A Method of Correcting for Tilt from Horizontal in Downwelling Shortwave Irradiance Measurements on Moving Platforms

C. Long, A. Bucholtz, H. Jonsson, B. Schmid, A. Vogelmann, John Wood
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引用次数: 36

Abstract

The downwelling shortwave irradiance typically consists of both a direct component of radiation from the sun, and a diffuse component of scattered sunlight from the sky. Significant offsets can occur in downwelling shortwave irradiance measurements made from moving platforms due to the tilt of the instruments from horizontal which changes the angular orientation of the direct component of sunlight to the instrument and causes an artificial variation in the measured signal. To properly correct for this tilt, a-priori knowledge of the partitioning between the direct and diffuse components of the total shortwave irradiance is needed to properly apply a correction for tilt. This partitioning information can be adequately provided using a newly available commercial radiometer named the SPN1 that produces reasonable measurements of the total and diffuse shortwave irradiance (and by subtraction the direct shortwave irradiance) with no moving parts and regardless of azimuthal orientation. We have developed methodologies for determining the constant pitch and roll offsets of the radiometers for aircraft applications, and for applying a tilt correction to the total shortwave irradiance data. Results suggest that the methodology is accurate for tilt up to +/-10°, with 90% of the data corrected to within 10 Wm -2 at least for clear-sky data. Without a proper tilt correction, even data limited to 5° of tilt can still exhibit large errors, greater than 100 Wm -2 in some cases. Given the low cost, low weight, and low power consumption of the SPN1 total and diffuse radiometer, opportunities previously excluded for moving platform measurements such as small Unmanned Aerial Vehicles and solar powered buoys now become feasible using our methodology. The increase in measurement accuracy is important, given current concerns over long-term climate variability and change especially over the 70% of the Earth's surface covered by ocean where long-term records of these measurements are sorely needed and must be made on ships and buoys.
移动平台下井短波辐射测量中水平向倾斜的校正方法
下行短波辐照度通常由太阳辐射的直接成分和天空散射的阳光的漫射成分组成。在移动平台上进行的下行短波辐照度测量中,由于仪器从水平方向倾斜,从而改变了直射到仪器的阳光分量的角度方向,并导致测量信号的人为变化,因此可能出现明显的偏移。为了正确地校正这种倾斜,需要先验地了解总短波辐照度的直接分量和漫射分量之间的划分,以便正确地应用倾斜校正。这种划分信息可以用一种名为SPN1的新上市的商用辐射计充分提供,该辐射计可以合理地测量总和漫射短波辐照度(并通过减去直接短波辐照度),没有移动部件,也不考虑方位。我们已经开发了用于确定飞机应用的辐射计的恒定俯仰和滚转偏置的方法,以及对总短波辐照度数据应用倾斜校正的方法。结果表明,该方法在倾角为+/-10°的情况下是准确的,对于晴空数据,90%的数据至少校正到10 Wm -2以内。如果没有适当的倾斜校正,即使限制在5°倾斜的数据仍然会显示出很大的误差,在某些情况下大于100 Wm -2。考虑到SPN1总辐射计和漫射辐射计的低成本、低重量和低功耗,以前排除的移动平台测量机会,如小型无人机和太阳能浮标,现在使用我们的方法变得可行。考虑到目前对长期气候变率和变化的关注,特别是在70%的地球表面被海洋覆盖的情况下,迫切需要这些测量的长期记录,并且必须在船舶和浮标上进行记录,测量精度的提高是重要的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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