...
首页> 外文期刊>Hydrology and Earth System Sciences Discussions >Regional analysis of parameter sensitivity for simulation of streamflow and hydrological fingerprints
【24h】

Regional analysis of parameter sensitivity for simulation of streamflow and hydrological fingerprints

机译:流流和水文指纹模拟参数敏感性的区域分析

获取原文

摘要

Diagnostics of hydrological models are pivotal for a better understanding of catchment functioning, and the analysis of dominating model parameters plays a key role for region-specific calibration or parameter transfer. A major challenge in the analysis of parameter sensitivity is the assessment of both temporal and spatial differences of parameter influences on simulated streamflow response. We present a methodological approach for global sensitivity analysis of hydrological models. The multilevel approach is geared towards complementary forms of streamflow response targets, and combines sensitivity analysis directed to hydrological fingerprints, i.e. temporally independent and temporally aggregated characteristics of streamflow (INDPAS), with the conventional analysis of the temporal dynamics of parameter sensitivity (TEDPAS). The approach was tested in 14 mesoscale headwater catchments of the Ruhr River in western Germany using simulations with the spatially distributed hydrological model mHM. The multilevel analysis with diverse response characteristics allowed us to pinpoint parameter sensitivity patterns much more clearly as compared to using TEDPAS alone. It was not only possible to identify two dominating parameters, for soil moisture dynamics and evapotranspiration, but we could also disentangle the role of these and other parameters with reference to different streamflow characteristics. The combination of TEDPAS and INDPAS further allowed us to detect regional differences in parameter sensitivity and in simulated hydrological functioning, despite the rather small differences in the hydroclimatic and topographic setting of the Ruhr headwaters.
机译:水文模型的诊断是为了更好地理解集水机会的关键,并且主导模型参数的分析为区域特定校准或参数转移发挥着关键作用。参数灵敏度分析的主要挑战是评估参数对模拟流射流响应的参数影响的时间和空间差异。我们介绍了水文模型的全局敏感性分析方法方法。多级方法朝向互补形式的流流响应靶标,并结合了针对水文指纹的灵敏度分析,即流流(IndPAS)的时间独立和时间汇总特性,具有参数灵敏度的时间动态(TEDPAS)的常规分析。该方法在德国西部鲁尔河的14个Mescrale壁龛中,使用与空间分布的水文模型MHM的模拟。与单独使用TEDPAS相比,多级响应特性的多级分析使我们能够更清楚地确定参数灵敏度模式。不仅可以识别两种主导参数,用于土壤水分动态和蒸发,但我们还可以在不同的流流式特征中解散这些和其他参数的作用。尽管RUHR返回的循环和地形设置相当小,但TEDPAS和INDPA的组合进一步允许我们检测参数敏感性和模拟水文功能的区域差异。

著录项

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