首页> 外文会议>International Conference on Innovation in High Speed Marine Vessels >A 2D SMOOTHED PARTICLE HYDRODYNAMICS THEORY FOR CALCULATING SLAMMING LOADS ON SHIP HULL SECTIONS
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A 2D SMOOTHED PARTICLE HYDRODYNAMICS THEORY FOR CALCULATING SLAMMING LOADS ON SHIP HULL SECTIONS

机译:用于计算船壳截面的砰荷载量的2D平滑粒子流体动力学理论

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Current methods for assessing slamming of ships in head seas are generally based on constant-velocity wedge impact results for each hull section. A 2D Smoothed Particle Hydrodynamics (SPH) method is described for calculating slamming loads on realistic hull section shapes and impact velocity profiles. SPH is a particle-based method that is mesh-free and is therefore able to accurately simulate large free surface deformations such as jets and splashes, which are an important factor in slamming events. It is shown that large slamming pressures are predicted on wedge shaped hull sections and the concave part of flared monohull sections. Similarly, cross-deck slamming of catamaran hulls can produce large slamming pressures at the top of the arches. The nature of relative vertical velocity profiles during slam events is also discussed and hull sections with varying velocity profiles are modelled using SPH to show the effect on slamming pressures as compared to the commonly used constant velocity profile.
机译:用于评估海洋中船舶掠夺的目前的方法通常基于每个船体部分的恒速楔形影响结果。描述了2D平滑的粒子流体动力学(SPH)方法,用于计算实际船体部分形状和冲击速度剖面上的撞击载荷。 SPH是一种基于颗粒的方法,可以自由网,因此能够精确地模拟大的自由表面变形,例如喷射和溅起,这是潜在事件的重要因素。结果表明,在楔形船体部分和喇叭形单壳部分的凹入部分上预测了大的撞击压力。同样,双体船船体的跨甲板猛击可以在拱顶上产生大的砰砰声。还讨论了相对垂直速度分布的性质,并且使用SPH建模具有不同速度分布的船体部分,以显示与常用的恒定速度曲线相比的对剥离压力的影响。

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