...
首页> 外文期刊>Hydrology and Earth System Sciences >Multivariate hydrologic design methods under nonstationary conditions and application to engineering practice
【24h】

Multivariate hydrologic design methods under nonstationary conditions and application to engineering practice

机译:非平稳条件下的多元水文设计方法及其在工程实践中的应用

获取原文
           

摘要

Multivariate hydrologic design under stationary conditions is traditionally performed through the use of the design criterion of the return period, which is theoretically equal to the average inter-arrival time of flood events divided by the exceedance probability of the design flood event. Under nonstationary conditions, the exceedance probability of a given multivariate flood event varies over time. This suggests that the traditional return-period concept cannot apply to engineering practice under nonstationary conditions, since by such a definition, a given multivariate flood event would correspond to a time-varying return period. In this paper, average annual reliability (AAR) was employed as the criterion for multivariate design rather than the return period to ensure that a given multivariate flood event corresponded to a unique design level under nonstationary conditions. The multivariate hydrologic design conditioned on the given AAR was estimated from the nonstationary multivariate flood distribution constructed by a dynamic C-vine copula, allowing for time-varying marginal distributions and a time-varying dependence structure. Both the most-likely design event and confidence interval for the multivariate hydrologic design conditioned on the given AAR were identified to provide supporting information for designers. The multivariate flood series from the Xijiang River, China, were chosen as a case study. The results indicated that both the marginal distributions and dependence structure of the multivariate flood series were nonstationary due to the driving forces of urbanization and reservoir regulation. The nonstationarities of both the marginal distributions and dependence structure were found to affect the outcome of the multivariate hydrologic design.
机译:传统上,在固定条件下的多变量水文设计是通过使用回水期的设计准则进行的,该准则在理论上等于洪水事件的平均到达时间间隔除以设计洪水事件的超出概率。在非平稳条件下,给定多元洪水事件的超标概率会随时间变化。这表明,传统的返水周期概念不能应用于非平稳条件下的工程实践,因为根据这样的定义,给定的多变量洪水事件将对应于随时间变化的返水周期。在本文中,采用年均可靠性(AAR)作为多变量设计的标准,而不是将其作为回报期,以确保给定的多变量洪水事件对应于非平稳条件下的唯一设计水平。根据给定的AAR进行的多变量水文设计是根据动态C型蔓藤科普拉构造的非平稳多变量洪水分布估算的,从而允许随时间变化的边际分布和随时间变化的依存结构。确定了以给定的AAR为条件的多元水文设计的最可能的设计事件和置信区间,以为设计者提供支持信息。选择了来自中国西江的多元洪水序列作为案例研究。结果表明,由于城市化和水库调度的驱动力,多元洪水序列的边际分布和依赖性结构都是不稳定的。发现边际分布和依赖结构的非平稳性都影响多元水文设计的结果。

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