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A physical rationale for generalized Angstroem-Prescott regression

机译:广义Angstroem-Prescott回归的物理原理

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The transparency of the terrestrial atmosphere has been related to the relative sunshine duration ever since the seminal work of Angstrom [Angstrom, A., 1924. Solar and terrestrial radiation. Q. J. Roy. Meteor. Soc. 50, 121-126]. Modified by Prescott [Prescott, J.A., 1940. Evaporation from water surface in relation to solar radiation. Trans. Roy. Soc. Austr. 40, 114-116], linear Angstrom-Prescott regression has seen world-wide application in investigations concerned with solar irradiance of the surface at specific sites. Extensions of the linear formula to higher orders have been suggested as better suited in certain cases. A drawback of this kind of regressional modeling has been the lack of a clear link between the empirical formulae and the theory of radiative transfer. The coefficients involved are usually interpreted on an ad hoc basis. In the present work, a rationale for deriving and interpreting a polynomial relation between ground-level solar irradiance and relative sunshine duration is proposed.
机译:自从埃格斯特罗姆[Angstrom,A.,1924.太阳和陆地辐射的开创性工作]以来,陆地大气的透明度一直与相对日照时间有关。问:罗伊。流星。 Soc。 50,121-126]。由Prescott修改[Prescott,J.A.,1940年。与太阳辐射有关的水面蒸发。反式罗伊Soc。 Austr。 40,114-116],线性Angstrom-Prescott回归已在涉及特定位置表面太阳辐照度研究的世界范围内得到应用。有人建议将线性公式扩展为更高阶,从而更适合某些情况。这种回归模型的缺点是经验公式与辐射传输理论之间缺乏明确的联系。涉及的系数通常是临时性的。在目前的工作中,提出了推论和解释地面日照强度与相对日照时间之间的多项式关系的原理。

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