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Integrated water system simulation by considering hydrological and biogeochemical processes: model development, with parameter sensitivity and autocalibration

机译:Integrated water system simulation by considering hydrological and biogeochemical processes: model development, with parameter sensitivity and autocalibration

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摘要

Integrated water system modeling is a feasible approach to understanding severe water crises in the world and promoting the implementation of integrated river basin management. In this study, a classic hydrological model (the time variant gain model: TVGM) was extended to an integrated water system model by coupling multiple water-related processes in hydrology, biogeochemistry, water quality, and ecology, and considering the interference of human activities. A parameter analysis tool, which included sensitivity analysis, autocalibration and model performance evaluation, was developed to improve modeling efficiency. To demonstrate the model performances, the Shaying River catchment, which is the largest highly regulated and heavily polluted tributary of the Huai River basin in China, was selected as the case study area. The model performances were evaluated on the key water-related components including runoff, water quality, diffuse pollution load (or nonpoint sources) and crop yield. Results showed that our proposed model simulated most components reasonably well. The simulated daily runoff at most regulated and less-regulated stations matched well with the observations. The average correlation coefficient and Nash-Sutcliffe efficiency were 0.85 and 0.70, respectively. Both the simulated low and high flows at most stations were improved when the dam regulation was considered. The daily ammonium-nitrogen (NH4-N) concentration was also well captured with the average correlation coefficient of 0.67. Furthermore, the diffuse source load of NH4-N and the corn yield were reasonably simulated at the administrative region scale. This integrated water system model is expected to improve the simulation performances with extension to more model functionalities, and to provide a scientific basis for the implementation in integrated river basin managements.
机译:综合水系统建模是了解世界上严重水危机并促进流域综合管理实施的一种可行方法。在这项研究中,经典水文模型(时变增益模型:TVGM)通过将水文,生物地球化学,水质和生态学中的多个与水有关的过程耦合在一起,并考虑了人类活动的干扰而扩展到综合水系统模型。为了提高建模效率,开发了参数分析工具,其中包括灵敏度分析,自动校准和模型性能评估。为了演示模型的性能,选择了沙ying河流域作为案例研究区域,该流域是中国淮河流域最大的高度管制和严重污染的支流。对与水有关的关键要素(包括径流,水质,弥散性污染负荷(或非点源)和农作物产量)进行了模型性能评估。结果表明,我们提出的模型可以很好地模拟大多数组件。在大多数受管制和受较少管制的站的模拟日径流量与观测值吻合得很好。平均相关系数和Nash-Sutcliffe效率分别为0.85和0.70。考虑大坝调节后,大多数站的模拟低流量和高流量都得到了改善。还很好地捕获了每日铵氮(NH4-N)浓度,平均相关系数为0.67。此外,在行政区域范围内合理地模拟了NH4-N的扩散源负荷和玉米产量。该集成水系统模型有望改善仿真性能,并扩展到更多的模型功能,并为在流域集成管理中的实施提供科学依据。

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