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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >An assessment of the consistency between satellite measurements of upper tropospheric water vapor
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An assessment of the consistency between satellite measurements of upper tropospheric water vapor

机译:An assessment of the consistency between satellite measurements of upper tropospheric water vapor

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摘要

We assess the consistency of the satellite-based observations of upper tropospheric water vapor (UTWV) by comparing brightness temperature measurements from the channel 12 of High-Resolution Infrared Radiation Sounder (HIRS), the 183.31 ± 1 GHz channel of Advanced Microwave Sounding Unit-B (AMSU-B)/ Microwave Humidity Sounder (MHS), and spectral radiances from the Atmospheric Infrared Sounder (AIRS). All three products exhibit consistent spatial and temporal patterns of interannual variability. On decadal time scales, the spatial patterns of trends are similar between all three products; however, the amplitude of the regional trends is noticeably weaker in the HIRS measurements than in either the AMSU-B/MHS or AIRS data. This presumably reflects the greater clear-sky sampling limitations of HIRS relative to the other products. However, when averaged over tropical or near-global spatial scales, the trends between all three products are statistically indistinguishable from each other. The overall consistency between all three products provides important verification of their credibility for documenting long-term changes in UTWV. A similar analysis is performed for reanalysis-produced and model-simulated UTWV using the HIRS record as a benchmark. On decadal time scales, both reanalysis data sets and the multimodel ensemble mean have difficulty in capturing the observed moistening of climatologically dry regions of the subtropics, although the model-simulated trends are more consistent with the HIRS measurements than the reanalysis data.
机译:我们通过比较高分辨率红外辐射测深仪 (HIRS) 第 12 通道、先进微波探测单元 B (AMSU-B)/微波湿度测深仪 (MHS) 的 183.31 ± 1 GHz 通道以及大气红外测深仪 (AIRS) 的光谱辐射度来评估对流层上层水蒸气 (UTWV) 卫星观测的一致性。这三种产品都表现出一致的年际变化的时空模式。在年代际时间尺度上,三种产品之间的趋势空间格局相似;然而,HIRS测量的区域趋势幅度明显弱于AMSU-B/MHS或AIRS数据。这大概反映了HIRS相对于其他产品更大的晴空采样限制。然而,当在热带或近全球空间尺度上取平均值时,所有三种产品之间的趋势在统计学上彼此无法区分。这三种产品之间的整体一致性为记录UTWV的长期变化提供了重要的可信度验证。使用 HIRS 记录作为基准,对重新分析生成和模型模拟的 UTWV 进行类似的分析。在年代际时间尺度上,再分析数据集和多模式集合都难以捕捉到观测到的亚热带气候干燥地区的湿润情况,尽管模型模拟的趋势与HIRS测量结果比再分析数据更一致。

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