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Measuring and modeling event-based environmental flows: An assessment of HEC-RAS 2D rain-on-grid simulations

机译:测量和建模基于事件的环境流量:HEC-RAS 2D雨栅模拟的评估

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摘要

There is an immediate need to use available modeling tools to quantify environmental flows targets where changing climate and human activity has altered hydroecologically important streamflow regimes. A model performance assessment was undertaken using observed data collected from five nested gauging sites in a mixed land use watershed of the central US. An integrated modeling approach was used to couple The Soil and Water Assessment Tool (SWAT version 2012), and The Hydrologic Engineering Center's River Analysis System (HEC-RAS version 5.0.7). SWAT was used to generate effective rainfall needed to run HEC-RAS rain-on-grid two-dimensional hydrodynamic simulations. Model calibration results showed the potential usefulness of coupling SWAT and HEC-RAS using an integrated modeling approach. For example, PBIAS of 8.3%, NSE value of 0.84, and coefficient of determination (R~2) value of 0.80 at a highly urbanized monitoring site used for model calibration. Split-site validation results showed PBIAS values that ranged from 10.4 to 33.8%, NSE values that ranged from 0.33 to 0.92, and R2 values that ranged from 0.86 to 0.97. Results showed that 2D rain-on-grid HEC-RAS simulations can produce realistic simulations of stage hydrograph response when: (1) areal effective precipitation is used for 2D HEC-RAS rain-on-grid forcing's, (2) HEC-RAS is calibrated to observed data during the event of interest, (3) there are not substantial sources of backwatering from outside the models geometric data, and (4) during saturated antecedent soil moisture conditions surface DEM's adequately describe overland flow paths. This model performance assessment is among the first, if not the first, to show calibration and validation results associated with 2D HEC-RAS rain-on-grid simulations at a watershed scale. Results highlight the need for time-varying roughness coefficients to account for soil moisture conditions, and point to the efficacy of using a SWAT/ HEC-RAS integrated modeling approach to generate event-based environmental flows information.
机译:立即使用可用的建模工具来量化环境流量的目标,即改变气候和人类活动的变化改变了水生态学的重要流出制度。使用从美国中部的混合土地使用流域中的五个嵌套仪表网站收集的观察数据进行了模型性能评估。综合建模方法用于将土壤和水评估工具(SWAT版本2012)和水文工程中心河流分析系统(HEC-RAS 5.0.7版)耦合。 SWAT用于在运行HEC-RA雨桥二维流体动力模拟所需的有效降雨。模型校准结果显示了使用集成建模方法耦合SWAT和HEC-RA的潜在有用性。例如,在高度城市化监测网站上用于模型校准的高度城市化监测站点,PBIA为8.3%,NSE值为0.84的0.84,并且测定系数(R〜2)值为0.80。拆分网站验证结果显示PBIA值,范围为10.4至33.8%,nse值,范围为0.33到0.92,以及范围为0.86到0.97的R2值。结果表明,当:(1)使用2D HEC-RAS Rain-on-Grid Forcing(2)HEC-RAS,2D雨桥网格RAS模拟可以产生阶段水平的阶段水平响应的实际模拟。(2)HEC-RAS是在感兴趣的情况下校准以观察到的数据,(3)从模型几何数据外部的反水源没有实质性的来源,(4)在饱和的前一种土壤水分条件下表面DEM充分描述陆地流动路径。这种型号性能评估是第一个,如果不是第一个,则以分水柱在流域尺度上显示与2D HEC-RAS雨架模拟相关的校准和验证结果。结果突出了时变粗糙度系数的需求,以考虑土壤湿度条件,并指出使用SWAT / HEC-RAS集成建模方法产生基于事件的环境流信息的功效。

著录项

  • 来源
    《Journal of Environmental Management》 |2021年第1期|112125.1-112125.11|共11页
  • 作者单位

    Lincoln University Department of Agriculture and Environmental Sciences 308 Foster Hall 904 Chestnut Street Jefferson City MO 65101 USA;

    Institute of Water Security and Science West Virginia University 4121 Agricultural Sciences Building Morgantown 26506 WV USA Davis College Schools of Agriculture and Food And Natural Resources West Virginia University 4121 Agricultural Sciences Building Morgantown 26506 WV USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Environmental flows; Hydroecology; Hydrologic modeling; Hydraulic modeling; SWAT; HEC-RAS;

    机译:环境流动;水电;水文造型;液压建模;扑打;HEC-RA.;

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