最大限度地减少太阳能农场对环境的影响:当前景观水文学科学综述和雨水管理指南

Rouhangiz Yavari, Demetrius Zaliwciw, R. Cibin, L. McPhillips
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引用次数: 11

摘要

随着太阳能成为一种越来越便宜的可再生能源,大型公用事业规模的地面太阳能电池板装置,通常被称为“太阳能农场”,正在迅速增长。由于这些太阳能农场通常占地数百英亩,因此有可能对自然水文过程产生影响,包括径流产生和侵蚀。在这里,我们回顾了太阳能农场对水文和水质影响的科学研究现状,以及减少任何影响的管理建议。有限的实地测量表明,太阳能农场周围土壤水分的再分配,但对径流和侵蚀的净影响不太清楚。将太阳能农场与农业结合起来作为“农业发电”的研究表明,减少了蒸发水分损失和相关的作物压力,特别是在更干旱的地区。关于与太阳能农场相关的土地和雨水管理,美国大多数州目前没有针对太阳能农场的具体建议,而是遵循标准的雨水管理许可和指导。在有太阳能农场具体指导的州,典型的建议包括尽量减少与施工相关的压实,确保以最少的维护为多年生植被提供高覆盖,以及在太阳能电池板行之间设计透水空间以促进径流的渗透;在某些情况下,可能需要像渗透盆地这样的结构性雨水管理。一般来说,太阳能农场的设计可以尽量减少对景观生态水文过程的影响,但需要更多的研究来确定目前的建议是否足够。特别是,需要对坡度较高等不太理想的地点进行更多的实地研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimizing environmental impacts of solar farms: a review of current science on landscape hydrology and guidance on stormwater management
As solar energy becomes an increasingly cheap source of renewable energy, major utility-scale ground solar panel installations, often called ‘solar farms’, are rapidly growing. With these solar farms often covering hundreds of acres, there is the potential for impacts on natural hydrologic processes, including runoff generation and erosion. Here we review the current state of scientific research on the hydrology and water quality impacts of solar farms, as well as management recommendations for minimizing any impacts. The limited field measurements indicate the redistribution of soil moisture around solar farms, but the net impacts on runoff and erosion are less clear. Research focused on coupling solar farms with agriculture as ‘agrivoltaics’ demonstrates reduced evaporative water losses and associated crop stress, particularly in more arid regions. With regards to land and the stormwater management associated with solar farms, most US states currently do not have solar farm-specific recommendations and instead defer to standard stormwater management permits and guidance. In states with solar farm-specific guidance, typical recommendations include minimizing construction-related compaction, ensuring a high cover of perennial vegetation with minimal maintenance, and designing with pervious space between solar panel rows to promote infiltration of any runoff; in some cases, structural stormwater management like infiltration basins may be required. In general, solar farms can be designed to minimize the impact on landscape ecohydrological processes, but more research is needed to determine whether current recommendations are adequate. In particular, there is a need for more field research on less ideal sites such as those with higher slopes.
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