首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >EXPERIMENTAL AND NUMERICAL EXTREME MOTIONS AND VERTICAL BENDING MOMENTS INDUCED BY ABNORMAL WAVES ON A BULK CARRIER
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EXPERIMENTAL AND NUMERICAL EXTREME MOTIONS AND VERTICAL BENDING MOMENTS INDUCED BY ABNORMAL WAVES ON A BULK CARRIER

机译:散装运输工具上异常波引起的实验和数值极限运动以及垂直弯曲力矩

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The present investigation focuses on the motions and global structural loads induced by abnormal waves on a bulk carrier. A nonlinear time domain method based on strip theory is used to predict the ship responses. The results are compared with experimental data obtained at the model scale. The time domain hydrodynamic forces are calculated by convolution of linear memory functions, while nonlinear contributions arise from Froude-Krylov forces, hydrostatic forces and shipping of green water. The time domain simulations are compared directly with experimental records from bulk carrier model tests with in head waves for two Froude numbers. Extreme wave conditions (such as the New Year Wave) previously measured at sea during real storms were replicated both at the seakeeping tank and by the numerical code. The comparison analyses show a good agreement between numerical and experimental with good accuracy.
机译:本研究的重点是由散装货船上的异常波引起的运动和整体结构载荷。基于带状理论的非线性时域方法被用来预测舰船的响应。将结果与在模型规模下获得的实验数据进行比较。时域流体动力是通过线性记忆函数的卷积来计算的,而非线性贡献则是由Froude-Krylov力,静水力和绿水运输产生的。将时域仿真与散装货船模型测试的实验记录直接进行比较,其中头波为两个Froude数。先前在真实风暴期间在海上测得的极端海浪条件(例如新年海浪)在海上保管箱和数字代码中均得到了复制。比较分析表明,数值和实验之间具有很好的一致性,并且精度很高。

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