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Oil spill response planning with consideration of physicochemical evolution of the oil slick: A multiobjective optimization approach

机译:考虑浮油的理化演变的溢油应急计划:多目标优化方法

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This paper addresses the optimal planning of oil spill response operations under economic and responsive criteria, with consideration of oil weathering process. The economic criterion is measured by total cost, while the measure of responsiveness is the time span of the entire response operations. A bi-criterion, multiperiod mixed-integer linear programming (MILP) model is developed that simultaneously predicts the optimal time trajectories of oil volume and slick area, transportation profile, response resource utilization levels, cleanup schedule, and coastal protection plan. The MILP model integrates with the prediction of an oil weathering model that accounts for oil physicochemical properties, spilled amount, hydrodynamics, and weather conditions. The multi-objective optimization model is solved with the epsilon-constraint method and produces a Pareto optimal curve that reveals how the optimal total cost and response operations change under different specifications of responsiveness. We present two illustrative examples for oil spill incidents in the Gulf of Mexico and New England.
机译:本文考虑了油的风化过程,提出了在经济和响应标准下对溢油应急行动的最佳计划。经济标准以总成本来衡量,而响应能力的度量是整个响应操作的时间跨度。建立了一个双准则,多周期混合整数线性规划(MILP)模型,该模型同时预测了油量和浮油面积,运输剖面,响应资源利用水平,清理时间表和海岸保护计划的最佳时间轨迹。 MILP模型与油类风化模型的预测相结合,该模型考虑了油的理化特性,泄漏量,流体动力学和天气状况。使用epsilon约束方法求解多目标优化模型,并生成帕累托最优曲线,该曲线揭示了最优总成本和响应操作在不同响应度规格下的变化。我们为墨西哥湾和新英格兰的漏油事件提供两个说明性示例。

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