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Life-cycle assessment of a 100 solar fraction thermal supply to a European apartment building using water-based sensible heat storage

机译:使用基于水的显热储能为欧洲公寓楼提供100%太阳能百分率供热的生命周期评估

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摘要

Providing 100% of a building’s heating and hot water using a solar thermal system in a European climate has been shown to be both practically feasible and functionally successful for a new apartment buildingudin Switzerland. The research conducted a life cycle assessment of the solar thermal system and compared the results with an air-source heat-pump, ground-source heat pump, natural gas furnace, oil furnace anduda wood-pellet furnace. Using a range of lifetime scenarios it was found that the solar thermal systemuddisplays potentially significant advantages over all other systems in terms of reductions for purchased primary energy (from 84 to 93%) and reductions in GHG emissions (from 59 to 97%). However, due to the heavy industrial processes and the particular metals used in manufacturing, the solar thermal system was shown to have a higher demand for resources which, in relation to the natural gas system, can beudby a factor of almost 38. Potential impacts on ecosystem quality were marginally worse than for the heat-pump and fossil fuel systems due to resource use impacts whilst potential human health impacts were similar to the heat pump systems but better than the fossil and biomass fuelled systems.
机译:在瑞士的新公寓楼上,在欧洲气候下使用太阳能热系统为建筑物提供100%的供暖和热水已被证明既可行,又在功能上取得了成功。该研究对太阳能热系统进行了生命周期评估,并将结果与​​空气源热泵,地源热泵,天然气炉,油炉和乌达木片炉相比较。使用一系列的使用寿命方案,发现在减少购买的一次能源(从84%到93%)和减少温室气体排放(从59%到97%)方面,太阳热能系统 ud相对于其他系统具有潜在的显着优势。 。然而,由于繁重的工业过程和制造中使用的特定金属,太阳能热系统显示出对资源的更高需求,相对于天然气系统,该资源的需求量可能增加了近38倍。由于资源使用的影响,对生态系统质量的影响比热泵和化石燃料系统要差一些,而对人类健康的潜在影响与热泵系统相似,但要好于化石和生物质燃料系统。

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