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首页> 外文期刊>Journal of marine systems: journal of the European Association of Marine Sciences and Techniques >Modelling the deposition, erosion, and flux of cohesive sediment through Oresund
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Modelling the deposition, erosion, and flux of cohesive sediment through Oresund

机译:模拟通过厄勒海峡的粘性沉积物的沉积,侵蚀和通量

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摘要

Oresund is a narrow sound between Denmark and Sweden in Northern Europe. The sound has a complex hydrography with two- or three-layer stratifications, sometimes with opposite directed currents in the different layers. The complicated hydrography makes it difficult to investigate sediment dynamics by use of traditional field-work based methods. In this study the three-dimensional modelling system MIKE 3 was applied in order to quantify the dynamics of the fine-grained sediment in Oresund over a year. The model simulated the complex hydrodynamics including stratification satisfactorily. The simulated suspended sediment concentrations were low, generally not exceeding 20 mg l(-1). Over the year 2000 the model computed an annual accumulation of 136,000 tons of sediment, Both the sediment concentrations and the overall accumulation of fine-grained sediment are in accordance with previously published results. This study presents some general hydrodynamic and sedimentological characteristics from the sound. The hydrodynamic characteristics were well reproduced, making the hydrodynamic model ideal for the sediment transport study. The description of the sedimentology of the sound is in some aspects new and is therefore not directly verified by data. The overall result is believed to be representative for the area and the model has given information on sedimentological transport patterns. This study demonstrated that generic numerical cohesive sediment transport models are capable of simulating hydrodynamics and cohesive sediment dynamics in complicated estuarine environments and of establishing reliable sediment budgets. (c) 2004 Elsevier B.V. All rights reserved.
机译:厄勒海峡(Oresund)在北欧的丹麦和瑞典之间是狭窄的声音。声音具有两层或三层分层的复杂水文学,有时在不同层中具有相反的定向电流。复杂的水文学使得难以使用传统的基于实地工作的方法来研究沉积物动力学。在这项研究中,应用了三维建模系统MIKE 3来量化厄勒海峡细颗粒沉积物在一年中的动力学。该模型令人满意地模拟了复杂的流体动力学,包括分层。模拟的悬浮沉积物浓度很低,通常不超过20 mg l(-1)。该模型在2000年期间计算出的年沉积量为136,000吨,沉积物浓度和细颗粒沉积物的总体积累均与先前公布的结果一致。这项研究从声音中提出了一些一般的水动力和沉积学特征。很好地再现了水动力特性,使水动力模型成为沉积物迁移研究的理想选择。声音沉积学的描述在某些方面是新的,因此不能直接由数据验证。总体结果被认为是该地区的代表,该模型已经提供了有关沉积运移模式的信息。这项研究表明,通用数值内聚沉积物输运模型能够模拟复杂河口环境中的水动力和内聚沉积物动力学,并能够建立可靠的沉积物预算。 (c)2004 Elsevier B.V.保留所有权利。

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