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首页> 外文期刊>Ocean Dynamics >Uncertainty in complex three-dimensional sediment transport models: equifinality in a model application of the Ems Estuary, the Netherlands
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Uncertainty in complex three-dimensional sediment transport models: equifinality in a model application of the Ems Estuary, the Netherlands

机译:复杂的三维泥沙输运模型中的不确定性:荷兰Ems河口模型应用中的均等性

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Estuarine suspended sediment transport models are typically calibrated against suspended sediment concentration data. These data typically cover a limited range of the actual suspended sediment concentration dynamics, constrained in either time or space. As a result of these data limitations, the available data can be reproduced with complex 3D transport models through multiple sets of model calibration parameters. These various model parameter sets influence the relative importance of transport processes such as settling, deposition, erosion, or mixing. As a result, multiple model parameter sets may reproduce sediment dynamics in tidal channels (where most data is typically collected) with the same degree of accuracy but simulate notably different sediment concentration patterns elsewhere (e.g. on the tidal flats). Different combinations of model input parameters leading to the same result are known as equifinality. The effect of equifinality on predictive model capabilities is investigated with a complex three-dimensional sediment transport model of a turbid estuary which is subject to several human interventions. The effect of two human interventions (offshore disposal of dredged sediment and restoration of the tidal channel profile) was numerically examined with several equifinal model settings. The computed effect of these two human interventions was relatively weakly influenced by the model settings, strengthening confidence in the numerical model predictions.
机译:通常针对悬浮泥沙浓度数据对河口悬浮泥沙运移模型进行校准。这些数据通常涵盖受时间或空间限制的实际悬浮沉积物浓度动态的有限范围。由于这些数据限制,可用的数据可以通过多组模型校准参数与复杂的3D传输模型一起复制。这些各种模型参数集会影响运输过程的相对重要性,例如沉降,沉积,侵蚀或混合。结果,多个模型参数集可以以相同的精确度再现潮汐通道(通常收集大多数数据)中的泥沙动力学,但模拟其他地方(例如,在滩涂上)的明显不同的泥沙浓度模式。导致相同结果的模型输入参数的不同组合称为相等性。用浊度河口的复杂三维泥沙输运模型研究了均等性对预测模型能力的影响,该模型受到多种人工干预。两种人为干预的效果(疏disposal沉积物的海上处置和潮汐河道剖面的恢复)在几种等模型模型设置下进行了数值检验。这两种人工干预的计算效果受到模型设置的影响相对较弱,从而增强了对数字模型预测的信心。

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