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INFLUENCE OF MODELING FULL SCALE BASED MANAGED ICE CONDITIONS IN DP ICE MODEL TESTS

机译:基于规模的基于规模的管理冰条件在DP冰模型测试中的影响

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Recently there have been significant steps taken regarding the development of ice model testing capabilities for dynamic positioning (DP) operations in ice. Such developments have stemmed from the knowledge gained through involvement in real life DP operations in ice, namely the subsea construction operation with the CSO Constructor in the Sakhalin offshore in 1999, and the Arctic Coring Expedition with the icebreaker Vidar Viking near the North Pole in 2004. Lessons learned from these operations have lead to the conclusion that ice model testing for DP vessels in ice may require the need for a new approach to modeling ice conditions in order to achieve results that would start to approach real life experience. Two big steps have been taken that attempt to narrow the gap between model scale results and full scale expectations. First, a novel approach of starting to model ice such that the ice more closely resembles managed ice conditions that a DP vessel would be expected to operate in full scale was developed and applied in actual ice model tests. This will be the focus of this paper. Second, an actual DP system was installed on a model and tested in an ice model basin, to achieve a realistic level of behaviour of the model to match the real life operation as close as possible. Additional information on this topic can be found in Hals and Efraimsson (2011). These two developments constitute a major advancement in the development of dynamic positioning vessels and their DP systems in ice, and provide an approach to evaluate their operational capabilities.
机译:最近,关于冰上的动态定位(DP)操作的冰型模型测试能力的开发,采取了重大步骤。这种发展源于通过参与ICE中的现实生活DP操作而获得的知识,即1999年萨卡林岛海上的CSO构造函数的海底施工运行,以及2004年北极附近的破冰船VIDAR Viking的北极取向探险探险所获得的教训,从这些操作导致的结论是,在冰上DP冰船模型试验可能需要一种新的方法,以达到效果,将开始接近现实生活中体验模拟冰情的需要。已经采取了两次大步骤,试图缩小模型比例结果与全面预期之间的差距。首先,一种开始模拟冰的新方法,使得冰更加紧密地类似于管理的冰条件,即在实际的冰模型测试中开发并应用了DP船舶的达到DP船舶。这将是本文的重点。其次,在模型上安装了实际的DP系统并在ICE模型盆地测试,以实现模型的逼真行为水平,以与尽可能接近的真实寿命操作相匹配。有关此主题的其他信息,请参阅HALS和EFRaimsson(2011)。这两种发展构成了在冰中发展动态定位船舶及其DP系统的主要进步,并提供了一种评估其操作能力的方法。

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