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周秋文, 李 芳.TRMM降雨数据在喀斯特地区的适用性分析——以贵州省为例水资源与水工程学报[J].,2018,29(2):76-83
TRMM降雨数据在喀斯特地区的适用性分析——以贵州省为例
Applicability analysis of the TRMM precipitation data in Karst region: a case study in Guizhou Province, China
  
DOI:10.11705/j.issn.1672-643X.2018.02.13
中文关键词:  TRMM  降水  年尺度  月尺度  时空分布特点  适用性分析  喀斯特地区
英文关键词:TRMM  precipitation  yearly scale  mothly scale  temporal and spatial distribution characteristics  applicability analysis  Karst region
基金项目:国家自然科学基金项目(41761003); 贵州省科学技术基金项目(黔科合J字[2015]2118号); 贵州省本科教学工程建设项目(2016DC3); 贵州师范大学博士科研启动资金项目
作者单位
周秋文, 李 芳 (贵州师范大学 地理与环境科学学院 贵州 贵阳 550001) 
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中文摘要:
      为验证TRMM( Tropical Rainfall Measurement Mission)降雨数据在喀斯特地区的适用性,以贵州省为研究区,利用贵州省19个气象台站1998-2015年的降水数据,在年尺度和月尺度上验证了 TRMM卫星降水数据的精度,并在此基础上基于TRMM月降水数据分析了贵州省的降水时空分布特征。结果表明TRMM降水数据基本能反映降水的空间分布及演变过程,年尺度上TRMM降水数据与站点实测降水量相关系数R=0.817,斜率K=0.751,数据精度较高,数值上比站点实测降水量略高。月尺度上TRMM降水数据与站点实测降水量相关系数最高,达到0.927,斜率为0.9127,数值略高于站点实测降水量。分析表明:坡度对TRMM降水数据精度的影响大于高程和坡向,坡度小于 10°的精度较高。总体而言,TRMM降水数据在喀斯特地区具有一定精度,但是降水量少或地形起伏大的地区精度相对较低。
英文摘要:
      In order to verify the applicability of rainfall data of TRMM (Tropical Rainfall Measurement Mission) in karst area, this study takes Guizhou Province as the research area and uses the precipitation record of 19 meteorological stations in Guizhou Province from 1998 to 2015, and on the yearly and monthly scale the accuracy of precipitation data of TRMM satellite is verified, and the temporal and spatial distribution characteristics of precipitation in Guizhou Province are analyzed based on the monthly precipitation data of TRMM . The results show that the TRMM precipitation data can reflect the spatial distribution and evolution of precipitation. On the yearly scale, the correlation coefficient between the TRMM precipitation data and the observed data from metrological stations is R=0.817 and, the slope is K=0.751. The data accuracy is high, and the TRMM precipitation data value is slightly higher than the observed data form metrological stations. On the monthly scale, the correlation coefficient between TRMM precipitation data and site precipitation is 0.927, which is the highest,and the slope is 0.9127.The value of former is slightly higher than that of the measured precipitation. In areas with an altitude greater than 1 300 m and a slope less than 10°, TRMM precipitation data is more accurate. The analysis shows that the effect of elevation on the accuracy of TRMM precipitation data is greater than that of slope and aspect. In general, the TRMM precipitation data has a certain accuracy in the karst area, but the accuracy in the area with less precipitation or complex terrain is relatively low.
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