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Random walk particle-tracking method for modeling changes of sediment characteristics in marine sediments after drilling discharges

机译:随机游走粒子跟踪法模拟钻井水后海床沉积物中沉积物特征的变化

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Adverse impacts of drilling discharges on marine benthic environments have been observed since the advent of offshore drilling operations for exploration and production of oil and gas. This study utilizes a marine sediment model based on a system of equations that has been developed earlier to assess environmental impacts of drilling waste discharges. Bioturbation, bio-degradation and natural burial processes are included in the model. The model is based on the diagenetic equations, providing vertical concentration profiles of dissolved oxygen, naturally deposited substances and discharged substances in the marine sediment as a basis for marine risk assessment. The governing equations are solved by a random walk particle-tracking method for each constituent evaluated explicitly in time. The developed model is enhanced with a kernel smoothing method to obtain smooth concentration profiles. Simulation results reveal that the method demonstrates stable behavior for different model parameters, providing a promising alternative to finite difference approaches.
机译:自从海上钻探作业用于油气勘探和生产以来,已经观察到钻井排放物对海洋底栖环境的不利影响。这项研究利用了基于较早开发的方程组的海洋沉积物模型来评估钻井废物排放的环境影响。该模型包括生物扰动,生物降解和自然掩埋过程。该模型基于成岩方程,提供了海洋沉积物中溶解氧,自然沉积物质和排放物质的垂直浓度分布,作为评估海洋风险的基础。控制方程通过随机游动粒子跟踪方法求解,以便及时对每个明确评估的成分进行求解。所开发的模型通过核平滑法得到增强,以获得平滑的浓度分布。仿真结果表明,该方法证明了不同模型参数的稳定行为,为有限差分方法提供了有希望的替代方法。

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