Satellite Aerosol Remote Sensing Over Land

Satellite Aerosol Remote Sensing Over Land pdf epub mobi txt 电子书 下载 2026

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出版者:
作者:Kokhanovsky, Alexander A./ De Leeuw, Gerrit
出品人:
页数:405
译者:
出版时间:2008-11
价格:$ 270.07
装帧:
isbn号码:9783540693963
丛书系列:
图书标签:
  • 遥感
  • 气溶胶
  • 卫星遥感
  • 陆地
  • 大气科学
  • 地球科学
  • 环境监测
  • 光学遥感
  • 数据处理
  • 大气辐射
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具体描述

The book opens with a description of aerosol retrievals from satellite radiometers and then looks at the 12-year record of global aerosol properties from Along-track Scanning Radiometer (ATSR-2) and Advanced Along-track Scanning Radiometer (AATSR). The dual view of the latter allows for the accurate retrieval of aerosol properties over land and algorithms have been developed using these two views to eliminate the influence of the land surface reflectance on the top of the atmosphere radiation. The third chapter shows how the algorithm uses the AATSR IR and visible wavebands for cloud detection and the visible and NIR wavebands for aerosol retrieval and the consequent determination of the aerosol optical depth at various wavelengths and the dominant aerosol types. The results are then compared with independent data: sun photometers and, when available, aerosol composition. Chapters 4 and 5 consider the retrieval of aerosol optical thickness and particulate matter concentration over land using MERIS and iterative aerosol retrieval technique applied to MERIS top-of-atmosphere radiance measurements. These are followed by a chapter evaluating the global aerosol properties in the MODerate Resolution Imaging Spectro-radiometer (MODIS) collection 5 products. Chapter 7 covers the optimal estimation applied to multi-angle and multi-spectral data for the joint retrieval of the aerosol load and surface reflectance. This method provides a rigorous mathematical framework to combine satellite data, prior information on the observed system, and the modelling representation of that system. A detailed analysis of the error covariance matrix is shown together with comparisons against AERONET observations. The work is based on the analysis of METEOSAT images, which have high repetition rate and known from TV broadcasts of cloud systems by different weather services. One of aims of this book is to facilitate the introduction of chemical weather analysis (aerosols, gases, air quality indices) in the standard set of meteorological observations from a satellite. The following chapter summarizes and discusses the benefits and limitations of synergetic aerosol retrieval and its application to SCIAMACHY data while chapter 9 looks towards an Aerosol Optical Depth (AOD) climatology by combining the strengths of different remote sensing techniques. The author of this chapter explains that the overall goal is to combine individual strengths of different statistics into an AOD data-set which is superior to any single AOD retrieval in accuracy as well as spatial and temporal coverage, following the concept of combining superior retrieval choices based on statistical analysis (e.g. bias, error) compared to quality references by statistics from ground sun-photometry, into single satellite retrieval composites. The book ends with a study of aerosol optical depth and air mass mapping with satellite multi-angle imaging and presents some of the latest results of the NASA Earth Observing System's Multi-angle Imaging SpectroRadiometer (MISR) aerosol amount and type mapping. MISR is considered to be the best suited instrument for satellite aerosol research at the moment (at least for cloud free conditions). In addition to several spectral channels it has a multi-view capability, which enables retrievals over highly reflective ground including bright surfaces such as deserts, where the major aerosol sources are located.

该书《Satellite Aerosol Remote Sensing Over Land》旨在为研究者和实践者提供全面且深入的知识体系,主要围绕遥感技术与地球表面尘埃监测相结合的最新进展展开。内容涵盖了从基本原理到实际应用的多个层面,详细探讨了卫星平台在大气颗粒监测中的作用及其重要性。这本书系统地介绍了各种遥感传感器和技术手段,如激光雷达、多光谱成像和高分辨率影像等,解析它们如何在不同环境条件下捕捉大气中细微的颗粒变化。 书中不仅详述了这些技术的基础理论,还深入分析了数据处理与分析方法,包括如何从复杂的遥感数据中提取出可靠的颗粒信息。对研究人员而言,这一部分提供了丰富的案例研究,展示了不同卫星平台和传感器在实际监测中的应用效果,从而为科学家理解气候变化与大气污染之间的关系奠定基础。 书中还特别关注了地表尘埃动态的建模和预测,通过结合多源数据进行综合分析,帮助读者掌握当前主流的研究方法和最新技术创新。这些内容对于需要从宏观到微观层面理解大气颗粒分布与影响的人士,都具有重要的参考价值。此外,该书还强调了数据可视化与处理工具的介绍,使用户能够更直观地解读复杂的遥感信息,从而提升研究效率和成果质量。 整体而言,这本书通过系统、深入的内容安排,全面覆盖了遥感技术在尘埃监测领域的发展现状及未来趋势,使其成为一套宝贵的学术参考资料。无论是初学者还是专业研究人员,都能够从中获得有价值的知识和实用技巧,助力他们应对环境监测与气候变化研究中的挑战。 这个书的深度和广度体现了其对于该领域的重要性,不仅帮助读者理解理论框架,还提供了丰富的实例与工具,使其在实际操作中能更加灵活、精准地应用这些知识。这样的内容结构,无疑对推动相关科学研究具有积极影响。通过详细的章节设计,作者成功地将复杂的技术信息转化为易于理解和应用的资源,满足了专业读者对深度与广度并重的需求。

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