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An automated fog monitoring system for the Indo-Gangetic Plains based on satellite measurements

机译:基于卫星测量的印度恒河平原自动雾监测系统

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Fog is a meteorological phenomenon that causes reduction in regional visibility and affects air quality, thus leading to various societal and economic implications, especially disrupting air and rail transportation. The persistent and widespread winter fog impacts the entire the Indo-Gangetic Plains (IGP), as frequently observed in satellite imagery. The IGP is a densely populated region in south Asia, inhabiting about 1/6th of the world's population, with a strong upward pollution trend. In this study, we have used multi-spectral radiances and aerosol/cloud retrievals from Terra/Aqua MODIS data for developing an automated web-based fog monitoring system over the IGP. Using our previous and existing methodologies, and ongoing algorithm development for the detection of fog and retrieval of associated microphysical properties (e.g. fog droplet effective radius), we characterize the widespread fog detection during both daytime and nighttime. Specifically, for the night time fog detection, the algorithm employs a satellite-based bi-spectral brightness temperature difference technique between two spectral channels: MODIS band-22 (3.9μm) and band-31 (10.75μm). Further, we are extending our algorithm development to geostationary satellites, for providing continuous monitoring of the spatial-temporal variation of fog. We anticipate that the ongoing and future development of a fog monitoring system would be of assistance to air, rail and vehicular transportation management, as well as for dissemination of fog information to government agencies and general public.
机译:雾是一种气象现象,导致区域能见度下降,并影响空气质量,从而导致各种社会和经济影响,尤其是破坏航空和铁路运输。正如卫星影像中经常观察到的那样,持续且广泛的冬季雾影响了整个印度恒河平原(IGP)。 IGP是南亚人口稠密的地区,人口约占世界人口的1/6,并且有强烈的上升趋势。在这项研究中,我们已使用Terra / Aqua MODIS数据中的多光谱辐射度和气溶胶/云数据检索来开发基于IGP的基于Web的自动化雾监测系统。使用我们之前和现有的方法,以及正在进行的用于检测雾和检索相关微物理特性(例如雾滴有效半径)的算法开发,我们可以表征白天和晚上广泛的雾检测。具体来说,对于夜间雾气检测,该算法在两个光谱通道之间采用了基于卫星的双光谱亮度温差技术:MODIS 22波段(3.9μm)和31波段(10.75μm)。此外,我们正在将算法开发扩展到对地静止卫星,以提供对雾的时空变化的连续监视。我们预计雾监测系统的持续和未来发展将对航空,铁路和车辆运输管理以及向政府机构和公众传播雾信息提供帮助。

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