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首页> 外文期刊>Hydrology and Earth System Sciences >Rain concentration and sheltering effect of solar panels on cultivated plots
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Rain concentration and sheltering effect of solar panels on cultivated plots

机译:太阳能电池板在栽培情节上的雨浓度和保护效果

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摘要

Agrivoltaism is the association of agricultural and photovoltaic energy production on the same land area, coping with the increasing pressure on land use and water resources while delivering clean and renewable energy. However, the solar panels located above the cultivated plots also have a seemingly yes unexplored effect on rain redistribution, sheltering large parts of the plot but redirecting concentrated fluxes on a few locations. The spatial heterogeneity in water amounts observed on the ground is high in the general case; its dynamical patterns are directly attributable to the mobile panels through their geometrical characteristics (dimensions, height, coverage percentage) and the strategies selected to rotate them around their support tube. A coefficient of variation is used to measure this spatial heterogeneity and to compare it with the coefficient of uniformity that classically describes the efficiency of irrigation systems. A rain redistribution model (AVrain) was derived from literature elements and theoretical grounds and then validated from experiments in both field and controlled conditions. AVrain simulates the effective rain amounts on the plot from a few forcing data (rainfall, wind velocity and direction) and thus allows real-time strategies that consist in operating the panels so as to limit the rain interception mainly responsible for the spatial heterogeneities. Such avoidance strategies resulted in a sharp decrease in the coefficient of variation, e.g. 0.22 vs. 2.13 for panels held flat during one of the monitored rain events, which is a fairly good uniformity score for irrigation specialists. Finally, the water amounts predicted by AVrain were used as inputs to Hydrus-2D for a brief exploratory study on the impact of the presence of solar panels on rain redistribution at shallow depths within soils: similar, more diffuse patterns were simulated and were coherent with field measurements.
机译:Agrivoltaism是农业和光伏能源生产协会在同一块土地面积,应对土地利用和水资源的增加,同时提供清洁和可再生能源。然而,位于培养地块上方的太阳能电池板也有一个看似的对雨再分配的未开发的效果,避开了少数地区,但在几个位置重定向集中的助熔剂。在地面观察到的水量中的空间异质性在一般情况下高;其动态模式通过其几何特征(尺寸,高度,覆盖百分比)和选择的策略直接归因于移动面板,以及选择围绕其支撑管旋转的策略。使用变异系数来测量该空间异质性,并将其与经典描述灌溉系统效率的均匀性系数进行比较。雨再分配模型(AVRAIN)来自文学元素和理论场,然后从两种场和受控条件下的实验验证。 AVRAIN模拟了几个强制数据(降雨,风速和方向)的情节上的有效雨量,从而允许在操作面板上进行的实时策略,以限制主要负责空间异质性的雨拦截。这种避免策略导致变异系数急剧下降,例如。在受监控的雨季事件之一持平的面板持有0.22与2.13,这是灌溉专家的相当良好的均匀分数。最后,AVRAIN预测的水量被用作Hydrus-2d的输入,了解有关太阳能电池板在土壤中浅层深度的雨量再分布的影响的简要探索性研究:类似的,模拟了更多的漫射模式并与之相干现场测量。

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    Univ Montpellier Irstea UMR G Eau 361 Rue Jean Francois Breton F-34136 Montpellier France;

    Univ Montpellier Irstea UMR G Eau 361 Rue Jean Francois Breton F-34136 Montpellier France;

    Univ Montpellier Irstea UMR G Eau 361 Rue Jean Francois Breton F-34136 Montpellier France;

    Univ Montpellier Irstea UMR G Eau 361 Rue Jean Francois Breton F-34136 Montpellier France;

    Univ Montpellier Irstea UMR G Eau 361 Rue Jean Francois Breton F-34136 Montpellier France;

    Univ Montpellier Montpellier SupAgro UMR G Eau 2 Pl Pierre Viala F-34060 Montpellier France;

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  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
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