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Time-varying parameter models for catchments with land use change: the importance of model structure

机译:流域土地利用变化的时变参数模型:模型结构的重要性

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Rapid population and economic growth in Southeast Asia has been accompanied by extensive land use change with consequent impacts on catchment hydrology. Modeling methodologies capable of handling changing land use conditions are therefore becoming ever more important and are receiving increasing attention from hydrologists. A recently developed data-assimilation-based framework that allows model parameters to vary through time in response to signals of change in observations is considered for a medium-sized catchment (2880?kmsup2/sup) in northern Vietnam experiencing substantial but gradual land cover change. We investigate the efficacy of the method as well as the importance of the chosen model structure in ensuring the success of a time-varying parameter method. The method was used with two lumped daily conceptual models (HBV and HyMOD) that gave good-quality streamflow predictions during pre-change conditions. Although both time-varying parameter models gave improved streamflow predictions under changed conditions compared to the time-invariant parameter model, persistent biases for low flows were apparent in the HyMOD case. It was found that HyMOD was not suited to representing the modified baseflow conditions, resulting in extreme and unrealistic time-varying parameter estimates. This work shows that the chosen model can be critical for ensuring the time-varying parameter framework successfully models streamflow under changing land cover conditions. It can also be used to determine whether land cover changes (and not just meteorological factors) contribute to the observed hydrologic changes in retrospective studies where the lack of a paired control catchment precludes such an assessment.
机译:东南亚人口和经济的快速增长伴随着土地用途的广泛变化,从而对流域水文学产生了影响。因此,能够处理不断变化的土地使用条件的建模方法变得越来越重要,并且越来越受到水文学家的关注。对于越南北部正在经历的中等规模流域(2880?km 2 )来说,最近开发的基于数据同化的框架允许模型参数随观测变化信号而随时间变化。实质性但逐步的土地覆盖变化。我们研究了该方法的有效性以及所选模型结构在确保时变参数方法成功方面的重要性。该方法与两个集总日概念模型(HBV和HyMOD)一起使用,它们在变化前的条件下给出了高质量的流量预测。尽管与时不变参数模型相比,这两个时变参数模型在变化的条件下都提供了改进的流量预测,但在HyMOD情况下,低流量的持续偏差是显而易见的。发现HyMOD不适合表示修改后的基流条件,从而导致极端和不切实际的时变参数估计。这项工作表明,选择的模型对于确保时变参数框架成功地模拟在变化的土地覆盖条件下的水流至关重要。它也可以用来确定土地覆盖的变化(而不仅仅是气象因素)是否有助于回顾性研究中观察到的水文变化,因为缺乏成对的控制集水区使得评估无法进行。

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