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The sun's total and spectral irradiance for solar energy applications and solar radiation models

机译:太阳在太阳能应用和太阳辐射模型中的总辐射和光谱辐射

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摘要

Using the most recent composite time series of total solar irradiance spaceborne measurements, a solar constant value of 1366.1 Wm{sup}(-2) is confirmed, and simple quadratic expressions are proposed to predict its daily value from the Zurich sunspot number, the MgII index, or the 10.7 cm radio flux index. Whenever these three indices are available on a daily basis (since 1978), it is possible to predict the sun's irradiance within 0.1% on average, as accurately as current measurements. Based on this value of the solar constant, an improved approximation of the extraterrestrial solar spectrum from 0 to 1000μm is proposed. It is obtained by dividing the spectrum into nine bands and selecting representative (and recent) spectra, as well as appropriate scaling coefficients for each band. Comparisons with frequently used spectra are discussed, confirming previous findings of the literature. This synthetic and composite spectrum is proposed at 0.5-nm intervals in the UV (280-400 nm), 1-nm intervals between 0-280 and 400-1705 nm, 5-nm intervals between 1705 and 4000 nm, and progressively larger intervals beyond 4μm, for a total of 2460 wavelengths.
机译:使用最新的总太阳辐照度星载时间复合时间序列,可以确定太阳常数值为1366.1 Wm {sup}(-2),并提出了简单的二次表达式来根据苏黎世黑子数MgII预测其日值。指数或10.7厘米的无线电通量指数。只要这三个指数每天都可用(自1978年起),就有可能像当前测量值一样准确地平均预测太阳的辐照度在0.1%以内。基于该太阳常数值,提出了一种从0到1000μm的地外太阳光谱的改进近似值。通过将频谱划分为九个频段并选择代表性(和最近的)频谱以及每个频段的适当缩放系数,可以得到该值。讨论了与常用光谱的比较,证实了文献的先前发现。建议在UV(280-400 nm)中以0.5 nm的间隔,在0-280和400-1705 nm之间以1-nm的间隔,在1705和4000 nm之间以5 nm的间隔以及逐渐增大的间隔提议这种合成和复合光谱超过4μm,总共有2460个波长。

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