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A COMPARISON OF TWO WAVE MODELS AND THEIR INFLUENCE ON FATIGUE DAMAGE IN SHIP STRUCTURES

机译:两种波模型的比较及其对船舶结构疲劳损伤的影响

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In the maritime industry, fatigue failure is one of the most significant failure modes for ship structures. The fatigue damage in ship structures is mainly caused by the variation of wave loadings applied on ships, leading to variable structural stresses. Therefore, a reliable description of wave environments encountered during a ship's service life is essential for accurate fatigue assessment of ship structures. Besides the wave scatter diagram provided by classification society rules, different statistical wave models have also been built up to model wave environments along arbitrary ship routes. The wave models could provide more specific wave environment for any chosen sailing routes of an individual ship. They may have the potential to be used for some practical applications, such as conceptual ship fatigue design, remaining fatigue life prediction when a ship plans to change its original trade region, and crack maintenance planning etc. Since the development of these models may be based on different sources, e.g. satellite measurements, hindcast data, buoys, etc., the reliability and consistence of wave generations from various wave models must be validated by the measured wave environments in order to be used for those practical applications. In this paper, waves generated from two different wave models, one based on hindcast data and one mainly on satellite data, are compared with measured wave environments encountered by a 2800 TEU container vessel on the North Atlantic route. These wave models are used in the calculation of the fatigue damage in the vessel. The results obtained using waves generated from the two wave models are compared with the fatigue damage calculated based on strain measurements in the ship. Recommendations for future development of the wave models and further investigation to make the applications more realistic for ship fatigue assessment are also presented.
机译:在海事行业中,疲劳失效是船舶结构最重要的失效模式之一。船舶结构的疲劳损伤主要是由于施加在船舶上的波浪载荷的变化引起的,从而导致结构应力的变化。因此,对船舶使用寿命期间遇到的波浪环境的可靠描述对于准确评估船舶结构的疲劳度至关重要。除了船级社规则提供的波散布图以外,还建立了不同的统计波模型来对任意船舶路线上的波环境进行建模。波浪模型可以为单个船舶的任何选定航行路线提供更特定的波浪环境。它们可能具有用于某些实际应用的潜力,例如概念性船舶疲劳设计,船舶计划更改其原始贸易区域时的剩余疲劳寿命预测以及裂缝维护计划等。由于这些模型的开发可能基于在不同的来源,例如卫星测量,后播数据,浮标等,各种波浪模型产生的波浪的可靠性和一致性必须通过所测量的波浪环境来验证,以便用于那些实际应用。在本文中,将两种不同的波浪模型(一种基于后播数据,另一种主要基于卫星数据)产生的波浪与北大西洋航线上的2800 TEU集装箱船遇到的实测波浪环境进行了比较。这些波浪模型用于计算容器中的疲劳损伤。将使用从两个波浪模型生成的波浪获得的结果与基于船舶应变测量计算出的疲劳损伤进行比较。还提出了有关波浪模型的未来发展的建议以及进一步研究的建议,以使该应用对于船舶疲劳评估更加现实。

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