...
首页> 外文期刊>Hydrology and Earth System Sciences >The accuracy of weather radar in heavy rain: a comparative study for Denmark, the Netherlands, Finland and Sweden
【24h】

The accuracy of weather radar in heavy rain: a comparative study for Denmark, the Netherlands, Finland and Sweden

机译:大雨天气雷达的准确性:丹麦,荷兰,芬兰与瑞典的比较研究

获取原文

摘要

Weather radar has become an invaluable tool for monitoring rainfall and studying its link to hydrological response. However, when it comes to accurately measuring small-scale rainfall extremes responsible for urban flooding, many challenges remain. The most important of them is that radar tends to underestimate rainfall compared to gauges. The hope is that by measuring at higher resolutions and making use of dual-polarization radar, these mismatches can be reduced. Each country has developed its own strategy for addressing this issue. However, since there is no common benchmark, improvements are hard to quantify objectively. This study sheds new light on current performances by conducting a multinational assessment of radar's ability to capture heavy rain events at scales of 5 min up to 2 h. The work is performed within the context of the joint experiment framework of project MUFFIN (Multiscale Urban Flood Forecasting), which aims at better understanding the link between rainfall and urban pluvial flooding across scales. In total, six different radar products in Denmark, the Netherlands, Finland and Sweden were considered. The top 50 events in a 10-year database of radar data were used to quantify the overall agreement between radar and gauges as well as the bias affecting the peaks. Results show that the overall agreement in heavy rain is fair (correlation coefficient 0.7–0.9), with apparent multiplicative biases on the order of 1.2–1.8 (17  %–44  % underestimation). However, after taking into account the different sampling volumes of radar and gauges, actual biases could be as low as 10 %. Differences in sampling volumes between radar and gauges play an important role in explaining the bias but are hard to quantify precisely due to the many post-processing steps applied to radar. Despite being adjusted for bias by gauges, five out of six radar products still exhibited a clear conditional bias, with intensities of about 1 %–2 % per mmh?1. As a result, peak rainfall intensities were severely underestimated (factor 1.8–3.0 or 44 %–67 %). The most likely reason for this is the use of a fixed Z–R relationship when estimating rainfall rates?(R) from reflectivity?(Z), which fails to account for natural variations in raindrop size distribution with intensity. Based on our findings, the easiest way to mitigate the bias in times of heavy rain is to perform frequent (e.g., hourly) bias adjustments with the help of rain gauges, as demonstrated by the Dutch C-band product. An even more promising strategy that does not require any gauge adjustments is to estimate rainfall rates using a combination of reflectivity (Z) and differential phase shift (Kdp), as done in the Finnish OSAPOL product. Both approaches lead to approximately similar performances, with an average bias (at 10 min resolution) of about 30 % and a peak intensity bias of about 45 %.
机译:天气雷达已成为监测降雨并研究其与水文反应联系的宝贵工具。但是,在准确测量负责城市洪水的小型降雨极端时,仍然存在许多挑战。与仪表相比,他们最重要的是,与仪表相比,雷达往往会低估降雨。希望如此,通过测量更高的分辨率并利用双极化雷达,可以减少这些不匹配。每个国家都制定了自己解决这个问题的战略。但是,由于没有共同的基准,因此改进很难客观地量化。这项研究通过对雷达的跨国评估捕获5分钟的尺度缩小的雷达能力进行多国评估,这项研究阐述了当前表演。这项工作是在项目松饼(MultiScale城市洪水预测)的联合实验框架内进行的,这旨在更好地了解降雨与城市普利洪水之间的联系。考虑了丹麦,荷兰,芬兰和瑞典的六种不同的雷达产品。在10年的雷达数据数据库中的前50个事件用于量化雷达和仪表之间的整体协议以及影响峰值的偏差。结果表明,大雨的总体协议是公平的(相关系数0.7-0.9),表观繁殖偏差为1.2-1.8(低估17%-44%)。但是,在考虑到不同的抽样量的雷达和仪表之后,实际偏差可能低至10%。雷达和仪表之间的抽样量的差异在解释偏差时起着重要作用,但由于应用于雷达的许多后处理步骤,难以准确地量化。尽管由仪表进行偏见调整,但六个雷达产品中的五种仍然表现出明确的条件偏差,强度为每毫米/毫升约1%-2%?1。结果,峰值降雨强度严重低估(因子1.8-3.0或44%-67%)。最可能的原因是在估计从反射率的雨量率?(r)时使用固定的z-r关系?(z),这未能考虑具有强度的雨滴尺寸分布的自然变化。根据我们的研究结果,在大雨时期减轻偏差的最简单方法是在雨量仪的帮助下进行频繁(例如,每小时)偏见调整,如荷兰C波段产品所示。不需要任何规格调整的更具希望的策略是使用反射率(Z)和差分相移(KDP)的组合来估计降雨率,如芬兰奥萨尔产品所做的那样。两种方法导致大致相似的性能,平均偏差(10分钟分辨率)约30%,峰强度偏置约45%。

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