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Observation and modeling of tide- and wind-induced surface currents in Galway Bay 被引量:1
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作者 Lei Ren Stephen Nash Michael Hartnett 《Water Science and Engineering》 EI CAS CSCD 2015年第4期345-352,共8页
A high-frequency radar system has been deployed in Galway Bay, a semi-enclosed bay on the west coast of Ireland. The system provides surface currents with fine spatial resolution every hour. Prior to its use for model... A high-frequency radar system has been deployed in Galway Bay, a semi-enclosed bay on the west coast of Ireland. The system provides surface currents with fine spatial resolution every hour. Prior to its use for model validation, the accuracy of the radar data was verified through comparison with measurements from acoustic Doppler current profilers (ADCPs) and a good correlation between time series of surface current speeds and directions obtained from radar data and ADCP data. Since Galway Bay is located on the coast of the Atlantic Ocean, it is subject to relatively windy conditions, and surface currents are therefore strongly wind-driven. With a view to assimilating the radar data for forecasting purposes, a three-dimensional numerical model of Galway Bay, the Environmental Fluid Dynamics Code (EFDC), was developed based on a terrain-following vertical (sigma) coordinate system. This study shows that the performance and accuracy of the numerical model, particularly with regard to tide- and wind-induced surface currents, are sensitive to the vertical layer structure. Results of five models with different layer structures are presented and compared with radar measurements. A variable vertical structure with thin layers at the bottom and the surface and thicker layers in the middle of the water column was found to be the optimal layer structure for reproduction of tideand wind-induced surface currents. This structure ensures that wind shear can properly propagate from the surface layer to the sub-surface layers, thereby ensuring that wind forcing is not overdamped by tidal forcing. The vertical layer structure affects not only the velocities at the surface layer but also the velocities further down in the water column. 展开更多
关键词 Wind-induced surface current Vertical layer structure High-frequency radar Coastal ocean dynamics application radar Environmental fluid dynamicscode Galway Bay
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基于水环境模型和数据库的潮汐河网突发水污染事件溯源 被引量:14
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作者 陈正侠 丁一 +2 位作者 毛旭辉 王政 贾海峰 《清华大学学报(自然科学版)》 EI CAS CSCD 北大核心 2017年第11期1170-1178,共9页
为快速准确地实现潮汐河网突发性水污染的溯源,提出了基于水环境模型和数据库的溯源方法。以西江、北江佛山段为案例,基于EFDC(environmental fluid dynamics code)和WASP(water quality analysis simulation program)模型建立了研究区... 为快速准确地实现潮汐河网突发性水污染的溯源,提出了基于水环境模型和数据库的溯源方法。以西江、北江佛山段为案例,基于EFDC(environmental fluid dynamics code)和WASP(water quality analysis simulation program)模型建立了研究区域的水动力模型、常规污染物水质模型以及有毒污染物水质模型;识别和筛选了研究区域的水环境风险源,并以此建立有毒污染物溯源数据库和常规污染物溯源数据库;最后以研究案例区内禅城沙口站监测到Cr6+超标为假设情景案例,通过数据库查询,使用反向计算确定3种可能的污染源排放情况下污染物初始排放量,再通过试错法,应用模型正向计算得到最终可能的污染源位置及对应的排放量,快速准确地完成污染物溯源。 展开更多
关键词 潮汐河网 EFDC(environmental fluid dynamicscode)模型 WASP(water quality analysis simulation program)模型 数据库 突发水污染 溯源
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