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A Three-Dimensional Hydro-Environmental Model of Dublin Bay

机译:都柏林湾的三维水环境模型

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In this study, the impact of Escherichia coli emissions from a sewage treatment plant on the bathing water quality of Dublin Bay (Ireland) is assessed using a three-dimensional hydro-environmental model. Before being discharged, the effluent from the plant is mixed with cooling water from a thermal-electrical power generation plant, creating a warm buoyant sewage plume that can be 7-9°C higher and is less saline than the ambient water in the bay. The ability of the three-dimensional model in representing such a stratified condition is assessed based on a comparison of its results with two-dimensional modelling results. Hydrodynamic simulations of water levels and flow velocities in Dublin Bay were obtained using the TELEMAC-3D model in one case and the depth-averaged TELEMAC-2D model in the other. The results of each model were separately used as inputs to the water quality model SUBIEF-3D to simulate the transport and fate of E. coli in the bay and to generate maps of E. coli concentrations over the bay. In addition, the necessity for three-dimensional modelling in simulating the effects of wind direction on the dispersion of E. coli was demonstrated by comparing the results of three-dimensional and two-dimensional model simulations with a number of different wind directions. The comparison showed that the three-dimensional model performed better than the depth-averaged model in simulating the hydrodynamics and resulted in better simulation of the water quality processes in the bay. In particular, the three-dimensional model had reasonably simulated the timing of the delivery of E, coli to the bay. Moreover, the effect of wind on the movement of the buoyant plume of pollution and on the E. coli distribution was found to be more pronounced with the three-dimensional hydrodynamics. The results demonstrate the need for three-dimensional simulations in situations of density differences or significant wind influences.
机译:在这项研究中,使用三维水环境模型评估了污水处理厂排放的大肠杆菌对都柏林湾(爱尔兰)沐浴水水质的影响。在排放之前,将工厂的废水与火力发电厂的冷却水混合,形成温暖的浮力污水羽流,其温度可能比海湾中的环境水高7-9°C,并且盐分也少。基于三维模型结果与二维建模结果的比较,可以评估三维模型表示这种分层条件的能力。一种情况是使用TELEMAC-3D模型,另一种情况是使用深度平均的TELEMAC-2D模型,对都柏林湾的水位和流速进行水动力模拟。每个模型的结果分别用作水质模型SUBIEF-3D的输入,以模拟大肠杆菌在海湾中的运输和命运,并生成海湾上大肠杆菌浓度的图。另外,通过将三维模型和二维模型模拟的结果与许多不同的风向进行比较,证明了三维建模对模拟风向对大肠杆菌扩散的影响的必要性。比较结果表明,三维模型在模拟水动力方面的性能优于深度平均模型,从而更好地模拟了海湾的水质过程。特别是,三维模型合理地模拟了大肠杆菌向海湾的交付时间。此外,在三维流体动力学中,发现风对漂浮的污染羽流的运动和大肠杆菌分布的影响更加明显。结果表明在密度差异或重大风影响的情况下需要进行三维模拟。

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