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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >The role of the solar irradiance variability in the evolution of the middle atmosphere during 2004-2009
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The role of the solar irradiance variability in the evolution of the middle atmosphere during 2004-2009

机译:2004-2009年太阳辐照度变化在中间大气演化中的作用

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Recent measurements by the Spectral Irradiance Monitor (SIM) and the Solar Stellar Irradiance Comparison Experiment (SOLSTICE) onboard the Solar Radiation and Climate Experiment satellite have revealed the spectral solar irradiance (SSI) changes in the ultraviolet between 2004 and 2009 to be several times higher than it was shown by all previous SSI measurements and reconstructions. In this paper, we simulate the O3, OH, and temperature responses to solar irradiance variability using four different SSI data sets trying to define which one gives the best agreement between the simulated and observed responses. First, we apply the 1-D radiative-convective model with interactive photochemistry to determine the regions of the atmosphere where the O3, OH, and temperature are most sensitive to the spectrum discrepancies between the different SSI data sets. As the comparison with observations can be only made taking into account dynamics and all known forcings of the atmosphere, we then apply the 3-D chemistry-climate model SOCOL to simulate the atmosphere evolution from May 2004 to February 2009. We compare the modeled OH, O3, and temperature changes with atmospheric data measured by several space instruments. Overall, the comparison shows that the atmospheric changes simulated with the 3-D SOCOL model driven by the SIM and SOLSTICE SSI are closest to the atmospheric measurements.
机译:太阳辐射和气候实验卫星上的光谱辐照度监控器(SIM)和太阳恒星辐照度比较实验(SOLSTICE)最近进行的测量表明,2004年至2009年之间,紫外线的光谱太阳辐照度(SSI)变化要高出几倍。比以前所有SSI测量和重建所显示的要好。在本文中,我们使用四个不同的SSI数据集来模拟O3,OH和温度对太阳辐照度变化的响应,试图定义哪一个在模拟响应和观察到的响应之间具有最佳一致性。首先,我们将一维辐射对流模型与交互式光化学方法一起使用,以确定O3,OH和温度对不同SSI数据集之间的光谱差异最敏感的大气区域。由于仅在考虑动力学和所有已知的大气强迫的情况下才能与观测值进行比较,因此我们使用3-D化学-气候模型SOCOL来模拟2004年5月至2009年2月的大气演化。我们比较了模拟的OH ,O3和温度随数种太空仪器测得的大气数据而变化。总体而言,比较表明,由SIM和SOLSTICE SSI驱动的3-D SOCOL模型模拟的大气变化最接近大气测量值。

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