首页> 外文期刊>Astronomy and astrophysics >SOLAR-v: A new solar spectral irradiance dataset based on SOLAR/SOLSPEC observations during solar cycle 24
【24h】

SOLAR-v: A new solar spectral irradiance dataset based on SOLAR/SOLSPEC observations during solar cycle 24

机译:Solar-V:基于太阳能/溶胶的新的太阳光谱辐照度数据集24

获取原文
       

摘要

Context. Solar spectral irradiance (SSI) is the wavelength-dependent energy input to the top of the Earth’s atmosphere. Solar ultraviolet (UV) irradiance represents the primary forcing mechanism for the photochemistry, heating, and dynamics of the Earth’s atmosphere. Hence, both temporal and spectral variations in solar UV irradiance represent crucial inputs to the modeling and understanding of the behavior of the Earth’s atmosphere. Therefore, measuring the long-term solar UV irradiance variations over the 11-year solar activity cycle (and over longer timescales) is fundamental. Thus, each new solar spectral irradiance dataset based on long-term observations represents a major interest and can be used for further investigations of the long-term trend of solar activity and the construction of a homogeneous solar spectral irradiance record. Aims. The main objective of this article is to present a new solar spectral irradiance database (SOLAR-v) with the associated uncertainties. This dataset is based on solar UV irradiance observations (165?300 nm) of the SOLAR/SOLSPEC space-based instrument, which provides measurements of the full-disk SSI during solar cycle 24. Methods. SOLAR/SOLSPEC made solar acquisitions between April 5, 2008 and February 10, 2017. During this period, the instrument was affected by the harsh space environment that introduces instrumental trends (degradation) in the SSI measurements. A new method based on an adaptation of the Multiple Same-Irradiance-Level (MuSIL) technique was used to separate solar variability and any uncorrected instrumental trends in the SOLAR/SOLSPEC UV irradiance measurements. Results. A new method for correcting degradation has been applied to the SOLAR/SOLSPEC UV irradiance records to provide new solar cycle variability results during solar cycle 24. Irradiances are reported at a mean solar distance of 1 astronomical unit (AU). In the 165?242 nm spectral region, the SOLAR/SOLSPEC data agrees with the observations (SORCE/SOLSTICE) and models (SATIRE-S, NRLSSI 2) to within the 1-sigma error envelope. Between 242 and 300 nm, SOLAR/SOLSPEC agrees only with the models.
机译:语境。太阳光谱辐照度(SSI)是波长依赖性能量输入到地球大气层的顶部。太阳紫外线(UV)辐照度代表了地球大气层的光化学,加热和动态的主要迫使机制。因此,太阳能紫外线辐照度的时间和光谱变化代表了对地球大气行为的建模和理解的关键投入。因此,测量11年太阳能活动周期(和更长的时间尺度)的长期太阳能UV辐照度变化是根本的。因此,基于长期观测的每个新的太阳光谱辐照度数据集代表了主要兴趣,可用于进一步调查太阳能活动的长期趋势和均匀太阳光谱辐照度记录的构建。目标。本文的主要目标是提供具有相关不确定性的新的太阳光谱辐照数据库(Solar-V)。该数据集基于太阳能/索星基于空间仪器的太阳能UV辐照度观测(165?300nm),其在太阳循环24期间提供全盘SSI的测量。方法。太阳能/ Solspec在2008年4月5日和2017年2月10日之间制作了太阳能收购。在此期间,该仪器受到SSI测量中引入乐器趋势(退化)的恶劣空间环境的影响。基于多个相同辐照级(Musil)技术的适应性的一种新方法用于将太阳能变异性及太阳能/溶剂紫外线辐照度测量中的任何未校正的仪器趋势分开。结果。用于校正劣化的新方法已应用于太阳能/索尔公司紫外线辐照度记录,以提供新的太阳循环变化结果24.在1天文单位(AU)的平均太阳距离中报告了ARRADIACES。在165?242nm光谱区域中,太阳能/唯一的数据与观察(SORCE / SOLSTICE)和模型(SATIRE-S,NRLSSI 2)同意,以在1-Sigma误差包络内。在242到300 nm之间,太阳能/索尔斯普克仅同意模型。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号