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Influence of PV technology and system design on the emission balance of a net zero emission building concept

机译:光伏技术和系统设计对零排放净建筑概念排放平衡的影响

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This paper presents an analysis of how the design of a photovoltaic (PV) system influences the greenhouse gas emission balance in a net zero emission building (nZEB). In a zero emission building, the emissions associated both with the energy required in the operation of the building (operational emissions) and the energy used to produce the building materials (embodied emissions) are offset by renewable energy generated on-site (avoided emissions). The analysis is applied to a nZEB concept for a single-family building, developed by the Norwegian Research Centre on Zero Emission Buildings. Previous analyses have shown that the installation of a PV system accounts for a significant share of the embodied emissions of a nZEB. The objective of this paper is to assess how the PV system design choices influence the embodied and avoided emissions, in order to determine how the environmental impact can be minimised. Four different PV technologies (Si-mono, poly-Si and CIS, and high-efficiency Si-mono) in four different system designs for flat roofs are evaluated using two different grid emission factors. The installations are compared by means of net avoided emissions, greenhouse gas payback time (GPBT), greenhouse gas return on investment (GROI), and finally the net emission balance of the building. The results show that the system with the largest area of high-efficiency Si-mono modules achieves the best lifetime emission balance, but that the greenhouse gas return on investment is highest for the optimally oriented CIS modules. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文分析了光伏(PV)系统的设计如何影响零净排放建筑物(nZEB)中的温室气体排放平衡。在零排放建筑物中,与建筑物运行所需的能量(运行排放)和用于生产建筑材料的能量(具体排放)相关的排放均被现场产生的可再生能源抵消(避免的排放) 。该分析被应用于由挪威零排放建筑研究中心开发的单户住宅的nZEB概念。先前的分析表明,光伏系统的安装在nZEB的具体排放量中占很大比例。本文的目的是评估光伏系统的设计选择如何影响实际排放量和避免排放量,从而确定如何将环境影响降至最低。使用两种不同的网格排放因子评估了四种不同的平屋顶系统设计中的四种不同的光伏技术(Si-mono,poly-Si和CIS和高效Si-mono)。通过净避免排放量,温室气体偿还时间(GPBT),温室气体投资回报率(GROI)以及建筑物的净排放平衡来比较安装。结果表明,具有最大面积的高效Si-mono模块的系统可实现最佳的寿命排放平衡,但对于定向最佳的CIS模块,温室气体的投资回报率最高。 (C)2016 Elsevier Ltd.保留所有权利。

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