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首页> 外文期刊>Journal of Hydrology >Simulating the multi-seasonal response of a large-scale watershed with a 3D physically-based hydrologic model
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Simulating the multi-seasonal response of a large-scale watershed with a 3D physically-based hydrologic model

机译:使用3D物理水文模型模拟大规模流域的多季节响应

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摘要

The physically-based surface-subsurface HydroGeoSphere model is used to examine the hydrologic budget of the 286.6 km(2) Duffins Creek watershed, located 10 km northeast of metropolitan Toronto. The primary objective of this study is to demonstrate the utility of the model to simulate the three-dimensional hydrologic response of the surface and subsurface flow systems in a large-scale watershed driven by multi-season precipitation events. The hydrologic model was calibrated to a consecutive sequence of hydrographs resulting from all precipitation events between the months of April and December 1986, white hydrographs from 1987 were used to test the model's ability for prediction. Results demonstrate that a physically-based modeling approach which treats the surface and subsurface flow systems as an integrated continuum can capture the dynamic response of a large heterogeneous watershed as driven by transient precipitation events over a multi-season period. It was also revealed that full coupling of plant transpiration and surface-subsurface evaporation processes into the governing flow equations was critical for the successful, calibration of the hydrographs. However, the ability of the model to predict the shape of individual. hydrographs in the following year, during which the annual average precipitation rate decreased significantly, was diminished even though the annual, average stream flows were closely replicated. We identify a number of data gaps that contribute to the decline in the predictive capacity of the model., including difficulty in establishing an appropriate initial condition, vertical mesh refinement issues within the root zone, and the reliance on a largely empirical relationship that distributes the net capacity for plant transpiration among various factors that may change from one year to the next.
机译:基于物理的地表地下HydroGeoSphere模型用于检查286.6 km(2)Duffins Creek流域的水文预算,该流域位于大都市多伦多东北10公里处。这项研究的主要目的是证明该模型在模拟由多季节降水事件驱动的大规模流域中地表和地下流系统的三维水文响应中的实用性。将水文模型校准为由1986年4月至1986年12月之间所有降水事件产生的连续水文序列,并使用1987年的白色水文来检验该模型的预测能力。结果表明,基于物理的建模方法将地表和地下流系统视为一个完整的连续体,可以捕获大型异质流域的动态响应,该动态响应是由多个季节的瞬时降水事件驱动的。研究还表明,植物蒸腾作用和地表-地下蒸发过程与控制流方程的完全耦合对于成功校准水文图至关重要。但是,模型预测个人形状的能力。第二年的年平均降水量显着下降的第二年的水文图减少了,即使每年的平均水流量得到了精确的复制。我们确定了许多导致模型预测能力下降的数据缺口,包括难以建立合适的初始条件,根区域内的垂直网格细化问题以及对分布模型的主要经验关系的依赖。各种因素之间的植物蒸腾净能力可能会在一年之间变化。

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