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首页> 外文期刊>International Journal of Biometeorology: Journal of the International Society of Biometeorology >Estimating mean monthly incident solar radiation on horizontal and inclined slopes from mean monthly temperatures extremes
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Estimating mean monthly incident solar radiation on horizontal and inclined slopes from mean monthly temperatures extremes

机译:根据月平均极端温度估算水平和倾斜坡度上的平均每月入射太阳辐射

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摘要

Although satellite-borne sensors are now available to estimate cloud cover and incoming short-wave radiation across the Earth's surface, the study of climatic variation and its impact on terrestrial and marine ecosystems involves historical analyses of data from networks of weather stations that only record extremes in temperatures and precipitation on a daily basis. Similarly, when projections are made with global atmospheric circulation models, the spatial resolution of predicted radiation is too coarse to incorporate the effects of heterogeneous topography. In this paper, we review the development and set forth a set of general equations that allow both diffuse and direct solar radiation to be estimated for each month on the basis of mean daily maximum and minimum temperatures, latitude, elevation, slope, and aspect. Adjustments for differences in slope, aspect, and elevation are made by varying the fraction of diffuse and direct solar beam radiation. To test the equations on various slopes and under different climatic conditions, we drew on highquality radiation data recorded at a number of sites on three continents. On horizontal surfaces the set of equations predicted both direct and diffuse components of solar radiation within 1%-7% of recorded values. On slopes, estimates of monthly mean solar radiation were with 13% of observed values with a mean error of less than 2 MJ m~(-2)day~(-1) over any given month.
机译:尽管现在可以使用星载传感器来估计整个地球表面的云量和短波辐射,但是对气候变化及其对陆地和海洋生态系统影响的研究涉及对气象站网络数据的历史分析,这些数据仅记录了极端情况每天的温度和降水。同样,当使用全球大气环流模型进行投影时,预测辐射的空间分辨率太粗糙而无法吸收异质地形的影响。在本文中,我们回顾了这一发展过程,并提出了一组通用方程式,这些方程式可根据平均每日最高和最低温度,纬度,海拔,坡度和纵横比估算每月的漫射和直接太阳辐射。通过改变漫射和直接太阳光束辐射的比例来调整坡度,纵横比和高程的差异。为了测试在不同坡度和不同气候条件下的方程,我们借鉴了在三大洲许多站点记录的高质量辐射数据。在水平表面上,这组方程式预测太阳辐射的直接分量和扩散分量都在记录值的1%-7%之内。在斜坡上,每月平均太阳辐射的估计值为观测值的13%,在任何给定月份的平均误差小于2 MJ m〜(-2)day〜(-1)。

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