首页> 外文期刊>Water Resources Management >Development of a New Integrated Framework for Improved Rainfall-Runoff Modeling under Climate Variability and Human Activities
【24h】

Development of a New Integrated Framework for Improved Rainfall-Runoff Modeling under Climate Variability and Human Activities

机译:在气候变异性和人类活动下改进降雨径流建模的新综合框架

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The relationship between rainfall and runoff is a complex phenomenon and understanding the physical processes, hydrological components and their impacts on response of watershed to precipitation is one of the challenging issues in watershed hydrology and planning. There is still a need to improve conceptual hydrological models in water scarce regions, such as Iran mainly because in many cases there is not enough data to fully describe this phenomenon. In this research, we aimed to present an improved and parsimonious framework that increases the performance of a conceptual model in water balance and discharge modeling for Delichay watershed located in Hablehroud basin, Iran as one of the main source of water supply for downstream fertile agricultural areas that produce a considerable amount of cereals and play a major role for food and water security of the region. In areas where data for water cycle components are not available or limited, it is recommended to use parsimonious approach in order to have an acceptable level of understanding of the system with minimum possible predictor variables. The Salas model used in current research to model water balance over the period 1983-2012 and evaluation of the results indicated an unsatisfactory performance when the entire period was modeled altogether (NSE=0.35, d=0.70, R-2=0.63, RSR=0.80, PBIAS=4.96 and RMSE=41.87). A key reason is that this watershed is intensively impacted by human activities and homogeneity analysis confirmed a sudden shift in runoff data during 1998-1999. Such a sudden shift reveals the role of human activities impacts on the watershed with a total reduction of 58mm of runoff per year while the climate variability has not occurred in the region. Thus, the entire period (i.e. 1983-2012) was divided into two homogenous sub-periods of before and after the change point (i.e., pre-change and post-change periods). The results indicated that modeling performance in the sub-periods improved (e.g. the NSE was 0.77 and 0.66 for pre-change and post-change, respectively, vs. 0.35 for entire period). Meanwhile, it is revealed that water balance affected by human activities over the time and application of historical data for water balance modeling cannot be reliable without considering the homogeneous data. Since, many watersheds in the world have been affected by human activities or climate variability, it is recommended to consider the homogeneity of observed data before any application.
机译:降雨与径流之间的关系是一种复杂的现象,了解物理过程,水文组分及其对流域响应的影响,是流域水文和规划中的具有挑战性问题之一。仍然需要改善水资源稀缺地区的概念水文模型,如伊朗,主要是因为在许多情况下,没有足够的数据来完全描述这种现象。在这项研究中,我们旨在提出一种改进且显着的框架,可以提高位于伊朗Hablehroud Basin的Delichay流域水平和放电模型的概念模型的性能,作为下游肥沃农业领域的主要供水来源之一这产生了相当数量的谷物,并为该地区的食物和水安全发挥着重要作用。在不可用或限制的水循环组件数据的区域中,建议使用定义方法,以便具有最小可能的预测变量对系统的可接受的理解水平。在1983 - 2015年期间,目前研究模型水平的研究和结果评估表明,当完整的整个时期(NSE = 0.35,D = 0.70,R-2 = 0.63,RSR = 0.80,PBIAS = 4.96和RMSE = 41.87)。一个关键原因是,这种流域被人类活动强烈影响,同质性分析证实了1998 - 1999年期间径流数据突然转变。这种突然转变揭示了人类活动对流域的影响,每年总径流量的总减少,而在该地区尚未发生气候变异性。因此,整个时期(即1983-2012)分为在变更点之前和之后的两个均质亚周期(即,改变后和后期后)。结果表明,分别改善了亚时期的建模性能(例如,NSE为0.77和0.66,分别为整个时期的0.35)。同时,揭示受人类活动影响的水平衡在时间和应用水平模型的历史数据中的应用不能可靠,而不考虑均质数据。由于世界上许多流域受到人类活动或气候变异的影响,建议在任何申请前考虑观察数据的同质性​​。

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