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首页> 外文期刊>Journal of Hydrology >A groundwater-based, objective-heuristic parameter optimisation method for a precipitation-runoff model and its application to a semi-arid basin
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A groundwater-based, objective-heuristic parameter optimisation method for a precipitation-runoff model and its application to a semi-arid basin

机译:降水径流模型的地下水目标启发式参数优化方法及其在半干旱盆地中的应用

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A hydrologic model calibration methodology that is based on groundwater data is developed and implemented using the US Geological Survey's precipitation-runoff modelling system (PRMS) and the modular modelling system (MMS), which performs automatic calibration of parameters. The developed methodology was tested in the Akrotiri basin, Cyprus. The necessity for the groundwater-based model calibration, rather than a typical runoff-based one, arose from the very intermittent character of the runoff in the Akrotiri basin, a case often met in semi-arid regions. Introducing a datum and converting groundwater storage to head made the observable groundwater level the calibration indicator. The modelling of the Akrotiri basin leads us to conclude that groundwater level is a useful indicator for hydrological model calibration that can be potentially used in other similar situations in the absence of river flow measurements. However, the option of an automatic calibration of the complex hydrologic model PRMS by MMS did not ensure a good outcome. On the other hand, automatic optimisation, combined with heuristic expert intervention, enabled achievement of good calibration and constitutes a valuable means for saving effort and improving modelling performance. To this end, results must be scrutinised, melding the viewpoint of physical sense with mathematical efficiency criteria. Thus optimised, PRMS achieved a low simulation error, good reproduction of the historic trend of the aquifer water level evolution and reasonable physical behaviour (good hydrologic balance, Reasonable match of aquifer level evolution, good estimation of mean natural recharge rate). (C) 2004 Elsevier B.V. All rights reserved.
机译:使用美国地质调查局的降水径流建模系统(PRMS)和模块化建模系统(MMS)开发并实施了基于地下水数据的水文模型校准方法,该系统可以对参数进行自动校准。所开发的方法论已在塞浦路斯的阿克罗蒂里盆地进行了测试。基于地下水的模型标定而不是基于典型径流的标定的必要性,是由于阿克罗蒂里盆地的径流非常断断续续,这在半干旱地区经常遇到。引入基准并将地下水存储量转换为水头,使可观察到的地下水位成为校准指标。阿克罗蒂里盆地的建模使我们得出结论,地下水位是水文模型校准的有用指标,可以在没有河流流量测量的情况下用于其他类似情况。但是,MMS对复杂水文模型PRMS进行自动校准的选项无法确保获得良好的结果。另一方面,自动优化与启发式专家干预相结合,可以实现良好的校准,并且是节省工作量和改善建模性能的宝贵手段。为此,必须仔细检查结果,将物理意义的观点与数学效率标准相结合。经过优化后,PRMS实现了较低的模拟误差,很好地再现了含水层水位演变的历史趋势,并具有合理的物理行为(良好的水文平衡,合理的含水层水位匹配,良好的平均自然补给率估算)。 (C)2004 Elsevier B.V.保留所有权利。

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