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ESTIMATING ICEBERG-WAVE COMPANION LOADS USING PROBABILISTIC METHODS

机译:使用概率方法估算冰山伴载荷

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Many challenges arise when designing offshore structures for iceberg loads in arctic and subarctic regions. To help the designer, the ISO 19906:2010 standard provides guidance for the calculation of design ice loads using both deterministic and probabilistic approaches. In determining design loads for different environmental factors, both principal and companion actions must be taken into account; an example is iceberg actions and companion wave actions. ISO 19906 allows the designer to calculate the companion wave action as a specified fraction (combination factor) of the extreme level (EL) design wave load. Alternatively, the designer can calculate appropriate companion wave loads explicitly. A methodology has been developed at C-CORE in which representative iceberg actions are determined using a software package, the Iceberg Load Software (ILS). This is a probabilistic tool which uses Monte Carlo simulation to obtain a distribution of global impact forces based on the expected range of iceberg and environmental conditions that a structure would likely encounter. The software provides a reasonably accurate representation of the iceberg loading situation, following the provisions of ISO 19906:2010, without introducing unnecessary conservatism in the design load. In the software, the influence of waves on the iceberg actions are considered, but companion wave loads must be calculated and added externally to the software, The software accounts for the probability of different sea state conditions and the influence of the sea state on the probability and severity of iceberg impact. given the correlations between the sea state, iceberg management effectiveness and iceberg drift and wave-induced velocity. The additional hydrodynamic pressure due to the wave during the period of the impact; is not considered. This wave loading will be complicated by the influence that the presence the iceberg and structure have on the local sea state. In this paper, brief descriptions are provided of background studies on companion wave loading and the application of companion load factors in ISO 19906. The companion load factors allow the designer to apply the design wave load, which is calculated for situations with no iceberg present, to the case of iceberg impacts. In this study, a methodology is presented for determining companion wave loads based on the distribution of sea states expected during an iceberg impact. These sea states are significantly less severe than that associated with the design wave load as iceberg impacts are rare events. The companion wave loads are determined without accounting for the influence of the iceberg; this is thought to be quite conservative. An example application of the methodology is presented for a hypothetical platform located on the Grand Banks, off the east coast of Newfoundland. Iceberg actions, wave actions and combined iceberg-wave actions are estimated using the described methodology. Comparisons are provided for the resulting companion loads and those based on ISO 19906:2010 companion load factors applied to the extreme level wave load.
机译:在北极和亚曲线区域设计冰山负荷的海上结构时出现了许多挑战。为帮助设计师,ISO 19906:2010标准提供了使用既定型和概率方法计算设计冰负荷的指导。在确定不同环境因素的设计负荷时,必须考虑本金和伴侣行动;一个例子是冰山动作和伴侣波动。 ISO 19906允许设计人员计算伴随波动作为极端水平(EL)设计波浪负载的指定分数(组合因子)。或者,设计者可以明确计算适当的伴随波负荷。在C-Core中开发了一种方法,其中代表冰山动作使用软件包,冰山装载软件(ILS)确定。这是一个概率工具,它使用蒙特卡罗模拟,基于结构可能会遇到的预期范围和环境条件的预期范围来获得全球冲击力的分布。该软件在ISO 19906:2010的规定下,提供了冰山装载情况的合理准确表示,而不会在设计负荷中引入不必要的保守主义。在软件中,考虑了波对冰山动作的影响,但必须在软件外部计算并添加伴侣波浪,该软件占不同海区条件的可能性以及海州对概率的影响和冰山的严重程度。鉴于海区,冰山管理效率与冰山漂移与波引起的速度之间的相关性。撞击期间波引起的额外流体动力学压力;不考虑。由于存在冰山和结构对当地海区的影响,这种波浪装载将变得复杂。在本文中,提供了关于伴侣波装载的背景研究以及ISO 19906中的伴随载荷因子的应用。伴随装载因子允许设计人员应用设计波浪负荷,这是针对没有冰山存在的情况计算的设计波浪载荷,对于冰山影响的情况。在该研究中,提出了一种方法,用于基于冰山冲击期间预期的海州的分布来确定伴随波载荷。随着冰山的影响是罕见的事件,这些海州的严重显着严重。伴随波浪载荷在没有核算冰山的影响而不核算;这被认为是非常保守的。该方法的示例应用于纽芬兰东海岸位于宏伟银行的假设平台上。使用所描述的方法估计冰山动作,波动和组合的冰布波动作。提供了比较的伴随负载和基于ISO 19906:2010伴随载荷因子的比较,适用于极端水平波浪负荷。

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