...
首页> 外文期刊>Journal of Environmental Quality >The Role of Interior Watershed Processes in Improving Parameter Estimation and Performance of Watershed Models
【24h】

The Role of Interior Watershed Processes in Improving Parameter Estimation and Performance of Watershed Models

机译:内部分水岭过程在改善分水岭模型参数估计和性能中的作用

获取原文
获取原文并翻译 | 示例

摘要

Watershed models typically are evaluated solely through comparison of in-stream water and nutrient fluxes with measured data using established performance criteria, whereas processes and responses within the interior of the watershed that govern these global fluxes often are neglected. Due to the large number of parameters at the disposal of these models, circumstances may arise in which excellent global results are achieved using inaccurate magnitudes of these "intra-watershed" responses. When used for scenario analysis, a given model hence may inaccurately predict the global, in-stream effect of implementing land-use practices at the interior of the watershed. In this study, data regarding internal watershed behavior are used to constrain parameter estimation to maintain realistic intra-watershed responses while also matching available in-stream monitoring data. The methodology is demonstrated for the Eagle Creek Watershed in central Indiana. Streamflow and nitrate (NO3) loading are used as global in-stream comparisons, with two process responses, the annual mass of denitrification and the ratio of NO3 losses from subsurface and surface flow, used to constrain parameter estimation. Results show that imposing these constraints not only yields realistic internal watershed behavior but also provides good in-stream comparisons. Results further demonstrate that in the absence of incorporating intra-watershed constraints, evaluation of nutrient abatement strategies could be misleading, even though typical performance criteria are satisfied. Incorporating intra-watershed responses yields a watershed model that more accurately represents the observed behavior of the system and hence a tool that can be used with confidence in scenario evaluation.
机译:流域模型通常仅通过使用确定的性能标准将河流中的水和营养通量与测得的数据进行比较来评估,而流域内部控制这些全局通量的过程和响应通常被忽略。由于使用这些模型需要使用大量参数,因此可能会出现以下情况:使用这些“分水岭内”响应的不正确量值可以获得出色的全局结果。因此,当用于情景分析时,给定的模型可能会不准确地预测在流域内部实施土地使用实践的全球性,流内效应。在这项研究中,有关内部流域行为的数据用于约束参数估计,以维持现实的流域内响应,同时还匹配可用的流内监测数据。该方法已在印第安纳州中部的鹰溪流域得到证明。流量和硝酸盐(NO3)负载被用作全局流内比较,具有两个过程响应,即反硝化的年度质量和地下和地面流的NO3损失率,用于约束参数估计。结果表明,施加这些约束不仅可以产生现实的内部分水岭行为,而且可以提供良好的流内比较。结果进一步表明,在没有纳入流域内部约束的情况下,即使满足典型的绩效标准,对营养减少策略的评估也可能会产生误导。纳入分水岭内部响应会产生一个分水岭模型,该分水岭模型可以更准确地表示观察到的系统行为,因此可以放心地用于情景评估。

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