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High spatial resolution imaging of methane and other trace gases with the airborne Hyperspectral Thermal Emission Spectrometer (HyTES)

机译:甲烷和其他痕量气体的高空间分辨率成像与空中高光谱热发射光谱仪(HYTES)

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Currently large uncertainties exist associated with the attribution and quantification of fugitive emissions of criteria pollutants and greenhouse gases such as methane across large regions and key economic sectors. In this study, data from the airborne Hyperspectral Thermal Emission Spectrometer?(HyTES) have been used to develop robust and reliable techniques for the detection and wide-area mapping of emission plumes of methane and other atmospheric trace gas species over challenging and diverse environmental conditions with high spatial resolution that permits direct attribution to sources. HyTES is a pushbroom imaging spectrometer with high spectral resolution (256 bands from 7.5 to 12?μm), wide swath (12?km), and high spatial resolution (~?2?m at 1?km altitude) that incorporates new thermal infrared?(TIR) remote sensing technologies. In this study we introduce a hybrid clutter matched filter?(CMF) and plume dilation algorithm applied to HyTES observations to efficiently detect and characterize the spatial structures of individual plumes of CH4, H2S, NH3, NO2, and SO2 emitters. The sensitivity and field of regard of HyTES allows rapid and frequent airborne surveys of large areas including facilities not readily accessible from the surface. The HyTES CMF algorithm produces plume intensity images of methane and other gases from strong emission sources. The combination of high spatial resolution and multi-species imaging capability provides source attribution in complex environments. The CMF-based detection of strong emission sources over large areas is a fast and powerful tool needed to focus on more computationally intensive retrieval algorithms to quantify emissions with error estimates, and is useful for expediting mitigation efforts and addressing critical science questions.
机译:目前存在大的不确定因素与污染物污染物和温室气体等标准污染物和温室气体的逃逸排放相关的归因和定量相关的存在相关性。在本研究中,来自空中高光谱热发射光谱仪的数据(Hytes)已被用于开发稳健且可靠的技术,用于对甲烷和其他大气痕量气体物种的排放羽毛和其他大气痕量气体物种过度挑战和多样化的环境条件的鲁棒和广域映射具有高空间分辨率,允许直接归因于来源。 Hytes是一种高频谱分辨率的推动式成像光谱仪(从7.5至12Ωμm的256条带),宽的条子(12Ωkm)和高空间分辨率(〜?2?m处为1 km高度),其中包含新的热红外线?(TIR)遥感技术。在这项研究中,我们介绍了一种混合杂交匹配过滤器?(CMF)和羽流扩张算法应用于Hytes观察,以有效地检测和表征各个羽毛的单独羽毛的空间结构,H2S,NH 3,NO2和SO2发射器的空间结构。 Hytes的敏感性和领域允许快速和频繁的大区域的空气载发,包括不易从表面易于访问的设施。 Hytes CMF算法从强发射源产生甲烷和其他气体的羽量强度图像。高空间分辨率和多种成像能力的组合在复杂环境中提供了源归因。基于CMF的大区域的强发射源检测是一个快速而强大的工具,需要专注于更加计算密集的检索算法来量化错误估计的排放,并且可用于加速缓解努力并解决关键科学问题。
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