A Life-cycle Cost-benefit Analysis for Rooftop Photovoltaic Systems in Lightweight Steel-structured Industrial Buildings

Xinyi Hu, Ju-Kun Hu, Hong Zhang
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Abstract

There is a widespread consensus that energy efficiency of buildings is an essential component of sustainable development  and several kinds of renewable energy technologies have been widely used to achieve this sustainable goal. As a rapidly developing country, China’s manufacturing industry still occupies a prominent position, with a large number of industrial buildings that are also a crucial part of urban planning. Compared with multi-story and high-rise commercial buildings, large industrial sheds have a much more usable roof area, where rooftop photovoltaic (PV) systems are increasingly used. However, due to the small structural margins of the lightweight steel-structured (LSS) industrial buildings and the large initial investment of the thin-film PV system, few case studies are available for this kind of industrial buildings. In this research, three representative cities in China, with varying levels of solar radiation availability, are selected as typical external design factors. Taking a typical LSS industrial building with an added thin-film rooftop PV system as an example, a life-cycle cost-benefit analysis is conducted from environmental and economic aspects. The results of the analysis demonstrate the effectiveness of the rooftop thin-film PV system as a means to increase the energy efficiency of the LSS industrial buildings.
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轻钢结构工业建筑屋顶光伏系统全生命周期成本效益分析
人们普遍认为,建筑的能源效率是可持续发展的重要组成部分,多种可再生能源技术已被广泛应用于实现这一可持续目标。中国作为一个快速发展的国家,制造业仍然占据着突出的地位,大量的工业建筑也是城市规划的重要组成部分。与多层和高层商业建筑相比,大型工业厂房的屋顶可用面积要大得多,屋顶光伏系统的使用也越来越多。然而,由于轻钢结构(LSS)工业建筑的结构余量较小,而薄膜光伏系统的初始投资较大,因此很少有针对此类工业建筑的案例研究。本研究选取中国三个具有代表性的城市作为典型的外部设计因素,这些城市具有不同程度的太阳辐射可利用性。以典型的LSS工业建筑增设薄膜屋顶光伏系统为例,从环境和经济两方面进行全生命周期成本效益分析。分析结果表明,屋顶薄膜光伏系统作为一种提高LSS工业建筑能源效率的手段是有效的。
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