The evaluation of four different diffuse radiation correction models applied to shadow ring measurements for Beer Sheva, Israel

A. Kudish, Efim G. Evseev
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Abstract

The measurement of the horizontal diffuse radiation, a priori a straightforward task, is fraught with difficulties. It is possible to measure the diffuse radiation by both direct and indirect methods. The most accurate method is probably the indirect one, which utilizes concurrent measurements of the horizontal global and the normal incidence beam radiation. The disadvantage of this method is the relatively expensive tracking system required for measuring the latter. The diffuse radiation can be measured directly with a pyranometer outfitted with either an occulting disk or shadow ring, which prevent the beam radiation from impinging on the pyranometer sensor. The former method can provide accurate measurements of the diffuse radiation but requires a relatively expensive sun tracking system in the east-west axis. The shadow ring is a stationary device with regard to the east-west axis and blocks the beam radiation component by creating a permanent shadow on the pyranometer sensor. The disadvantage of the shadow ring is that it also blocks a portion of the sky, which necessitates a geometrical correction factor. There is also a need to correct for anisotropic sky conditions. Four correction models have been applied to the data and the results evaluated and ranked.
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四种不同的漫射辐射校正模型在以色列比尔谢瓦阴影环测量中的应用评估
水平漫射辐射的测量原本是一项直截了当的任务,但却充满了困难。用直接法和间接法都可以测量漫射辐射。最精确的方法可能是间接方法,它利用水平总辐射和入射光束辐射的同时测量。这种方法的缺点是测量后者所需的跟踪系统相对昂贵。漫射辐射可以直接用装有掩星盘或阴影环的热辐射计测量,以防止光束辐射撞击热辐射计传感器。前一种方法可以提供精确的漫射辐射测量,但需要一个相对昂贵的太阳跟踪系统在东西轴。阴影环是关于东西轴的固定装置,并且通过在热辐射计传感器上创建永久阴影来阻挡光束辐射组件。阴影环的缺点是它也遮挡了天空的一部分,这就需要几何校正因子。还需要校正各向异性的天空条件。对数据进行了四种修正模型,并对结果进行了评价和排序。
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