围油栏前浮冰迁移过程及其所受冰载荷数值研究

    Numerical study of ice loads on and oil boom and ice floe drift in front of the boom

    • 摘要: 气候变暖导致北极部分冰区从层冰覆盖逐渐转变为破碎浮冰区,这一变化导致航道内船舶的通航量增加,也带来了浮冰区内石油泄漏事故的威胁。围油栏作为一种控制溢油的工具,在北极浮冰环境下的应用面临复杂挑战,现有研究缺乏对动态水流中浮冰与围油栏碰撞过程的深入研究。本文基于任意拉格朗日欧拉(ALE)方法耦合有限元法(FEM)对固定刚体围油栏与有限块矩形冰相互作用下的围油栏前浮冰迁移过程及所受冰载荷进行研究,深入分析了浮冰尺寸和浮冰密集度对浮冰迁移过程和围油栏所受冰载荷的影响。研究发现,浮冰参数显著影响其在栏前的迁移行为,特别是在浮冰块数增多的情况下,浮冰更容易沿围油栏边缘逃逸,导致拦截失效。此外,同一密集度下,尺寸较大的浮冰多产生短时较大的碰撞力,而尺寸较小的浮冰倾向于产生非线性的持续碰撞力。该方法可以为围油栏在北极浮冰区中布设情况与防护设计提供帮助。

       

      Abstract: Global warming has led to significant changes in the Arctic ice condition,characterized by a gradual transition from level ice cover to broken ice zones. This change has increased vessel traffic along Arctic shipping lanes and also introduces the risk of oil spills accidents in the ice floe areas. As a tool for oil spill containment,oil booms face complex challenges when deployed in Arctic ice floe environments. However,existing studies have not sufficiently investigated the collision process between ice floes and oil booms under dynamic water flow conditions. In this study,the Arbitrary Lagrangian Eulerian (ALE) method coupled with Finite Element Method (FEM) is used to investigate the drift process of ice floes in front of a fixed rigid oil boom and the ice loads acting on the boom during its interaction with a finite number of rectangular ice floes. The effects of ice floe size and ice concentration on ice floe drift behavior and boom ice loads are comprehensively analyzed. The results show that the ice floes parameters significantly affect their drift behavior in front of the boom. Particularly,as the number of ice floes increases,the ice floes are more likely to escape along the boom edge,resulting in interception failure. Furthermore,under the same ice concentration,larger ice floes tend to produce short-duration high collision forces,while smaller ice floes are more likely to generate nonlinear and sustained collision forces.This proposed method can provide support for the deployment and protective design of oil booms in Arctic ice floe areas.

       

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