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Development of an Integrated System for the Simulation and Assessment of Produced Water Discharges from Offshore Platforms

机译:开发用于模拟和评估海上平台产出水的集成系统

摘要

Techniques for modeling of marine pollution have been studied for decades. Specialized modeling methods have been used to simulate the dispersions of pollutants from offshore outfalls. Produced water, the largest volume waste stream discharged from offshore oil and gas production activities, is a complex mixture of dissolved and particulate organic and inorganic chemicals including metals and hydrocarbons. In recent years, the growing importance and interest in the ocean environment assessment has urged further evaluation of produced water impacts on the marine ecosystem. This thesis study describes an integrated system for the modeling and assessment of produced water discharges in coastal area. The system integrates ocean circulation simulation, pollutant fate and transport modeling that couples near field mechanisms and far field processes, and risk assessment approaches where exposure risks and probabilistic risks are evaluated. udA literature survey is first introduced to review and present capabilities and limitations of the most widely used methods and models associated with assessment of the impact of marine pollution. This review identified the need for an integrated system with configurations of numerical schemes of Princeton Ocean Model (POM) for ocean circulation simulation, a Lagrangian method to simulate near field transport processes in three dimensional cross flows, and a numerical solution for far field transport modeling. The physical models are dynamically integrated to ensure mass and energy conservation. Furthermore to assess risks, a modified Monte Carlo method which uses a statistical model to establish the relationship between uncertainty parameters and output concentrations is integrated with physical modeling system along with risk characterization approaches to map risk levels. udEvaluation and field validations are conducted for each individual sub-models and for the overall integrated modeling results. Specifically, the near field model is validated against a field study performed in USA platform located about 100 miles of New Orleans Louisiana. The computational efficiency and accuracy of the far field model are evaluated through test cases in comparison with concentration distribution results generated from an exact analytical solution and a RWPT (Random Walk Particle Tracking) method. Validations of ocean circulation results and the integrated produced water dispersion results are conducted in a case study carried out on the Grand Banks of Newfoundland, Canada. Validations show good performance of the developed modeling system which is used to provide satisfactory 3D simulation of marine pollutant dispersion for effective assessment and management of offshore waste discharges. Finally, a risk assessment is carried out to predict risks associated with predicted lead and benzene concentration resulting from potential future produced water discharges in the East Coast of Canada. This research study provide a tool for the modeling of complex transport processes in the coastal area, and improved methods for risk assessment of produced water impacts on the regional water environment.ud
机译:海洋污染建模技术已经研究了数十年。专门的建模方法已被用来模拟近海排污口污染物的扩散。产出水是海上石油和天然气生产活动中排放量最大的废水,是溶解的,颗粒状的有机和无机化学物质(包括金属和碳氢化合物)的复杂混合物。近年来,在海洋环境评估中的重要性和兴趣日益增长,促使人们进一步评估产出水对海洋生态系统的影响。本论文的研究描述了一个用于建模和评估沿海地区产出水排放的集成系统。该系统集成了海洋环流模拟,污染物归宿和运输模型(结合了近场机制和远场过程)以及风险评估方法,可以评估暴露风险和概率风险。 ud首先引入文献调查,以审查和介绍与评估海洋污染影响相关的最广泛使用的方法和模型的功能和局限性。这篇综述确定了需要一个具有普林斯顿海洋模型(POM)数值方案配置的集成系统用于海洋环流模拟,一种用于模拟三维横流中近场传输过程的拉格朗日方法以及一种用于远场传输建模的数值解决方案的需求。物理模型是动态集成的,以确保节省质量和能源。此外,为了评估风险,将改进的蒙特卡洛方法(使用统计模型来建立不确定性参数和输出浓度之间的关系)与物理建模系统集成在一起,并结合了风险表征方法来绘制风险水平。 ud对每个子模型以及整体集成建模结果进行评估和现场验证。具体而言,针对在新奥尔良路易斯安那州约100英里的美国平台上进行的现场研究对近场模型进行了验证。通过测试案例评估远场模型的计算效率和准确性,并与精确解析解决方案和RWPT(随机行走粒子跟踪)方法生成的浓度分布结果进行比较。在加拿大纽芬兰大银行进行的案例研究中,对海洋环流结果和综合的产出水扩散结果进行了验证。验证表明,所开发的建模系统具有良好的性能,该系统可用于对海洋污染物扩散进行令人满意的3D模拟,以有效评估和管理近海废物排放。最后,进行了风险评估,以预测与加拿大东海岸将来可能产生的废水排放量所导致的铅和苯浓度预测有关的风险。这项研究为沿海地区复杂的运输过程建模提供了工具,并提供了改进的方法来评估产出水对区域水环境的影响。 ud

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    Zhao Lin;

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  • 年度 2012
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