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Optical properties of subvisual cirrus clouds measured by the OSIRIS instrument.

机译:用OSIRIS仪器测量的亚目卷云的光学特性。

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摘要

Satellite-based measurements with limb viewing geometry give high-quality information about the atmosphere. However, low-altitude measurements are very sensitive to thin clouds, which act as a semi-reflective layer that can screen out the lower atmosphere and the earth's surface. The work described in this thesis demonstrates the ability to retrieve the optical properties of these clouds from observations of scattered sunlight by the OSIRIS instrument.;Cloud property retrievals are demonstrated that use SASKTRAN in an iterative retrieval technique. Assuming an effective cloud particle size, cloud particle number densities are retrieved that replicate the spectral measurements with very good accuracy. The effect of cloud properties on ozone and stratospheric aerosol retrievals is investigated. Systematic biases that result from neglecting cloud-particle scattering are discussed. Coincident measurements from another satellite instrument shows very good agreement with OSIRIS cloud properties.;Retrievals from satellite measurements require a radiative transfer model well-suited to the measurement geometry. For this reason the SASKTRAN model is used, which employs full spherical geometry. Since this model was not initially intended to model cloud-particle scattering, several sources for the light-scattering properties of ice crystals –{ from both first-principles algorithms and from in-cloud particle measurements – were incorporated. Also, since these properties violate several simplifying assumptions of the model, modifications to the model were required. With the work described in this thesis, SASKTRAN replicates in-cloud radiance measurements with high accuracy across the measured spectrum.
机译:基于卫星的肢体观察几何测量可以提供有关大气的高质量信息。但是,低空测量对薄云非常敏感,薄云起半反射层的作用,可以屏蔽低层大气和地球表面。本文所描述的工作证明了使用OSIRIS仪器从散射的阳光观测中检索这些云的光学特性的能力。;演示了在迭代检索技术中使用SASKTRAN进行云特性的检索。假设有效的云颗粒大小,可以获取云颗粒数量密度,从而非常准确地复制光谱测量结果。研究了云的性质对臭氧和平流层气溶胶回收的影响。讨论了由于忽略云粒子散射而导致的系统偏差。来自另一台卫星仪器的重合测量结果显示出与OSIRIS云特性非常吻合。;从卫星测量结果中检索,需要一个非常适合测量几何形状的辐射传输模型。因此,使用SASKTRAN模型,该模型采用完整的球形几何形状。由于此模型最初并非旨在对云粒子散射进行建模,因此,结合了冰晶的光散射特性的多种来源-{均来自第一性原理算法和云内粒子测量。而且,由于这些属性违反了模型的几个简化假设,因此需要对模型进行修改。通过本文中描述的工作,SAKSKRAN在整个被测光谱上以高精度复制了云内辐射度测量。

著录项

  • 作者

    Wiensz, J. Truitt.;

  • 作者单位

    The University of Saskatchewan (Canada).;

  • 授予单位 The University of Saskatchewan (Canada).;
  • 学科 Atmospheric Sciences.;Remote Sensing.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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