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Effect of manual tilt adjustments on incident irradiance on fixed and trackingsolar panels

机译:手动倾斜调整对固定和跟踪太阳能板上入射辐射的影响

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Hourly typical meteorological year (TMY3) data was utilized with the Perez radiation model to simulate solar radiation on fixed, azimuth tracking and two axis tracking surfaces at 217 geographically diverse temperate latitude sites across the contiguous United States of America. The optimum tilt angle for maximizing annual irradiation on a fixed south-facing panel varied from being equal to the latitude at low-latitude, high clearness sites, to up to 14° less than the latitude at a north-western coastal site with very low clearness index. Across the United States, the optimum tilt angle for an azimuth tracking panel was found to be on average 19° closer to vertical than the optimum tilt angle for a fixed, south-facing panel at the same site. Azimuth tracking increased annual solar irradiation incident on a surface by an average of 29% relative to a fixed south-facing surface at optimum tilt angle. Two axis tracking resulted in an average irradiation increase of 34% relative to the fixed surface. Introduction of manual surface tilt changes during the year produced a greater impact for non-tracking surfaces than it did for azimuth tracking surfaces. Even monthly tilt changes only resulted in an average annual irradiation increase of 5% for fixed panels and 1% for azimuth tracked surfaces, relative to using a single optimized tilt angle in each case. In practice, the decision whether to manually tilt panels requires balancing the added cost in labor and the panel support versus the extra energy generation and the cost value of that energy. A Supplementary spreadsheet file is available that gives individual results for each of the 217 simulated sites.
机译:Perez辐射模型使用每小时典型气象年(TMY3)数据来模拟美国连续217个地理上不同的温带纬度地点在固定,方位角跟踪和两轴跟踪表面上的太阳辐射。使固定的朝南面板上的年度辐射最大化的最佳倾斜角从等于低纬度,高净度站点的纬度,到比西北极沿海站点的纬度小14°。清晰度指数。在美国全国范围内,方位跟踪板的最佳倾斜角平均比同位置的朝南固定板的最佳倾斜角平均近19°。方位角跟踪相对于在最佳倾斜角下朝南的固定表面而言,每年入射在表面上的太阳辐射平均增加29%。两轴跟踪导致相对于固定表面的平均照射增加了34%。在这一年中,引入手动表面倾斜变化对非跟踪表面的影响比对方位跟踪表面的影响更大。相对于在每种情况下使用单个优化的倾斜角度,即使每月倾斜变化也只会导致固定面板的年均辐照度增加5%,而方位跟踪表面的平均年辐照度增加1%。实际上,决定是否手动倾斜面板需要在人工和面板支撑上增加的成本与额外的能量产生和该能量的成本值之间取得平衡。提供了一个补充电子表格文件,该文件为217个模拟站点中的每个站点提供了单独的结果。

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