首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Validation of Atmospheric Infrared Sounder temperature and water vapor retrievals with matched radiosonde measurements and forecasts
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Validation of Atmospheric Infrared Sounder temperature and water vapor retrievals with matched radiosonde measurements and forecasts

机译:验证大气红外探测器温度和水蒸气的检索与无线电探空仪测量和预测

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An evaluation of the temperature and moisture profile retrievals from the Atmospheric Infrared Sounder (AIRS) data is performed using more than 2 years of collocated data sets. The Aqua-AIRS retrievals, global radiosonde (RAOB) measurements, forecast data from the National Center for Environmental Prediction Global Forecasting System (NCEP_GFS), the European Center for Medium Range Forecast (ECMWF), and the operational retrievals from the NOAA 16 satellite Advanced TIROS Operational Vertical Sounder (ATOVS) instrument are used in this validation. Using RAOB observations as the reference, bias and RMS differences are computed for “sea,” “land,” and “all” categories for the AIRS retrievals and other collocated data sets. The results of the intercomparison reveal that temperature and water vapor retrievals from the AIRS are in very good agreement with the RAOBs. The RMS difference for clear-only cases over “sea” and “all” categories is close to the expected goal accuracies, namely, 1°K in 1 km layers for the temperature and better than 15% in 2-km layers for the water vapor in the troposphere. The overall RMS difference for the cloud-cleared cases is also close to the expected product goal accuracy except for a slight degradation at the surface. When AIRS and ATOVS retrievals are compared with the RAOBs, the AIRS temperature retrievals show an improvement over ATOVS of at least 0.5°K for all the accepted cases. Both the ECMWF and the NCEP_GFS forecasts match the RAOB temperatures within 1°K and water vapor within 14%. With respect to biases, the AIRS final retrieval shows a larger bias with the RAOBs relative to ATOVS, NCEP_GFS, and ECMWF. The bias is highly influenced by a larger bias contribution from “land” samples and shows a month-to-month and annual variation that correlates with the CO2 variations. This coupling suggests a need to include CO2 and possibly other trace gas climatologies in the AIRS initial guess to partially mitigate the effects in the final physical retrieval.
机译:温度和湿度的评价从大气红外资料检索测深仪使用超过执行(播出)数据2年的集中的数据集。检索、全球无线电探空仪(无线电气象探测)从国家测量,预测数据环境预报中心的全球预报系统(NCEP_GFS),欧洲人中程预报中心(ECMWF),从16 NOAA卫星运行检索先进的洛斯操作垂直测深仪在这个验证(ATOVS)仪器使用。使用无线电气象探测观察作为参考,偏见和RMS差异计算为“海”,“土地”和“所有”播出的类别检索和其他配置数据集。相互比较的结果表明,温度和水蒸气的检索播出与无线电气象探测非常好的协议。RMS区别才弄清楚情况下结束了“海”和“所有”类别是接近的预期目标精度,即1°K 1公里层的温度和比15%2公里层的水蒸气对流层。cloud-cleared病例也接近预期的产品目标精度除了轻微退化的表面。检索与无线电气象探测、播出温度检索显示有所改善ATOVS至少0.5°K的接受用例。与无线电气象探测温度在1°K和水蒸汽在14%以内。播出最后检索显示更大的偏差相对于ATOVS无线电气象探测、NCEP_GFS和ECMWF。偏差是高度受到更大的偏差从“土地”的贡献,显示了一个样本月度和年度变化与二氧化碳的变化。表明需要包括二氧化碳和其他可能示踪气体气候学在播出初始猜测在最后的部分减轻影响物理检索。

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