式,该目标是到2010年实现可再生能源发电量的39%。这也符合欧盟和《京都议定书》的目标。分析中的系统由太阳能提供动力,并辅以天然气锅炉,特别是在太阳辐射较低的时期。使用该系统将大大节省一次能源消耗并减少对环境的CO_2排放。太阳能集热器属于热管型和混合型:它们充当锅炉省煤器,因为锅炉废气在吸收板下方循环,从而提高了能量输入和集热效率。模拟了产生6 kW电力的热电循环的行为。循环冷凝器中排出的热量可用于空间/水加热或建筑物的冷却。循环中考虑了几种制冷剂,甲醇表现出最佳性能。针对里斯本(葡萄牙)的气候数据,针对两种应用评估了太阳能(太阳能份额)的贡献:泳池综合体和办公楼。将系统的能源和经济潜力与常规替代方案进行了比较。

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