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Optimal planning of the joint placement of photovoltaic panels and green roofs under climate change uncertainty

机译:气候变化不确定性下光伏电池板与绿色屋顶联合布置的最佳规划

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摘要

Photovoltaic (PV) panels directly convert sunlight into electricity; but, sunlight also heats the panels, negatively impacting their efficiency. Green roofs are vegetative layers grown on rooftops, mainly to provide added insulation on the roof to save energy. Green roofs also cool near-surface air temperature. Hence, the joint installation of PV panels and green roofs may potentially lead to higher efficiency of PV panels in certain climates. We develop a two-stage stochastic programming model to optimally place PV panels and green roofs under climate change uncertainty to maximize the overall profit from energy generated and saved. We calibrate the model using the literature, industry reports, and the data from different, at times conflicting, climate projections. We then conduct a case study for a mid-size city in the U.S., perform extensive sensitivity and robustness analyses and provide insights. (C) 2018 Elsevier Ltd. All rights reserved.
机译:光伏面板将阳光直接转化为电能;但是,阳光也会加热面板,从而对面板的效率产生负面影响。绿化屋顶是生长在屋顶上的营养层,主要是为了在屋顶上提供额外的隔热作用以节省能源。绿色屋顶还可以冷却近地表的气温。因此,在某些气候条件下,光伏面板和绿色屋顶的联合安装可能会导致光伏面板的更高效率。我们开发了一个两阶段的随机规划模型,以在气候变化不确定性条件下最佳地放置光伏板和绿化屋顶,以最大程度地利用发电和节约的能源获得总利润。我们使用文献,行业报告以及来自不同,有时相互矛盾的气候预测的数据对模型进行校准。然后,我们针对美国中型城市进行案例研究,进行广泛的敏感性和健壮性分析并提供见解。 (C)2018 Elsevier Ltd.保留所有权利。

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