A Hydrodynamic Modelling Framework for Strangford Lough Part 1: Tidal Model

A Hydrodynamic Modelling Framework for Strangford Lough Part 1: Tidal Model
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斯特兰福德湖水动力建模框架第 1 部分:潮汐模型

DOI:
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发表时间:
2014
期刊:
影响因子:
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通讯作者:
Björn Elsässer
Björn Elsässer
中科院分区:
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文献类型:
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作者:
L. Kregting;Björn Elsässer

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流体动力学模型是一种强大的工具,可供广大终端用户用来协助预测物理和生物过程对当地环境条件的影响。本文介绍了北方爱尔兰的斯特兰福德湖的潮汐模型的发展,该水域因第一台并网潮汐涡轮机SeaGen以及英国第三个海洋自然保护区而闻名。利用MIKE 21建模软件,详细描述了模型的开发、标定和性能。斯特兰福德湖有一个复杂的流动模式与高流量通过狭窄(~3.5米/秒)连接的主要机构的湖泊和爱尔兰海和复杂的流动模式周围的许多岛屿。在模型开发过程中获得的整个海湾的高质量潮汐和水流数据的帮助下,观测和数值模型之间的表面高程和水流大小几乎相同,模型技能分别>0.98和>0.84。该模型的适用性是这样的,它可以被用来作为一个重要的工具,预测重要的生态过程,以及工程应用在斯特兰福德湖。
Hydrodynamic models are a powerful tool that can be used by a wide range of end users to assist in predicting the effects of both physical and biological processes on local environmental conditions. This paper describes the development of a tidal model for Strangford Lough, Northern Ireland, a body of water renowned for the location of the first grid-connected tidal turbine, SeaGen, as well as the UK's third Marine Nature Reserve. Using MIKE 21 modelling software, the development, calibration and performance of the model are described in detail. Strangford Lough has a complex flow pattern with high flows through the Narrows (~3.5 m/s) linking the main body of the Lough to the Irish Sea and intricate flow patterns around the numerous islands. With the aid of good quality tidal and current data obtained throughout the Lough during the model development, the surface elevation and current magnitude between the observed and numerical model were almost identical with model skill >0.98 and >0.84 respectively. The applicability of the model is such that it can be used as an important tool for the prediction of important ecological processes as well as engineering applications within Strangford Lough.
DOI: 10.1016/j.jmarsys.2008.03.011
发表时间: 2009-02
期刊: Journal of marine systems : journal of the European Association of Marine Sciences and Techniques
影响因子: --
作者:
C. Stow;J. Jolliff;D. McGillicuddy;S. Doney;J. Icarus Allen;Marjorie A.M. Friedrichs;Kenneth A. Rose;P. Wallhead
通讯作者: C. Stow;J. Jolliff;D. McGillicuddy;S. Doney;J. Icarus Allen;Marjorie A.M. Friedrichs;Kenneth A. Rose;P. Wallhead