...
首页> 外文期刊>Applied optics >Remote sensing of aerosol plumes: a semianalytical model
【24h】

Remote sensing of aerosol plumes: a semianalytical model

机译:气溶胶羽流的遥感:一个半解析模型

获取原文
获取原文并翻译 | 示例

摘要

A semianalytical model, named APOM (aerosol plume optical model) and predicting the radiative effects of aerosol plumes in the spectral range [0.4, 2.5 mu m], is presented in the case of nadir viewing. It is devoted to the analysis of plumes arising from single strong emission events (high optical depths) such as fires or industrial discharges. The scene is represented by a standard atmosphere (molecules and natural aerosols) on which a plume layer is added at the bottom. The estimated at-sensor reflectance depends on the atmosphere without plume, the solar zenith angle, the plume optical properties (optical depth, single-scattering albedo, and asymmetry parameter), the ground reflectance, and the wavelength. Its mathematical expression as well as its numerical coefficients are derived from MODTRAN4 radiative transfer simulations. The DISORT option is used with 16 fluxes to provide a sufficiently accurate calculation of multiple scattering effects that are important for dense smokes. Model accuracy is assessed by using a set of simulations performed in the case of biomass burning and industrial plumes. APOM proves to be accurate and robust for solar zenith angles between 0 degrees and 60 degrees whatever the sensor altitude, the standard atmosphere, for plume phase functions defined from urban and rural models, and for plume locations that extend from the ground to a height below 3 km. The modeling errors in the at-sensor reflectance are on average below 0.002. They can reach values of 0.01 but correspond to low relative errors then (below 3% on average). This model can be used for forward modeling (quick simulations of multi/hyperspectral images and help in sensor design) as well as for the retrieval of the plume optical properties from remotely sensed images. (c) 2008 Optical Society of America.
机译:在天底观测的情况下,提出了一个半分析模型,称为APOM(气溶胶羽流光学模型),可预测光谱范围[0.4,2.5μm]中的气溶胶羽流的辐射效应。它专门用于分析由单个强发射事件(高光学深度)(例如火灾或工业排放)引起的羽流。场景以标准大气(分子和天然气溶胶)为代表,并在其底部添加了羽状层。估计的传感器反射率取决于没有烟羽的大气,太阳天顶角,烟羽光学特性(光学深度,单散射反照率和不对称参数),地面反射率和波长。它的数学表达式及其数值系数均来自MODTRAN4辐射传递模拟。 DISORT选项与16个通量一起使用,以提供足够精确的多重散射效应计算,这对于浓烟很重要。通过使用在生物质燃烧和工业羽流情况下执行的一组模拟来评估模型的准确性。无论传感器高度,标准大气如何,从城市和乡村模型定义的羽流相功能以及从地面延伸到低于地面高度的羽流位置,APOM都可在0度至60度之间的太阳天顶角上准确而可靠地运行3公里传感器反射率的建模误差平均低于0.002。它们可以达到0.01的值,但然后对应于较低的相对误差(平均低于3%)。该模型可用于正向建模(对多/高光谱图像进行快速仿真,并有助于传感器设计),还可用于从遥感图像中检索羽流光学特性。 (c)2008年美国眼镜学会。

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