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ADVANCED WEATHERVANING IN ICE

机译:冰上高级天气

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The reported presence of one third of remaining fossil reserves in the Arctic has sparked a lot of interest from energy companies. This has raised the necessity of developing specific engineering tools to design safely and accurately arctic-compliant offshore structures. The mooring system design of a turret-moored vessel in ice-infested waters is a clear example of such a key engineering tool. In the arctic region, a turret-moored vessel shall be designed to face many ice features: level ice, ice ridges or even icebergs. Regarding specifically level ice, a turret-moored vessel will tend to align her heading (to weather vane) with the ice sheet drift direction in order to decrease the mooring loads applied by this ice sheet. For a vessel already embedded in an ice sheet, a rapid change in the ice drift direction will suddenly increase the ice loads before the weathervaning occurs. This sudden increase in mooring loads may be a governing event for the turret-mooring system and should therefore be understood and simulated properly to ensure a safe design. The paper presents ADWICE (Advanced Weathervaning in ICE), an engineering tool dedicated to the calculation of the weathervaning of ship-shaped vessels in level ice. In ADWICE, the ice load formulation relies on the Croasdale model. Ice loads are calculated and applied to the vessel quasi-statically at each time step. The software also updates the hull waterline contour at each time step in order to calculate precisely the locations of contact between the hull and the ice sheet. Model tests of a turret-moored vessel have been performed in an ice basin. Validation of the simulated response is performed by comparison with model tests results in terms of weathervaning time, maximum mooring loads, and vessel motions.
机译:据报道,北极剩余的化石储量中有三分之一存在,这引起了能源公司的极大兴趣。这增加了开发特定工程工具以安全,准确地设计符合北极标准的海上结构的必要性。冰满水域中的炮塔式停泊船舶的系泊系统设计就是这种关键工程工具的一个明显例子。在北极地区,应将转塔式停泊的船舶设计为面对许多冰雪特征:水平冰,冰脊甚至冰山。关于具体的平冰,转塔系泊的船只将趋向于将其航向(对准风向标)与冰原漂移方向对准,以减少该冰原所施加的系泊载荷。对于已经嵌入冰盖中的船只,在风向标发生之前,冰漂移方向的快速变化会突然增加冰负荷。系泊负载的突然增加可能是炮塔系泊系统的主要事件,因此应正确理解和模拟,以确保设计安全。本文介绍了ADWICE(ICE中的高级风标),这是一种工程工具,专用于计算水平冰中船形船只的风标。在ADWICE中,冰荷载公式依赖于Croasdale模型。计算冰负荷,并在每个时间步准静态地将其施加到容器上。该软件还在每个时间步更新船体水线轮廓,以便精确计算船体与冰盖之间的接触位置。已在冰盆中进行了塔架式停泊船只的模型测试。通过在风向标时间,最大系泊载荷和船舶运动方面与模型测试结果进行比较,可以对模拟响应进行验证。

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