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首页> 外文期刊>Journal of the Meteorological Society of Japan >CO2 Retrieval Using Thermal Infrared Radiation Observation by Interferometric Monitor for Greenhouse Gases (IMG) Onboard Advanced Earth Observing Satellite (ADEOS)
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CO2 Retrieval Using Thermal Infrared Radiation Observation by Interferometric Monitor for Greenhouse Gases (IMG) Onboard Advanced Earth Observing Satellite (ADEOS)

机译:使用干涉仪监测热红外辐射,通过先进的地球观测卫星(ADEOS)上的温室气体(IMG)进行CO2检索

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CO2 concentrations in the upper troposphere were retrieved from thermal infrared spectra as observed by the only spaceborne hyperspectral sounder launched in the 1990s: the Interferometric Monitor for Greenhouse gases (IMG) onboard the Advanced Earth Observing Satellite (ADEOS). First, the effective optical path difference of the IMG was evaluated because the actual instrumental line shape function of the interferometer component has not been evaluated for technical reasons in the orbit. The CO2 retrieval method was based on the maximum a posteriori (MAP) retrieval method and on procedures to decrease errors that obstruct CO2 signal detection. For the retrieval analysis, ERA-40 re-analysis meteorological data were used as temperature field data. A method of selecting effective channels for CO2 retrieval was used to remove channels with a high temperature dependency and to reduce errors in estimating the water vapor, ozone, and surface temperature. Furthermore, uncertainties in temperature and other error factors, which cannot be removed through channel selection, were evaluated and optimized by treating them as components of measurement errors in the MAP retrieval. CO2 retrieval noises of the MAP retrieval were estimated as 2.5 % and 2.0 % at pressure levels of 500 and 300 hPa, respectively. CO2 concentrations retrieved from IMG data were compared with aircraft measurement data. Results showed that the random error in the IMG retrieval was smaller than that estimated as the a posteriori error of the MAP retrieval. No significant biases were shown compared with the margin of random errors. The CO2 retrieval method was applied to IMG data measured in April, 1997. Although assuming a uniform CO2 concentration as a priori, the latitudinal gradient of the zonal mean concentration was consistent with climatological features presented by previous studies at pressure levels of 500 and 300 hPa. These results suggest that thermal infrared observation by the IMG is effective for evaluating the upper tropospheric CO2 concentration in the 1990s.
机译:对流层上方的二氧化碳浓度是从1990年代发射的唯一的太空高光谱测深仪观测到的热红外光谱中获得的:先进地球观测卫星(ADEOS)上的温室气体干涉监测仪(IMG)。首先,评估了IMG的有效光程差,因为干涉仪组件的实际仪器线形函数由于技术原因尚未在轨道上进行评估。 CO2检索方法基于最大后验(MAP)检索方法和减少阻碍CO2信号检测的错误的程序。对于检索分析,使用ERA-40再分析气象数据作为温度场数据。使用一种选择有效通道进行CO2回收的方法,可以去除具有较高温度依赖性的通道,并减少估算水蒸气,臭氧和地表温度时的误差。此外,通过将不确定度和其他误差因素作为MAP检索中的测量误差的组成部分,对不确定度进行了评估和优化,这些不确定度无法通过通道选择消除。在500和300 hPa的压力水平下,MAP回收的CO2回收噪声估计分别为2.5%和2.0%。从IMG数据中检索到的CO2浓度与飞机测量数据进行了比较。结果表明,IMG检索中的随机误差小于MAP检索的后验误差。与随机误差的余量相比,没有显示出明显的偏差。将CO2检索方法应用于1997年4月测得的IMG数据。尽管先验以均匀的CO2浓度为前提,但纬向平均浓度的纬度梯度与先前研究在500和300 hPa的压力水平下得出的气候特征一致。 。这些结果表明,IMG的热红外观测对于评估1990年代对流层上层CO2浓度是有效的。

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