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Life-cycle energy analysis of building integrated photovoltaic systems (BiPVs) with heat recovery unit

机译:带热回收装置的建筑集成光伏系统(BiPV)的生命周期能量分析

摘要

Building integrated photovoltaic (BiPV) systems generate electricity, but also heat, which is typically wasted and also reduces the efficiency of generation. A heat recovery unit can be combined with a BiPV system to take advantage of this waste heat, thus providing cogeneration. Two different photovoltaic (PV) cell types were combined with a heat recovery unit and analysed in terms of their life-cycle energy consumption to determine the energy payback period. A net energy analysis of these PV systems has previously been performed, but recent improvements in the data used for this study allow for a more comprehensive assessment of the combined energy used throughout the entire life-cycle of these systems to be performed. Energy payback periods between 4 and 16.5 years were found, depending on the BiPV system. The energy embodied in PV systems is significant, emphasised here due to the innovative use of national average input–output (I–O) data to fill gaps in traditional life-cycle inventories, i.e. hybrid analysis. These findings provide an insight into the net energy savings that are possible with a well-designed and managed BiPV system.
机译:建筑集成光伏(BiPV)系统不仅产生电能,而且还产生热量,这通常是浪费的,而且降低了发电效率。热回收单元可以与BiPV系统结合使用,以利用这些废热,从而提供热电联产。将两种不同的光伏(PV)电池类型与热回收单元组合在一起,并根据其生命周期能耗进行分析,以确定能量回收期。以前已经对这些光伏系统进行了净能量分析,但是最近在本研究中使用的数据进行了改进,可以对将要执行的这些系统的整个生命周期中使用的组合能量进行更全面的评估。根据BiPV系统,发现了4至16.5年的能源回收期。光伏系统中蕴含的能量非常重要,这是由于创新地使用了国家平均投入产出(I–O)数据来填补传统生命周期清单(即混合分析)中的空白所致。这些发现提供了对经过精心设计和管理的BiPV系统可能实现的净节能的深刻理解。

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