...
首页> 外文期刊>Hydrology and Earth System Sciences >The quantification and correction of wind-induced precipitation measurement errors
【24h】

The quantification and correction of wind-induced precipitation measurement errors

机译:风引起的沉淀测量误差的量化和校正

获取原文
获取原文并翻译 | 示例
           

摘要

Hydrologic measurements are important for both the short- and long-term management of water resources. Of the terms in the hydrologic budget, precipitation is typically the most important input; however, measurements of precipitation are subject to large errors and biases. For example, an all-weather unshielded weighing precipitation gauge can collect less than 50% of the actual amount of solid precipitation when wind speeds exceed 5ms(-1). Using results from two different precipitation test beds, such errors have been assessed for unshielded weighing gauges and for weighing gauges employing four of the most common windshields currently in use. Functions to correct wind-induced undercatch were developed and tested. In addition, corrections for the single-Alter weighing gauge were developed using the combined results of two separate sites in Norway and the USA. In general, the results indicate that the functions effectively correct the undercatch bias that affects such precipitation measurements. In addition, a single function developed for the single-Alter gauges effectively decreased the bias at both sites, with the bias at the US site improving from -12 to 0 %, and the bias at the Norwegian site improving from -27 to -4 %. These correction functions require only wind speed and air temperature as inputs, and were developed for use in national and local precipitation networks, hydrological monitoring, roadway and airport safety work, and climate change research. The techniques used to develop and test these transfer functions at more than one site can also be used for other more comprehensive studies, such as the World Meteorological Organization Solid Precipitation Intercomparison Experiment (WMO-SPICE).
机译:水文测量对于水资源的短期和长期管理是重要的。在水文预算中的术语中,降水通常是最重要的投入;然而,降水的测量受到大的误差和偏差。例如,当风速超过5ms(-1)时,全天候均未屏蔽的称重降析仪可收集小于固体沉淀量的实际量的50%。使用来自两个不同的降水试验床的结果,已经评估了非屏蔽称重仪和用于当前使用的四个最常见的挡风玻璃的称重仪表。开发并测试了纠正风引起的undercatch的功能。此外,使用挪威和美国的两个单独站点的组合结果开发了单个改变称重计的校正。通常,结果表明该功能有效地校正了影响这种降水测量的欠割偏差。此外,为单个改变仪表开发的单个功能有效地降低了两个站点的偏差,在美国网站的偏差从-12到0%改善,挪威网站的偏差从-27到-4改善%。这些校正功能仅需要风速和空气温度作为输入,并且是在国家和局部降水网络中使用的,水文监测,道路和机场安全工作以及气候变化研究。用于在多个网站开发和测试这些传递函数的技术也可用于其他更全面的研究,例如世界气象组织固体降水相互作用实验(WMO-香料)。

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