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The GEWEX Water Vapor Assessment archive of water vapour products from satellite observations and reanalyses

机译:来自卫星观测和再分析的水蒸气产品的GEWEX水蒸气评估档案

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Abstract. The Global Energy and Water cycle Exchanges (GEWEX) Data and Assessments Panel (GDAP) initiated the GEWEX Water Vapor Assessment (G-VAP), which has the main objectives to quantify the current state of the art in water vapour products being constructed for climate applications and to support the selection process of suitable water vapour products by GDAP for its production of globally consistent water and energy cycle products. During the construction of the G-VAP data archive, freely available and mature satellite and reanalysis data records with a minimum temporal coverage of 10?years were considered. The archive contains total column water vapour (TCWV) as well as specific humidity and temperature at four pressure levels (1000, 700, 500, 300hPa) from 22?different data records. All data records were remapped to a regular longitude–latitude grid of 2°?×?2°. The archive consists of four different folders: 22?TCWV data records covering the period 2003–2008, 11?TCWV data records covering the period 1988–2008, as well as 7 specific humidity and 7 temperature data records covering the period 1988–2009. The G-VAP data archive is referenced under the following digital object identifier (doi): https://doi.org/10.5676/EUM_SAF_CM/GVAP/V001. Within G-VAP, the characterization of water vapour products is, among other ways, achieved through intercomparisons of the considered data records, as a whole and grouped into three classes of predominant retrieval condition: clear-sky, cloudy-sky and all-sky. Associated results are shown using the 22?TCWV data records. The standard deviations among the 22?TCWV data records have been analysed and exhibit distinct maxima over central Africa and the tropical warm pool (in absolute terms) as well as over the poles and mountain regions (in relative terms). The variability in TCWV within each class can be large and prohibits conclusions about systematic differences in TCWV between the classes.
机译:抽象。全球能源和水循环交易所(GEWEX)数据和评估小组(GDAP)发起了GEWEX水蒸气评估(G-VAP),其主要目标是量化为气候而建造的水蒸气产品的最新技术水平应用,并支持GDAP选择合适的水蒸气产品以生产全球一致的水和能源循环产品。在建立G-VAP数据档案库的过程中,考虑了免费提供的成熟的卫星和再分析数据记录,这些记录的最小时间覆盖范围为10年。该档案包含来自22个不同数据记录的四种压力水平(1000、700、500、300hPa)下的总塔水蒸气(TCWV)以及比湿度和温度。将所有数据记录重新映射到2°××2°的规则经纬度网格。该档案由四个不同的文件夹组成:涵盖2003-2008年的22个TCWV数据记录,涵盖1988-2008年的11个TCWV数据记录以及涵盖1988-2009年的7个特定湿度和7个温度数据记录。在以下数字对象标识符(doi)下引用了G-VAP数据存档:https://doi.org/10.5676/EUM_SAF_CM/GVAP/V001。在G-VAP中,通过整体比较考虑的数据记录来实现对水蒸气产物的表征,并将其分为三类主要检索条件:晴空,阴天和全天。使用22?TCWV数据记录显示相关结果。分析了22个TCWV数据记录之间的标准差,并显示了中部非洲和热带暖池(绝对值)以及两极和山区(相对值)的明显最大值。每个类别中TCWV的可变性可能很大,并且无法得出有关类别之间TCWV的系统差异的结论。

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