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Proposed NPOESS IOO to provide enhanced information on atmospheric CH4, CO, and CO2, and to mitigate effects of CO2 SWIR non-LTE

机译:提出的NPoess IOO提供有关大气CH4,CO和CO2的增强信息,并减轻二氧化碳SWIR非LTE的影响

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Measurements of the column CH4, CO and CO2 are high priorities of the NPOESS Pre-Planned Product Improvement (P3I) data sets. Risk reduction for existing NPOESS instruments, including mitigation of daytime CO2 SWIR non-LTE effects, is also a high priority. We have proposed an NPOESS Instrument Of Opportunity (IOO) to address these priorities. It consists of two grating mapping spectrometers (GMSs). One that would acquire measurements with high spectral resolution Δv < 0.13 cm-1 of CH4, CO and H2O absorption lines in reflected sunlight in the VSWIR region 4281 to 4301 cm-1, and another for measurements with Δv < 0.30 cm-1 in the SWIR region 2355 to 2430 cm-1. The IOO will acquire spectra on a crosstrack swath from nadir to 55 degrees (about 1400 km on the ground) on footprints that are about 1.55 and 3.1 km on a side at nadir for the two GMS, respectively. The small footprint facilitates cloud screening, and identification of pollution hotspots. We use linear error analysis (LEA, based on the Rodgers [1] paper) to estimate the proposed IOO's performance. The LEA indicates that the IOO should be able to provide CH4 and CO column retrieval over sunlit land (and from ocean glitter when it is viewed) that satisfies or exceeds NPOESS P3I Environmental Data Records (EDRs) requirements in all aspects except refresh where the IOO would provide every two days vs the once per day requirement. Further, it shows the VSWIR IOO data when used in combination with the NPOESS Cross Track Infrared Sounder (CrIS) [2] data should provide: (a) CO profile data with sensitivity to CO in near surface air that is enhanced compared to that in the current TERRA-MOPITT, ACQUA-AIRS and AURA-TES data sets because these are limited to thermal infrared measurements that lack sensitivity to CO in near surface air layer where there is little contrast between the air temperature and the ground surface temperature, (b) CH4 profile with sensitivity in the near surface air layer that is crucial for identifying CH4 sources/sinks (c) and significant improvement in the CrIS retrieved humidity in the near surface layer of air. We show the SWIR IOO data can be used for CO2 column retrieval with near surface air layer sensitivity in the daytime. And also that in combination with CrIS SWIR data facilitates CO2 SWIR non-LTE mitigation that is required for advanced sounding quality temperature profile (TP) retrieval from CO2 SWIR data in daytime conditions. This provides risk reduction in case of degradation in the CrIS LWIR region data.
机译:柱CH4,CO和CO2的测量是NPoess预计划产品改进(P3I)数据集的高优先级。现有的NPoess仪器的风险降低,包括减轻白天CO2障碍的威尔非LTE效应,也是一个高优先级。我们提出了一个NPoess机会(IOO)来解决这些优先事项。它由两个光栅映射光谱仪(GMSS)组成。一种可以在VSWIR区域4281至4301cm-1中反射的太灯中的高光谱分辨率ΔV<0.13cm-1获得测量的测量,并且另一个用于测量ΔV<0.30cm-1的测量SWIR区域2355至2430 cm-1。 IOO将在从Nadir到55度(地面约1400公里)的克罗斯斗争条件上获得光谱,在占地面积约为1.55和3.1km,分别为两种GMS的Nadir的一侧。小型占地面积有助于云筛选,以及污染热点的识别。我们使用线性误差分析(LEA,基于RODGERS [1]纸)来估计所提出的IOO的表现。 LEA表示,IOO应该能够通过在所有方面满足或超过NPoess P3i环境数据记录(EDRS)要求的Sunlit Land(随海洋闪光时,提供CH4和CO列检索在所有方面,除了IOO的所有方面每天每天都会提供每天一次要求。此外,它显示了与NPoess交叉轨道红外发声器(CRIS)[2]数据结合使用时的VSCIR IOO数据应该提供:(a)与近地表空气中的具有敏感性的Co简档数据,与此相比增强目前的Terra-Mopitt,Acqua-Airs和Aura-TES数据集,因为这些是限于缺乏对近地表空气层敏感性的热红外测量,其中空气温度和地面温度之间几乎没有对比度,(B )CH4轮廓具有近表面空气层的灵敏度,这对于识别CH4源/下沉(C)和在空气附近的近表面层中的湿度的显着改善至关重要。我们展示了SWIR IOO数据可用于CO2列检索,在白天的近表面空气层灵敏度。此外,与CRIS SWIR数据的组合有助于从白天条件中的CO2 SWIR数据中的先进探测质量温度曲线(TP)所需的CO2 SWIR非LTE缓解。在CRIL LWIR区域数据中降解的情况下,这提供了风险降低。

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