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Remarkable agrivoltaic influence on soil moisture micrometeorology and water-use efficiency

机译:农业光伏对土壤水分微气象和水分利用效率的显着影响

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摘要

Power demands are set to increase by two-fold within the current century and a high fraction of that demand should be met by carbon free sources. Among the renewable energies, solar energy is among the fastest growing; therefore, a comprehensive and accurate design methodology for solar systems and how they interact with the local environment is vital. This paper addresses the environmental effects of solar panels on an unirrigated pasture that often experiences water stress. Changes to the microclimatology, soil moisture, water usage, and biomass productivity due to the presence of solar panels were quantified. The goal of this study was to show that the impacts of these factors should be considered in designing the solar farms to take advantage of potential net gains in agricultural and power production. Microclimatological stations were placed in the Rabbit Hills agrivoltaic solar arrays, located in Oregon State campus, two years after the solar array was installed. Soil moisture was quantified using neutron probe readings. Significant differences in mean air temperature, relative humidity, wind speed, wind direction, and soil moisture were observed. Areas under PV solar panels maintained higher soil moisture throughout the period of observation. A significant increase in late season biomass was also observed for areas under the PV panels (90% more biomass), and areas under PV panels were significantly more water efficient (328% more efficient).
机译:在当前的世纪中,电力需求将增长两倍,而无碳来源应能满足大部分需求。在可再生能源中,太阳能是增长最快的能源之一。因此,对于太阳能系统及其与当地环境的相互作用的全面,准确的设计方法至关重要。本文探讨了经常遭受水分胁迫的未灌溉牧场上太阳能电池板的环境影响。量化了由于存在太阳能电池板而引起的微气候,土壤水分,水分利用和生物量生产率的变化。这项研究的目的是表明,在设计太阳能农场时应考虑这些因素的影响,以利用农业和电力生产中的潜在净收益。小气候站安装在位于俄勒冈州立校园的Rabbit Hills农用太阳能电池阵列中,安装了两年后。使用中子探针读数定量土壤水分。观察到平均气温,相对湿度,风速,风向和土壤湿度存在显着差异。在整个观测期间,光伏太阳能电池板下方的区域保持较高的土壤湿度。光伏面板下的区域也观察到了后期生物量的显着增加(生物量增加了90%),光伏面板下的区域显着提高了节水效率(提高了328%)。

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