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Retrieving Decadal Climate Change from Satellite Radiance Observations—A 100-year CO2 Doubling OSSE Demonstration

机译:从卫星辐射观测中获取年代际气候变化——100年二氧化碳排放量两倍于OSSE示范

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摘要

Preparing for climate change depends on the observation and prediction of decadal trends of the environmental variables, which have a direct impact on the sustainability of resources affecting the quality of life on our planet. The NASA Climate Absolute Radiance and Refractivity Observatory (CLARREO) mission is proposed to provide climate quality benchmark spectral radiance observations for the purpose of determining the decadal trends of climate variables, and validating and improving the long-range climate model forecasts needed to prepare for the changing climate of the Earth. The CLARREO will serve as an in-orbit, absolute, radiometric standard for the cross-calibration of hyperspectral radiance spectra observed by the international system of polar operational satellite sounding sensors. Here, we demonstrate that the resulting accurately cross-calibrated polar satellite global infrared spectral radiance trends (e.g., from the Metop IASI instrument considered here) can be interpreted in terms of temperature and water vapor profile trends. This demonstration is performed using atmospheric state data generated for a 100-year period from 2000–2099, produced by a numerical climate model prediction that was forced by the doubling of the global average atmospheric CO over the 100-year period. The vertical profiles and spatial distribution of temperature decadal trends were successfully diagnosed by applying a linear regression profile retrieval algorithm to the simulated hyperspectral radiance spectra for the 100-year period. These results indicate that it is possible to detect decadal trends in atmospheric climate variables from high accuracy all-sky satellite infrared radiance spectra using the linear regression retrieval technique.
机译:为气候变化做准备取决于对环境变量的十年趋势的观察和预测,这直接影响影响地球生命质量的资源的可持续性。提议设立NASA气候绝对辐射率和折射率观测站(CLARREO),以提供气候质量基准光谱辐射率观测值,以确定气候变量的年代际趋势,并验证和改进为气候变化做出准备所需的长期气候模型预报。不断变化的地球气候。 CLARREO将作为国际上的极地操作卫星探测传感器系统观测到的高光谱辐射光谱交叉校准的在轨绝对辐射标准。在这里,我们证明了可以根据温度和水蒸气剖面趋势来解释所产生的精确交叉校准的极地卫星全球红外光谱辐射率趋势(例如,从此处考虑的Metop IASI仪器中获得)。此演示是使用2000-2099年的100年期间生成的大气状态数据进行的,该数据是由数值气候模型预测得出的,该预测是由于100年内全球平均大气CO倍增而产生的。通过将线性回归轮廓检索算法应用于模拟的100年高光谱辐射光谱,成功诊断了温度年代际趋势的垂直剖面和空间分布。这些结果表明,可以使用线性回归检索技术从高精度全天卫星红外辐射光谱中检测大气气候变量的年代际趋势。

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