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Solar radiation distribution inside a monospan greenhouse with the roof entirely covered by photovoltaic panels

机译:单跨温室内部的太阳辐射分布,屋顶完全被光电板覆盖

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In the present work the variation over space and time of the amount of the photosynthetic photons flux density, inside a greenhouse entirely covered with photovoltaic panels was investigated experimentally and numerically. The greenhouse had 10.00 m spam width, 50.00 m length, 3.00 m height of the gutter, 6.60 m height of the edge. Data were acquired in the period 18 th April-8 th June 2014 by one sensor outside and one inside the experimental greenhouse built in Southern Italy. Numeric simulations were performed by means of commercial software Autodesk ? Ecotect ? . For the investigated greenhouse model, the exposed percentage - the ratio of the calculated insolation at a particular point within an enclosure to the simultaneous unobstructed outdoor insolation under the same sky conditions - was calculated over a three dimensional grid formed by 50x10x15 cells each with 1.00x1.00x0.20 m size. The long-term analysis demonstrated a good capability of the numerical model to predict the shading effect inside a photovoltaic greenhouse combining the daily calculated exposed percentage with measurements of solar radiation. The model was able also to predict the qualitative behaviour of the variation of photons flux during the day even if the measured values showed a higher fluctuation of values.
机译:在目前的工作中,实验和数值研究了完全覆盖光伏电池板的温室内光合光子通量密度随时间和空间的变化。温室的垃圾邮件宽度为10.00 m,长度为50.00 m,檐槽高度为3.00 m,边缘高度为6.60 m。数据是在2014年4月18日至6月8日期间通过意大利南部建造的实验温室的外部和内部的一个传感器获取的。数值模拟是通过商业软件Autodesk?进行的。 Ecotect? 。对于所研究的温室模型,在由50x10x15个单元(每个单元1.00x1)形成的三维网格上,计算了暴露百分比-在相同天空条件下,封闭空间内特定点处的日照与同时无遮挡的室外日照的比值。 .00x0.20 m尺寸。长期分析表明,该数值模型具有很好的预测光伏温室内遮阳效果的能力,该模型将每日计算的暴露百分比与太阳辐射的测量值相结合。即使测量值显示出较高的值波动,该模型也能够预测白天光子通量变化的定性行为。

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