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Exergetic performance analysis and comparison of various building heating options

机译:丰富的性能分析和各种建筑供暖方案的比较

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摘要

Heating, cooling and lighting appliances in buildings account for more than one third of the world's primary energy demand. Therefore, they are considered one of the main parts of the energy consumption in buildings. This study deals with energy/exergy and sustainability performance comparison of a building heating energy system from the primary energy production to the building envelope. A four story building located in Eskisehir, Turkey, is considered for the analysis. The indoor and outdoor air temperatures of the building are 22°C and −12°C, respectively. For heating applications, three options are studied, namely (i) standard boiler, (ii) condensing boiler and (iii) ground heat pump water-water, as driven by renewable and nonrenewable energy sources. Energy and exergy analysis methods, which are based on the lowex approach, are performed to evaluate their performances and compare them through energy and exergy efficiencies and sustainability index. Energy and exergy flows are also studied and illustrated accordingly to have an insight into for possible improvements in the system components. Also, the energetic and exergetic renewability ratios are employed here along with sustainability index. For a building with a net area of 2430.4 m2, the total exergy efficiencies of the considered heating systems are 25.3%, 6.1%, and 6.9%, respectively for three cases. The sustainability index for three cases found as 1.196, 1.236 and 1.274, respectively.
机译:建筑物中的供暖,制冷和照明设备占世界一次能源需求的三分之一以上。因此,它们被认为是建筑物能耗的主要部分之一。这项研究涉及从一次能源生产到建筑围护结构的建筑供暖能源系统的能源/火用和可持续性性能比较。考虑使用位于土耳其埃斯基谢希尔的四层楼房进行分析。建筑物的室内和室外气温分别为22°C和-12°C。对于供热应用,研究了三种选择,即(i)标准锅炉,(ii)冷凝锅炉和(iii)由可再生和不可再生能源驱动的地热泵水-水。进行了基于lowex方法的能源和火用分析方法,以评估其性能,并通过能源和火用效率和可持续性指数进行比较。还对能量和火用流进行了研究和说明,以深入了解系统组件的可能改进。另外,此处采用了能量和能量可再生性比率以及可持续性指数。对于净面积为2430.4 m 2 的建筑物,在三种情况下,所考虑的供暖系统的总火用效率分别为25.3%,6.1%和6.9%。三个案例的可持续性指数分别为1.196、1.236和1.274。

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