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Methane retrievals from Greenhouse Gases Observing Satellite (GOSAT) shortwave infrared measurements: Performance comparison of proxy and physics retrieval algorithms

机译:从温室气体观测卫星(GOSAT)短波红外测量中提取甲烷:代理和物理检索算法的性能比较

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摘要

We compare two conceptually different methods for determining methane column-averaged mixing ratios image from Greenhouse Gases Observing Satellite (GOSAT) shortwave infrared (SWIR) measurements. These methods account differently for light scattering by aerosol and cirrus. The proxy method retrieves a CO_2 column which, in conjunction with prior knowledge on CO_2 acts as a proxy for scattering effects. The physics-based method accounts for scattering by retrieving three effective parameters of a scattering layer. Both retrievals are validated on a 19-month data set using ground-based X_CH_4 at 12 stations of the Total Carbon Column Observing Network (TCCON), showing comparable performance: for the proxy retrieval we find station-dependent retrieval biases from −0.312% to 0.421% of X_CH_4 a standard deviation of 0.22% and a typical precision of 17 ppb. The physics method shows biases between −0.836% and −0.081% with a standard deviation of 0.24% and a precision similar to the proxy method. Complementing this validation we compared both retrievals with simulated methane fields from a global chemistry-transport model. This identified shortcomings of both retrievals causing biases of up to 1ings and provide a satisfying validation of any methane retrieval from space-borne SWIR measurements, in our opinion it is essential to further expand the network of TCCON stations.
机译:我们比较了两种从温室气体观测卫星(GOSAT)短波红外(SWIR)测量中确定甲烷塔平均混合比图像的概念不同的方法。这些方法对气溶胶和卷云的光散射有不同的解释。代理方法检索一个CO_2列,该列与有关CO_2的现有知识一起充当散射效果的代理。基于物理学的方法通过获取散射层的三个有效参数来解决散射问题。两次检索均在19个月的数据集上使用总碳柱观测网络(TCCON)的12个站的地面X_CH_4进行了验证,显示了可比的性能:对于代理检索,我们发现与站有关的检索偏差为-0.312%至X_CH_4的0.421%,标准偏差为0.22%,典型精度为17 ppb。物理方法显示的偏差在-0.836%至-0.081%之间,标准偏差为0.24%,其精度与代理方法相似。作为对该验证的补充,我们将两种取回方法与来自全球化学运输模型的模拟甲烷田进行了比较。这确定了两种回采的缺点,造成了高达1s的偏差,并提供了对星载SWIR测量中任何甲烷回采的令人满意的验证,在我们看来,进一步扩展TCCON台站网络至关重要。

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