首页> 外文期刊>Atmospheric Measurement Techniques >New-generation NASA Aura Ozone Monitoring Instrument (OMI) volcanic SOsub2/sub dataset: algorithm description, initial results, and continuation with the Suomi-NPP Ozone Mapping and Profiler Suite (OMPS)
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New-generation NASA Aura Ozone Monitoring Instrument (OMI) volcanic SOsub2/sub dataset: algorithm description, initial results, and continuation with the Suomi-NPP Ozone Mapping and Profiler Suite (OMPS)

机译:新一代NASA Aura臭氧监测仪(OMI)火山SO 2 数据集:算法描述,初步结果以及Suomi-NPP臭氧测绘仪套件(OMPS)的延续

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Since the fall of 2004, the Ozone Monitoring Instrument (OMI) has been providing global monitoring of volcanic SOsub2/sub emissions, helping to understand their climate impacts and to mitigate aviation hazards. Here we introduce a new-generation OMI volcanic SOsub2/sub dataset based on a principal component analysis (PCA) retrieval technique. To reduce retrieval noise and artifacts as seen in the current operational linear fit (LF) algorithm, the new algorithm, OMSO2VOLCANO, uses characteristic features extracted directly from OMI radiances in the spectral fitting, thereby helping to minimize interferences from various geophysical processes (e.g., Osub3/sub absorption) and measurement details (e.g., wavelength shift). To solve the problem of low bias for large SOsub2/sub total columns in the LF product, the OMSO2VOLCANO algorithm employs a table lookup approach to estimate SOsub2/sub Jacobians (i.e., the instrument sensitivity to a perturbation in the SOsub2/sub column amount) and iteratively adjusts the spectral fitting window to exclude shorter wavelengths where the SOsub2/sub absorption signals are saturated. To first order, the effects of clouds and aerosols are accounted for using a simple Lambertian equivalent reflectivity approach. As with the LF algorithm, OMSO2VOLCANO provides total column retrievals based on a set of predefined SOsub2/sub profiles from the lower troposphere to the lower stratosphere, including a new profile peaked at 13 ?km for plumes in the upper troposphere. Examples given in this study indicate that the new dataset shows significant improvement over the LF product, with at least 50?% reduction in retrieval noise over the remote Pacific. For large eruptions such as Kasatochi in 2008 (~?1700?kt total SOsub2/sub) and Sierra Negra in 2005 (&?1100?DU maximum SOsub2/sub), OMSO2VOLCANO generally agrees well with other algorithms that also utilize the full spectral content of satellite measurements, while the LF algorithm tends to underestimate SOsub2/sub. We also demonstrate that, despite the coarser spatial and spectral resolution of the Suomi National Polar-orbiting Partnership (Suomi-NPP) Ozone Mapping and Profiler Suite (OMPS) instrument, application of the new PCA algorithm to OMPS data produces highly consistent retrievals between OMI and OMPS. The new PCA algorithm is therefore capable of continuing the volcanic SOsub2/sub data record well into the future using current and future hyperspectral UV satellite instruments.
机译:自2004年秋季以来,臭氧监测仪(OMI)一直在提供火山SO 2 排放的全球监测,以帮助了解其气候影响并减轻航空危害。在此,我们介绍基于主成分分析(PCA)检索技术的新一代OMI火山SO 2 数据集。为了减少当前操作线性拟合(LF)算法中看到的检索噪声和伪像,新算法OMSO2VOLCANO使用了直接从光谱拟合中的OMI辐射中提取的特征,从而有助于最大程度地减少来自各种地球物理过程的干扰(例如, O 3 吸收)和测量详细信息(例如波长偏移)。为了解决LF产品中大SO 2 总列的低偏差问题,OMSO2VOLCANO算法采用表查找方法来估计SO 2 雅可比矩阵(即仪器对SO 2 列数量的扰动的灵敏度),并迭代地调整光谱拟合窗口,以排除SO 2 吸收信号饱和的较短波长。首先,使用简单的朗伯等效反射率方法考虑了云层和气溶胶的影响。与LF算法一样,OMSO2VOLCANO基于一组预定义的SO 2 剖面图(从对流层下部到平流层下部)提供总的列检索,其中包括一个新的剖面图,该剖面在13?km处达到峰值,用于上部羽流对流层。这项研究给出的例子表明,新的数据集显示出对低频产品的显着改善,在偏远的太平洋上,检索噪声至少降低了50%。对于大型喷发,例如2008年的Kasatochi(总SO 2 〜1700?kt)和2005年的Neerra Negra(最大SO 2 DU> 1100?DU),OMSO2VOLCANO通常与其他也利用卫星测量的全部频谱内容的算法非常吻合,而LF算法往往会低估SO 2 。我们还证明,尽管Suomi国家极地轨道伙伴关系(Suomi-NPP)臭氧作图和廓线仪套件(OMPS)仪器的空间和光谱分辨率较粗,但将新PCA算法应用于OMPS数据仍可在OMI之间获得高度一致的检索结果和OMPS。因此,新的PCA算法能够使用当前和将来的高光谱UV卫星仪器将火山SO 2 数据记录很好地延续到未来。

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