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Optimizing angles of rooftop photovoltaics, ratios of solar to vegetated roof systems, and economic benefits, in Portland, Oregon, USA

机译:在美国俄勒冈州的波特兰,优化屋顶光伏系统的角度,太阳能与植被屋顶系统的比例以及经济效益

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This study analyzed insolation data to account for multiple scattering in calculating optimal tilt angles for stationary and seasonally moving photovoltaics on three different roof types in the US Pacific Northwest: vegetated roofs, white roofs, and dark roofs. Using these results, we modeled the energy savings for vegetated roofs and roofs covered in varying numbers of photovoltaic panels. We then calculated the net present value, internal rate of return, and other economic measures for all possible combinations of covering rooftops in mixes of photovoltaic arrays and vegetation, accounting for installation costs, proposed carbon taxes, stormwater management discounts, and other relevant factors. Our results quantify how, in the US Pacific Northwest and similar locations, photovoltaics produce higher returns on investment than do vegetated roofs for new buildings, while vegetated roofs produce better returns on investment than do photovoltaics for older buildings. This is important because in many areas, some buildings have photovoltaics when a vegetated roof would have been more cost and energy efficient, while other buildings have vegetated roofs when photovoltaics would have been more cost and energy efficient. Potential applications include modifying incentive programs and other policies to account properly for building age, use, and other relevant factors to ensure building owners make the most energy-efficient decisions between photovoltaic versus vegetated roof installation. Our research also demonstrates how positive returns on investment can be realized in the US Pacific Northwest and similar regions through vegetated roofs and photovoltaics provided they are each installed optimally.
机译:这项研究分析了日照数据,以计算在美国太平洋西北部三种不同屋顶类型(植被屋顶,白色屋顶和深色屋顶)上固定和季节性移动的光伏系统的最佳倾斜角时的多重散射。利用这些结果,我们模拟了植被屋顶和覆盖不同数量光伏面板的屋顶的节能量。然后,我们计算了光伏阵列和植被混合物中覆盖屋顶的所有可能组合的净现值,内部收益率和其他经济措施,并计入了安装成本,拟议的碳税,雨水管理折扣和其他相关因素。我们的结果量化了在美国太平洋西北部和类似地区,光伏发电比新建筑物的植被屋顶产生更高的投资回报率,而植被屋顶比旧建筑物的光伏屋顶产生更高的投资回报率。这很重要,因为在许多地区,当植被屋顶成本和能源效率更高时,有些建筑物安装了光伏发电,而当光伏电池成本和能源效率更高时,其他建筑物安装了植被。潜在的应用包括修改奖励计划和其他政策,以适当考虑建筑物的使用年限,用途和其他相关因素,以确保建筑物所有者在光伏与植被屋顶安装之间做出最节能的决策。我们的研究还表明,只要安装了最佳的植被屋顶和光伏发电,就可以在美国太平洋西北部和类似地区实现积极的投资回报。

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