首页> 外文学位 >Determination of the single scattering albedo and direct radiative forcing of biomass burning aerosol with data from the MODIS (Moderate Resolution Imaging Spectroradiometer) satellite instrument.
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Determination of the single scattering albedo and direct radiative forcing of biomass burning aerosol with data from the MODIS (Moderate Resolution Imaging Spectroradiometer) satellite instrument.

机译:利用来自MODIS(中等分辨率成像光谱辐射仪)卫星仪器的数据,确定燃烧生物质的气溶胶的单散射反照率和直接辐射强迫。

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摘要

Biomass burning aerosols absorb and scatter solar radiation and therefore affect the energy balance of the Earth-atmosphere system. The single scattering albedo (SSA), the ratio of the scattering coefficient to the extinction coefficient, is an important parameter to describe the optical properties of aerosols and to determine the effect of aerosols on the energy balance of the planet and climate. Aerosol effects on radiation also depend strongly on surface albedo. Large uncertainties remain in current estimates of radiative impacts of biomass burning aerosols, due largely to the lack of reliable measurements of aerosol and surface properties. In this work we investigate how satellite measurements can be used to estimate the direct radiative forcing of biomass burning aerosols. We developed a method using the critical reflectance technique to retrieve SSA from the Moderate Resolution Imaging Spectroradiometer (MODIS) observed reflectance at the top of the atmosphere (TOA). We evaluated MODIS retrieved SSAs with AErosol RObotic NETwork (AERONET) retrievals and found good agreements within the published uncertainty of the AERONET retrievals. We then developed an algorithm, the MODIS Enhanced Vegetation Albedo (MEVA), to improve the representations of spectral variations of vegetation surface albedo based on MODIS observations at the discrete 0.67, 0.86, 0.47, 0.55, 1.24, 1.64, and 2.12 μ-m channels. This algorithm is validated using laboratory measurements of the different vegetation types from the Amazon region, data from the Johns Hopkins University (JHU) spectral library, and data from the U.S. Geological Survey (USGS) digital spectral library. We show that the MEVA method can improve the accuracy of flux and aerosol forcing calculations at the TOA compared to more traditional interpolated approaches. Lastly, we combine the MODIS retrieved biomass burning aerosol SSA and the surface albedo spectrum determined from the MEVA technique to calculate TOA flux and aerosol direct radiative forcing over the Amazon region and compare it with Clouds and the Earth's Radiant Energy System (CERES) satellite results. The results show that MODIS based forcing calculations present similar averaged results compared to CERES, but MODIS shows greater spatial variation of aerosol forcing than CERES. Possible reasons for these differences are explored and discussed in this work. Potential future research based on these results is discussed as well.
机译:燃烧的生物质气溶胶吸收并散射太阳辐射,因此影响地球-大气系统的能量平衡。单一散射反照率(SSA)是散射系数与消光系数的比值,是描述气溶胶光学特性以及确定气溶胶对地球能量平衡和气候影响的重要参数。气溶胶对辐射的影响也强烈取决于表面反照率。当前对生物质燃烧气溶胶的辐射影响的估计仍存在很大的不确定性,这在很大程度上是由于缺乏可靠的气溶胶和表面特性测量方法。在这项工作中,我们研究了如何利用卫星测量来估算燃烧生物质气溶胶的直接辐射强迫。我们开发了一种使用临界反射率技术从中等分辨率成像光谱仪(MODIS)检索到的大气层顶部(TOA)反射率的SSA的方法。我们使用AErosol机器人网络(AERONET)检索评估了MODIS检索到的SSA,并在已发布的AERONET检索不确定性范围内找到了良好的协议。然后,我们基于MODIS在离散的0.67、0.86、0.47、0.55、1.24、1.64和2.12μm处的MODIS观测值,开发了一种算法MODIS增强植被反照率(MEVA),以改善植被表面反照率的光谱变化表示。渠道。使用来自亚马逊地区的不同植被类型的实验室测量,约翰霍普金斯大学(JHU)光谱库的数据以及美国地质调查局(USGS)数字光谱库的数据对这种算法进行了验证。我们表明,与更传统的插值方法相比,MEVA方法可以提高TOA处通量和气溶胶强迫计算的准确性。最后,我们将MODIS检索到的生物质燃烧气溶胶SSA与通过MEVA技术确定的表面反照率光谱相结合,计算出亚马逊地区的TOA通量和气溶胶直接辐射强迫,并将其与云和地球辐射能系统(CERES)卫星结果进行比较。结果表明,与CERES相比,基于MODIS的强迫计算具有相似的平均结果,但MODIS显示的气溶胶强迫比CERES更大。这些差异的可能原因在本工作中进行了探讨。还讨论了基于这些结果的潜在未来研究。

著录项

  • 作者

    Zhu, Li.;

  • 作者单位

    University of Maryland, Baltimore County.;

  • 授予单位 University of Maryland, Baltimore County.;
  • 学科 Climate Change.;Remote Sensing.;Atmospheric Sciences.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 191 p.
  • 总页数 191
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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