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Direct estimate of methane radiative forcing by use of nadir spectral radiances

机译:利用最低光谱辐射度直接估算甲烷的辐射强迫

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摘要

Direct determination of the radiative forcing of trace gases will be made possible by use of the next generation of nadir-looking spaceborne instruments that provide measurements of atmospheric radiances in the infrared spectral range with improved spectral and spatial resolution. An inversion statistical method has thus been developed and applied to the direct determination of the radiative forcing of methane, based on such instruments as the Fourier-transform Interferometric Monitor for Greenhouse Gases launched onboard the Japanese Advanced Earth Observing Satellite in 1996 and the Infrared Atmospheric Sounding Interferemeter planned for the EUropean polar platform Meteorological Operational Satellite in 2000. The method is based on simple statistical laws that directly relate the measured radiances to the radiative forcing by use of an a priori selection of appropriate spectral intervals and global modeling of methane spatial variations. This procedure avoids the use of an indirect deterruination based on an inversion process that requires precise knowledge of the methane vertical profiles throughout the troposphere. The overall accuracy and precision of this new algorithm are studied, and interfering gases and instrumental characteristics are taken into account. It is shown that radiative forcing can be determined at high horizontal spatial resolution with a precision better than 7% in cloud-free conditions and with well-known surface properties.
机译:通过使用下一代看似最低点的星载仪器,可以直接确定痕量气体的辐射强迫,这些仪器可以测量红外光谱范围内的大气辐射,并具有改善的光谱和​​空间分辨率。因此,基于1996年日本高级地球观测卫星上发射的温室气体的傅立叶变换干涉测量仪和红外大气探测等仪器,已经开发了一种反演统计方法并将其应用于直接确定甲烷的辐射强迫。计划于2000年为欧洲极地平台气象业务卫星设计干涉仪。该方法基于简单的统计定律,该定律通过使用先验选择合适的光谱区间和甲烷空间变化的全局模型,将测得的辐射度直接与辐射强迫相关联。该程序避免了基于反演过程的间接去污作用,反演过程需要精确了解整个对流层中甲烷的垂直剖面。研究了该新算法的整体精度和精确度,并考虑了干扰气体和仪器特性。结果表明,可以在高水平空间分辨率下以高于无云条件下7%的精度和众所周知的表面特性确定辐射强迫。

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