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FACTORS INFLUENCING MANAGED SEA ICE LOADS

机译:影响海冰负荷的因素

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Sea ice management has an important role in enabling the movement of vessels through heavy ice conditions and in reducing the severity of ice interactions with floating systems. Except for analyses of managed ice conditions and loads from the Kulluk drilling vessel, the factors influencing loads from managed ice have received relatively little attention. Ice thickness, the presence of pressure ridges and the average floe size of managed ice are important factors while other features of the ice cover such as floe size distribution and station-keeping system characteristics are also important. This paper focuses on the dynamics of a broken ice field and the displacements of a station-keeping vessel in the horizontal plane using a new two-dimensional discrete element model. The discrete element approach simulates the complex dynamics of the broken ice field and is used here to assess the sensitivity of different scenarios on loads experienced by the station-keeping system. The model approximates the shape of managed sea ice floes by circular discs of random diameters. The mechanics of the broken ice field is driven by the contact forces between individual floes. A viscoelastic contact model is used with boundary conditions and environmental forcings that vary both in time and space. The influence on loads of (1) floe size distribution; (2) stiffness of the station-keeping system; and (3) changes in ice drift direction are examined. The ability to correctly model these factors is critical for effective ice management operations. The results of the study highlight the relative importance of those factors for evaluating operational ice management strategies and for defining operating envelopes.
机译:海冰管理在使船只在重冰条件下移动以及降低冰与浮动系统相互作用的严重性方面具有重要作用。除了分析受控冰的状况和来自Kulluk钻井船的载荷外,影响受控冰的载荷的因素很少受到关注。冰块的厚度,压力脊的存在以及被管理冰块的平均絮凝物大小是重要因素,而冰盖的其他特征(例如絮凝物大小分布和站位保持系统特性)也很重要。本文使用新的二维离散元模型,重点研究了破冰场的动力学和保水船在水平面内的位移。离散元方法模拟了破冰场的复杂动力学,在这里用于评估站场维护系统所经历的载荷对不同情况的敏感性。该模型通过随机直径的圆形圆盘来近似管理海浮冰的形状。破冰场的力学是由各个絮凝物之间的接触力驱动的。粘弹性接触模型用于边界条件和环境强迫,它们在时间和空间上都会变化。 (1)絮凝物的大小分布对载荷的影响; (2)站台保持系统的刚度; (3)研究了冰漂方向的变化。正确建模这些因素的能力对于有效的制冰管理至关重要。研究结果突出了这些因素在评估冰管理策略和确定作业范围方面的相对重要性。

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