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Oil spill boom modelling by the finite-element method

机译:溢油杆的有限元建模

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During an oil-spill crisis, emergency action plans define priority locations on coastal zones to be protected by floating booms. Estuaries, fisheries, oyster production, and water supply are some of the most concerned examples. An oil-spill boom is a long floating structure, the boom length can be as long as 1 km. A boom is used to deviate or to stop a floating pollution. The strategy to be adopted (deviative or stopping) depends on the current velocity. The sea current velocity and direction are variable in a coastal zone and it can depend on fluvial or tide flow. The variability of the environmental conditions increases the complexity of the mechanical problem. Another difficulty of a boom contingency plan comes from the definition of the adapted boundary conditions. Sea depth and coastal morphology must be compatible with the boom mooring devices: anchor, pile, and fixed point. This paper presents two numerical models named FORBAR and SIMBAR. FORBAR uses a 1D cable equation which permits to handle the boom curve on the sea surface. SIMBAR uses a 3D membrane finite-element which permits to characterize the submarine boom skirt angle. These numerical models are able to give as much mechanical information as required to optimize the system. A comparison between the two numerical models, 1D model (FORBAR) and 3D model (SIMBAR), is shown in the case of the Elorn river (Brittany, France) contingency plan.
机译:在漏油危机期间,紧急行动计划定义了沿海地区的优先位置,这些位置应受到浮动吊杆的保护。最关心的例子有河口,渔业,牡蛎生产和供水。溢油悬臂是一个长浮结构,悬臂长度可以长达1 km。动臂用于偏离或阻止漂浮污染。采取的策略(偏离或停止)取决于当前速度。在沿海地区,海流的速度和方向是可变的,并且可能取决于河流或潮汐流。环境条件的可变性增加了机械问题的复杂性。动臂应急计划的另一个困难来自于适应边界条件的定义。海深和海岸形态必须与动臂系泊设备兼容:锚,桩和固定点。本文提出了两个数值模型,分别是FORBAR和SIMBAR。 FORBAR使用一维电缆方程,可以处理海面上的悬臂曲线。 SIMBAR使用3D膜有限元,可以表征海底吊臂裙角。这些数值模型能够提供优化系统所需的尽可能多的机械信息。在Elorn河(法国布列塔尼)应急计划中,比较了1D模型(FORBAR)和3D模型(SIMBAR)这两个数值模型。

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