...
首页> 外文期刊>Journal of Hydrology >Comparison of raingage and WSR-88D Stage III precipitation data over the Texas-Gulf basin
【24h】

Comparison of raingage and WSR-88D Stage III precipitation data over the Texas-Gulf basin

机译:德州-墨西哥湾流域的raageage和WSR-88D III期降水数据的比较

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Precipitation is one of the most important hydrologic model inputs and is characterized by spatial and temporal variability. Traditionally, raingage networks have provided precipitation data for hydrologic studies. Weather radars like the WSR-88D estimate precipitation with high spatial and temporal sampling frequencies, but radar estimates suffer from errors due to several reasons. Assessment of the quality of radar precipitation data is necessary before the application of radar data in hydrologic studies and is important for improving radar data processing algorithms. Accuracy assessment of Stage III precipitation data front the WSR-88D network over the Texas-Gulf basin was performed for the period 1995-99 using 24-h accumulations from 545 raingages. Sampling differences between point raingage measurements and areal radar estimates were ignored. WSR-88D underestimated the five-year precipitation at a vast majority of the raingages. Difference in the total precipitation depth between radar and raingage was within +/- 500 mm only at 42% of the raingages; the root mean squared difference was more than 10 mm at 78% of the raingages. Such large differences between both rainfall data sources will have significant implications for the hydrologic applications of WSR-88D Stag e III data. Radar estimation efficiency was better than 0.50 at 71% of the First Order/FAA raingages and 41% of the cooperative observer raingages. Radar performance varied significantly over the years, and, in general, improvement in radar performance was observed, which is consistent with the on-going developments in WSR-88D data processing algorithms: however, an overestimation trend was identified during 1998-99. Evaluation of the quality of WSR-88D Stage III data and making necessary corrections are important before their application in hydrologic studies. (C) 2004 Elsevier B.V. All rights reserved.
机译:降水是最重要的水文模型输入之一,其特征是时空变化。传统上,掠夺网络为水文学研究提供了降水数据。诸如WSR-88D之类的气象雷达以高时空采样频率估算降水,但是由于多种原因,雷达估算存在误差。在将雷达数据应用于水文研究之前,必须对雷达降水数据的质量进行评估,这对于改进雷达数据处理算法至关重要。使用545次测距的24小时累积,对1995-99年期间得克萨斯-墨西哥湾流域WSR-88D网络前的III期降水数据进行了准确性评估。点掠夺测量和面雷达估计之间的采样差异被忽略。 WSR-88D低估了大多数年份的五年降水。雷达和掠夺之间的总降水深度差异仅在掠夺的42%时在+/- 500 mm之内;在78%的掠夺中,均方根差超过10 mm。两个降雨数据源之间的巨大差异将对WSR-88D Stag e III数据的水文应用产生重大影响。在一阶/ FAA袭击中占71%,合作观察员袭击中占41%,雷达估计效率优于0.50。多年来,雷达性能变化很大,总体上观察到雷达性能有所提高,这与WSR-88D数据处理算法的不断发展是一致的;但是,在1998-99年期间发现了高估趋势。在将WSR-88D第III阶段数据的质量应用于水文研究之前,对其进行评估非常重要。 (C)2004 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号