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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Using the GOES Sounder to monitor upper level SO2 from volcanic eruptions
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Using the GOES Sounder to monitor upper level SO2 from volcanic eruptions

机译:使用测深仪监控上层二氧化硫从火山喷发

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This study explores the sensitivity of the Geostationary Operational Environmental Satellite (GOES) Sounder observations to atmospheric loadings of SO2.from volcanic eruptions. The GOES Sounder offers a more rapid refresh rate than similar instruments on board polar-orbiting satellites, such as the High-Resolution Infrared Radiation Sounder (HIRS) carried on the NOAA and MetOp spacecraft. One of the GOES Sounder's 19 channels is in an SO2 absorption band. Simulations demonstrate that this channel, centered at approximately 7.4 mm, when combined with other channels, can detect the presence of large amounts of SO2 (e.g., greater than 50 DU) in the upper atmosphere (e.g., above 8 km). The GOES Sounder can also provide upper limits of the amount of upper level SO2, provided the atmospheric altitude of the SO2 is known. The sensitivity is demonstrated on two volcanic eruptions of the Soufrière Hills Volcano on the island of Montserrat. Through use of the GOES Sounder measurements, the advection and rapid spreading of the plume are easily observed. Efforts to fully characterize the plume size and transport are hampered by the limited spatial coverage of the current GOES Sounder.
机译:本研究探索的敏感性地球同步运行环境卫星(去)测深仪观测大气载荷的SO2.from火山喷发。测深仪提供了一个更快速的刷新率类似的工具极轨卫星,如高分辨率红外辐射探测器(HIRS)进行了NOAA和MetOp飞船。渠道是二氧化硫吸收带。仿真证明该频道,集中在大约7.4毫米,当总和与其他渠道,可以检测的存在大量的二氧化硫(例如,大于50 DU)在高层大气中(例如,高于8公里)。探测器也可以提供的上限上层的二氧化硫,提供了大气SO2的高度。灵敏度是证明在两个火山火山喷发的Soufriere丘陵蒙特塞拉特岛。测深仪测量,平流和快速羽流的传播很容易观察到。充分描述柱尺寸和努力交通受阻有限的空间覆盖当前的测深仪。

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