...
首页> 外文期刊>Journal of Water Resource and Protection >A Time-Based Framework for Evaluating Hydrologic Routing Methodologies Using Wavelet Transform
【24h】

A Time-Based Framework for Evaluating Hydrologic Routing Methodologies Using Wavelet Transform

机译:一种基于时间的基于时间的框架,用于使用小波变换评估水文路由方法

获取原文
           

摘要

In this study we explore a method which provides an insight into the effectiveness of various hydrologic models’ routing components based on their ability to accurately represent flood peak times and shapes. The method is based on using Cross-Wavelet Transforms to estimate the phase (time) difference between the time series of the observed and the simulated discharges. In this article we evaluate two routing components, the Routing Application for Parallel Computation of Discharge (RAPID), which is based on the simplified Muskingum routing method, and the routing component of the non-linear Hillslope-Link hydrologic Model (HLM) produced in the Iowa Flood Center (IFC). Both routing components are driven by the same source of runoff and used the same channel network to ensure that the discrepancies between the simulated stream discharges are due to channel routing alone. We also explore the suitability of different wavelet shapes for our application, and how the difference in wavelet shape can affect our evaluation results. Unlike the conventional statistical skill scores used to evaluate model performance (e.g. Root Mean Squared Error, correlation coefficient, and Nash Sutcliff efficiency index), which give an estimate of the overall hydrograph performance, our method conveniently provides time-localized information with higher resolution at peak location. We perform our evaluation at multiple stream gauge locations, covering a wide range of scales (700 to 16,862 km2), located in the eastern part of the state of Iowa. Our results show that the proposed wavelet method is effective in evaluating the performance of the routing components in simulating peak times across spatial scales. Generally, the non-linear routing method employed in the HLM outperformed the Muskingum based method employed in RAPID. In addition, our results suggest that the Paul wavelet is more effective in detecting and separating individual peaks than the Morlet wavelet, which in turn leads to a more accurate evaluation of the routing components.
机译:在这项研究中,我们探讨了一种方法,该方法基于它们的准确代表洪水峰时和形状的能力来探讨各种水文模型路由组件的有效性。该方法基于使用跨小波变换来估计观察到的时间序列与模拟放电之间的相位(时间)差。在本文中,我们评估了两个路由组件,用于排出的并行计算(快速)的路由应用程序,它基于简化的Muskuitum路由方法,以及生产的非线性山坡链路水文模型(HLM)的路由分量爱荷华州洪水中心(IFC)。两个路由组件都由径流源和使用相同的信道网络驱动,以确保模拟流放电之间的差异是由于信道路由。我们还探讨了不同小波形状对我们应用的适用性,以及小波形的差异如何影响我们的评估结果。与用于评估模型性能的常规统计技能分数(例如根均方误差,相关系数和纳什·索离率指数)不同,这对整个水文表现估计,我们的方法可以方便地提供具有更高分辨率的时间局限性信息峰值位置。我们在多个流仪表位置进行评估,覆盖各种秤(700至16,862平方公里),位于爱荷华州的东部。我们的结果表明,所提出的小波法有效地评估了在空间尺度模拟峰值时间的路由组件的性能。通常,HLM中采用的非线性路由方法优于快速采用的基于Muskingum的方法。此外,我们的结果表明,保罗小波在检测和分离比Morlet小波的检测和分离各个峰值方面更有效,这反过来导致对布线组件的更准确评估。

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