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AN ASSESSMENT OF LOAD AND RESPONSE FOR HORIZONTAL SLAMMING LOADS FROM MODEL SCALE EXPERIMENTS

机译:尺度规模实验中水平埋入负载的负荷和响应评估

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Steep breaking waves can result in high impact loads on offshore structures, and several model test campaigns have been conducted to assess the effect of horizontal wave slamming. High loads have been measured, and they can be challenging to withstand without significant deformation. For wave slamming problems it is common to estimate the characteristic slamming load and assume that this will give an equivalent characteristic response. One challenge related to the slamming load is that it has a large variability in load level, the duration of the load and the shape of the overall load pulse. This variability can have a large impact on the estimated response to the characteristic load, causing a similar or larger variability in response. Due to the sensitivity to the structural response, it may be difficult to interpret large amounts of such data to arrive at a relevant design load without making overly conservative assumptions. This paper investigates the sensitivity of the structural response to assumptions made in the material modelling and how the short term variability is affected if we instead of load use response indicators such as plastic strain and max deformation to arrive at a characteristic load. For this purpose, a simplified dynamic response model is created, and the recorded wave impact events can then be evaluated based on the predicted structural response from the simplified model. It was found that the structural response is sensitive to the structural configuration. The assumed material behavior and hydro-elastoplastic effects were identified to greatly affect the structural response. A reasonable approach to arrive at the q-annual response seems to be to first estimate the q-annual extreme slamming load, and then run the structural analysis on several of the measured slamming time series with the estimated q-annual extreme pressure.
机译:陡峭的破坏波可以导致海上结构的高冲击载荷,并进行了几种模型测试活动以评估水平波击的效果。已经测量了高负荷,并且它们可能具有挑战性而无需显着变形。对于波浪砰的问题,估计特征扰乱负载是常见的,并且假设这将提供等效的特征响应。与撞击负荷相关的一个挑战是它在负载水平中具有大的可变性,负载的持续时间和整体负载脉冲的形状。这种可变性可以对对特征负载的估计响应产生大的影响,导致响应的相似或更大的变化。由于对结构响应的敏感性,可能难以解释大量这些数据来实现相关的设计负载而不进行过于保守的假设。本文研究了结构响应对材料建模中的假设的敏感性以及如果我们代替负载使用诸如塑料应变和最大变形,以达到特征负载,则如何影响短期变异性。为此目的,创建简化的动态响应模型,然后可以基于来自简化模型的预测结构响应来评估记录的波冲击事件。发现结构响应对结构配置敏感。鉴定假设的材料行为和水力 - 弹性塑料效果极大地影响结构应答。到达Q年度反应的合理方法似乎是首先估计Q年度极端砰砰声载荷,然后在估计的Q年度极限压力下对几个测量的砰置时间序列进行结构分析。

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