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Atmospheric ozone and sulfur dioxide from satellite measurements of backscattered ultraviolet light.

机译:卫星测量后向散射紫外线产生的大气臭氧和二氧化硫。

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摘要

An iterative method of estimating total atmospheric O₃ and SO₂ is developed for currently available satellite measurements of backscattered ultraviolet (uv) radiation. This method utilizes a direct inversion of the equation of radiative transfer by using a first order Taylor expansion of this equation with respect to a guessed combination of total O₃ and total SO₂. A new guess is made so as to minimize the difference between the measurements and theoretically calculated values. This method is able to model an atmosphere with molecular scattering or one with scattering by both molecules and particulates. A sensitivity analysis is presented and, in the case of a molecular atmosphere, the errors in retrieved total O₃ are on the order of 20% and for total SO₂ are 25%. Estimates can be performed for an atmosphere containing both molecular scatters and particulate scatters for scattering angles of 110°-150°. In the case of volcanic ash and SO₂ mixed within the stratospheric eruption cloud, retrieval errors for these angles are within the same range as those of the molecular only atmosphere if: the index of refraction of the ash is known to within a factor of 1.5 and the mean radius is also known to within a factor of 2. Application of this method to total ozone measuring spectrometer (TOMS) Nimbus 7 data for scans of a volcanic cloud show the total O₃ amount within the cloud to be noticeably lower than those of positions out of the cloud. This is consistent with the results of others.
机译:已经开发出一种估算总大气中O 3和SO 2的迭代方法,以用于目前可用的反散射紫外线(uv)辐射的卫星测量。这种方法是利用辐射传递方程式的直接反演,该方程式是相对于总O 3和总SO 2的推测组合使用一阶泰勒展开式。进行新的猜测,以最小化测量值和理论计算值之间的差异。该方法能够模拟一种具有分子散射或一种具有分子和微粒散射的气氛。给出了灵敏度分析,在分子气氛的情况下,回收的总O 3的误差约为20%,而总SO 2的误差为25%。可以针对包含110°-150°散射角的分子散射和颗粒散射的气氛进行估算。在平流层喷发云中混合火山灰和SO 2的情况下,如果满足以下条件,则这些角度的恢复误差与仅分子大气的恢复误差在相同范围内:已知灰分的折射率在1.5的范围内,并且平均半径也已知在2倍以内。将该方法应用于总臭氧测量光谱仪(TOMS)Nimbus 7的火山云扫描数据表明,云中的总O₃量明显低于位置在云端。这与其他人的结果是一致的。

著录项

  • 作者

    Flittner David Edward.;

  • 作者单位
  • 年度 1994
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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