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Scientific management of Mediterranean coastal zone: A hybrid ocean forecasting system for oil spill and search and rescue operations

机译:地中海沿岸地区的科学管理:溢油和搜救作业的混合海洋预报系统

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摘要

The oil spill from Prestige tanker showed the importance of scientifically based protocols to minimize the impacts on the environment. In this work, we describe a new forecasting system to predict oil spill trajectories and their potential impacts on the coastal zone. The system is formed of three main interconnected modules that address different capabilities: (1) an operational circulation sub-system that includes nested models at different scales, data collection with near-real time assimilation, new tools for initialization or assimilation based on genetic algorithms and feature-oriented strategic sampling; (2) an oil spill coastal sub-system that allows simulation of the trajectories and fate of spilled oil together with evaluation of coastal zone vulnerability using environmental sensitivity indexes; (3) a risk management sub-system for decision support based on GIS technology. The system is applied to the Mediterranean Sea where surface currents are highly variable in space and time, and interactions between local, sub-basin and basin scale increase the non-linear interactions effects which need to be adequately resolved at each one of the intervening scales. Besides the Mediterranean Sea is a complex reduced scale ocean representing a real scientific and technological challenge for operational oceanography and particularly for oil spill response and search and rescue operations.
机译:来自Prestige油轮的溢油表明了以科学为基础的协议对减少对环境的影响的重要性。在这项工作中,我们描述了一个新的预测系统来预测漏油轨迹及其对沿海地区的潜在影响。该系统由三个主要的互连模块组成,这些模块可解决不同的功能:(1)运营循环子系统,包括不同规模的嵌套模型,具有近实时同化功能的数据收集,基于遗传算法的初始化或同化功能的新工具面向特征的战略抽样; (2)沿海溢油子系统,该子系统可以模拟溢油的轨迹和命运,并使用环境敏感性指标评估沿海地区的脆弱性; (3)基于GIS技术的决策支持风险管理子系统。该系统适用于地中海,在该地中海中,地表电流在空间和时间上变化很大,并且局部,次流域和盆地尺度之间的相互作用增加了非线性相互作用的影响,需要在每个干预尺度上适当解决。除地中海外,还有一个复杂的缩小规模的海洋,这对操作海洋学,特别是对溢油应急响应以及搜救行动而言,是一个真正的科学和技术挑战。

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