首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2011 >ASSESSMENT OF FULL-SCALE MEASUREMENTS WITH REGARD TO EXTREME HOGGING AND SAGGING CONDITION OF CONTAINER SHIPS
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ASSESSMENT OF FULL-SCALE MEASUREMENTS WITH REGARD TO EXTREME HOGGING AND SAGGING CONDITION OF CONTAINER SHIPS

机译:考虑到集装箱船的极端起伏和下沉状况的全面测量

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In the design of a vessel's ultimate strength the extreme hogging condition is of great concern. Due to special properties of container ship structures, such as large bow flare and overhanging stern, wave-induced slamming makes the ship responses more skewed to sagging conditions. In particular in large sea states, the ratio between maximum sagging and hogging can be quite high. Hence, the sagging condition might be very crucial with respect to a ship's ultimate strength.In this study, the extreme response caused by hogging and sagging is derived from upcrossing spectrums of ship responses. The Weibull fitting method and Rice's formula for the computation of the upcrossing spectrum are discussed using full-scale measurements from a container vessel on the North Atlantic trade. The extreme ship responses are therefore predicted using the long-term upcrossing spectrum. In the case where the ship response can be approximately treated as a series of stationary Gaussian processes, the corresponding upcrossings are computed by the explicit Rice's formula. For the non-Gaussian ship response, it is shown that the 4-moment Hermite transformation is an efficient approach to compute the corresponding upcrossing spectrums.The parameters in the transformation mainly depend on the wave environments and operation profiles. The relations between these parameters and the wave environments are needed if no measurement is available. However, according to the full-scale measurements, it is not possible to find general formulas to estimate the parameters in terms of wave environments or operation profiles for the practical applications.
机译:在设计船舶的极限强度时,极端的起伏状况是非常令人关注的。由于集装箱船结构的特殊特性,例如大的船首耀斑和悬垂的船尾,波浪引起的砰击使船的响应更易下垂。特别是在大海洋国家,最大下垂和下垂之间的比率可能很高。因此,下垂条件对于船舶的极限强度可能是非常关键的。在这项研究中,由下垂和下垂引起的极端响应是从向上交叉的船舶响应谱中得出的。使用北大​​西洋贸易中一艘集装箱船的满量程测量值讨论了威布尔拟合方法和赖斯公式,用于计算上行频谱。因此,将使用长期上行频谱来预测极端船舶的响应。如果可以将船舶响应近似地视为一系列平稳的高斯过程,则通过明确的莱斯公式来计算相应的交叉。对于非高斯船舶响应,表明4矩Hermite变换是一种计算对应的上越谱的有效方法,该变换中的参数主要取决于波浪环境和操作剖面。如果没有可用的测量,则需要这些参数与波浪环境之间的关系。然而,根据满量程测量,不可能找到通用公式来估计实际应用中的波浪环境或运行曲线方面的参数。

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