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A new scheme for sulphur dioxide retrieval from IASI measurements: application to the Eyjafjallaj?kull eruption of April and May 2010

机译:IASI测量中二氧化硫检索的新方案:应用于Eyjafjallaj的应用?克尔爆发4月和2010年5月

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A new optimal estimation algorithm for the retrieval of sulphur dioxide (SO2) has been developed for the Infrared Atmospheric Sounding Interferometer (IASI) using the channels between 1000–1200 and 1300–1410 cm?1. These regions include the two SO2 absorption bands centred at about 8.7 and 7.3 m (the 1 and 3 bands respectively). The retrieval assumes a Gaussian SO2 profile and returns the SO2 column amount in Dobson units and the altitude of the plume in millibars (mb). Forward modelled spectra (against which the measurements are compared) are based on the Radiative Transfer for TOVS (RTTOV) code. In our implementation RTTOV uses atmospheric profiles from European Centre for Medium-Range Weather Forecasts (ECMWF) meteorological data. The retrieval includes a comprehensive error budget for every pixel derived from an error covariance matrix that is based on the SO2-free climatology of the differences between the IASI and forward modelled spectra. The IASI forward model includes the ability to simulate a cloud or ash layer in the atmosphere. This feature is used to illustrate that: (1) the SO2 retrieval is not affected by underlying cloud but is affected if the SO2 is within or below a cloud layer; (2) it is possible to discern if ash (or other atmospheric constituents not considered in the error covariance matrix) affects the retrieval using quality control based on the fit of the measured spectrum by the forward modelled spectrum. In this work, the algorithm is applied to follow the behaviour of SO2 plumes from the Eyjafjallaj?kull eruption during April and May 2010. From 14 April to 4 May (during Phase I and II of the eruption) the total amount of SO2 present in the atmosphere, estimated by IASI measurements, is generally below 0.02 Tg. During the last part of the eruption (Phase III) the values are an order of magnitude higher, with a maximum of 0.18 Tg measured on the afternoon of 7 May.
机译:使用1000-1200至1300-1410cm的通道为红外大气探测干涉仪(IASI)开发了一种新的二氧化硫(SO2)的新的最佳估计算法。这些区域包括以约8.7和7.3M(分别为1和3带)为中心的两个SO2吸收带。检索验证了高斯SO2配置文件,并返回ODBSON单元中的SO2列金额以及毫巴(MB)中的羽流的高度。前向建模的光谱(测量比较测量)基于TOVS(RTTOV)代码的辐射传输。在我们的实施中,RTTOV使用欧洲中距离预测(ECMWF)气象数据的大气配置文件。检索包括用于从错误协方差矩阵导出的每个像素的全面错误预算,该矩阵基于IASI和前向建模的光谱之间的差异的无差异。 IASI前瞻性模型包括模拟大气中云层或灰分层的能力。此功能用于说明:(1)SO2检索不受底层云影响但是如果SO2在云层内或低于云层之下,则​​影响; (2)可以辨别如果通过前向建模频谱基于测量光谱的拟合,则可以辨别出使用质量控制的检索。在这项工作中,算法应用于遵循Eyjafjallaj的SO2羽毛的行为在4月和2010年5月期间。4月14日至4月1日(在爆发期间,爆发期间)所出现的SO2总量由IASI测量估计的大气通常低于0.02 Tg。在喷发的最后一部分(III阶段)期间,值的数量级较高,最多在7月7日下午测量0.18 Tg。

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