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UNCERTAINTY OF A METHODOLOGY TO ESTIMATE GLOBAL SHIP LOADS DURING INTERACTION EVENTS WITH ICE FEATURES

机译:一种方法的不确定性,以估算冰特征的互动事件期间的全球船舶负荷

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This paper describes a methodology to estimate uncertainty of global ice loading from measured accelerations, velocities and displacements. The global load can be estimated by the principle of rigid body dynamics of the ship during interaction events with different ice features. The accuracy of the methodology and estimated load levels were studied with uncertainty analysis. The challenges for the global load calculation from ship motions and challenges related to the uncertainty analysis are discussed extensively. An example case of global ice load and its uncertainty calculated from ship motions is presented. Ship motions in six degrees of freedom were measured using a motion reference unit during interaction events with different ice types during the ice trials of South African research icebreaker S.A. Agulhas Ⅱ in the Bay of Bothnia in the Baltic Sea in March 2012. The highest calculated peak load was 109 kN ± 17 kN with 95 % level of confidence. The analysis indicates that the uncertainty calculation can be applied to the global load calculation method. The uncertainty analysis is most sensitive to the changes in added mass and damping uncertainty. There are challenges related to the global load calculations from ship motions during impact with ridges or rubble fields so further study on the effect of the ship - ice interaction during these impacts is needed.
机译:本文介绍了一种从测量的加速,速度和位移来估计全球冰负荷不确定性的方法。在具有不同冰功能的交互事件期间,可以通过船舶刚性身体动态的原理来估算全局负荷。利用不确定性分析研究了方法论和估计载荷水平的准确性。广泛讨论了从船舶动作和与不确定性分析相关的陆运和挑战的全球负荷计算的挑战。介绍了全局冰负荷的示例情况及其从船舶运动计算的不确定性。在2012年3月在波罗的海海湾的南非研究破冰队SaAgulhasⅡ的不同冰类型期间,使用运动参考单位测量六个自由度的船舶运动。负荷为109 kn±17 kn,置信度95%。分析表明,可以应用于全局负载计算方法的不确定性计算。不确定性分析对增加质量和阻尼不确定性的变化最敏感。在山脊或瓦砾场的影响过程中,存在与船舶运动的全球载荷计算有关,因此需要进一步研究船舶 - 冰相互作用在这些影响中的效果。

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