首页> 外文会议>International symposium on practical design of ships and other floating structures;PRADS 2010 >Consequence of Whipping and Springing on Fatigue for a 8600TEU Container Vessel in Different Trades Based on Model Tests
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Consequence of Whipping and Springing on Fatigue for a 8600TEU Container Vessel in Different Trades Based on Model Tests

机译:基于模型测试的8600TEU集装箱船在不同行业中的疲劳发生弹跳和弹跳的后果

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DNV, HHI, CeSOS and Marintek have joined forces to investigate further the effect of springing and whipping on a real 340m container vessel. Model tests with a new flexible design have been carried out to investigate how the wave induced vibration affects the fatigue loading at different cross sections. The focus is given to the consequence of wave induced vibrations on fatigue in various trades. However, the effect of whipping on extreme loading is also briefly investigated. The tests are carried out in head seas, and all parameters are realistic such as loading condition, vibration shape, vibration frequencies, damping, wave spectra and speed. The model setup is however arranged for subsequent torsion vibrations assessment for other wave headings. The results confirm that wave induced vibrations can be of considerable magnitude relative to the conventional wave damage for the different trades. When a vessel is intended for operation in harsh ocean, where fatigue in general is an issue, it is recommended to include the effect of wave induced vibration in the design phase. The maximum whipping response is also relatively high, considered typical for this vessel type and size. With whipping the IACS rule levels may easily be exceeded also in less harsh storms. Hence, prudent seamanship is considered wise when encountering severe storms in head seas due to the effect of whipping. The vibration, as an indicator, will be easily felt onboard, but hull monitoring is regarded as a better alternative to capture both the effect of vibration on fatigue and extreme loading.
机译:DNV,HHI,CeSOS和Marintek联手进一步研究了在真正的340m集装箱船上弹跳和搅打的影响。已经进行了具有新的灵活设计的模型测试,以研究波浪引起的振动如何影响不同横截面处的疲劳载荷。在各种行业中,重点放在了波浪引起的振动对疲劳的影响上。但是,鞭打对极限载荷的影响也得到了简要研究。测试是在公海进行的,所有参数都是真实的,例如负载条件,振动形状,振动频率,阻尼,波谱和速度。然而,模型设置被安排用于随后针对其他波浪方向的扭转振动评估。结果证实,与不同行业的常规波浪破坏相比,波浪引起的振动可能具有相当大的幅度。当船舶打算在通常会引起疲劳的恶劣海洋中操作时,建议在设计阶段考虑波浪引起的振动的影响。最大鞭打响应也相对较高,被认为是这种容器类型和尺寸的典型特征。通过轻击,在不太恶劣的风暴中也很容易超过IACS规则级别。因此,由于鞭打的影响,在公海遇到严重风暴时,谨慎的航海技术被认为是明智的。作为指示器,振动很容易在船上感觉到,但是船体监测被认为是更好的选择,可以同时捕捉振动对疲劳和极端载荷的影响。

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