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Numerical simulation on the water entry of bow-flare section considering bulbous bow

机译:考虑球形弓的弓箭部分水处理数值模拟

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The hydrodynamic problem of bow-flare section entering into water was studied through the CFD(Computational Fluid Dynamics) method. A two-phase compressible flow model was established based on N-S equations and modeled by VOF (Volume of Fluid) algorithm. The geometric reconstruction approach was adopted to track the free surface and a dynamic mesh approach is used to treat the body motion. The bulbous bow is included to clarify its effect on the impact hydrodynamics, where two kinds of ship-like sections were chosen: one with a bulb at the bottom and the other without. Impact hydrodynamic characteristics including falling kinematics, free surface and slamming loads are discussed, showing that the pressure nearby the bulbous bow is getting higher than the case without bulb, which should be paid attention in the ship structure design. Special attention is paid to the influence of water entry velocity on secondary impact and results show that water entry velocity has a significant effect on the first pressure peak.
机译:通过CFD(计算流体动力学)方法研究了进入水的弓炬切片的流体动力学问题。基于N-S方程建立了一种两相可压缩流模型,由VOF(流体体积)算法建立。采用几何重建方法来跟踪自由表面,使用动态网格方法来治疗车身运动。包括球根弓以澄清其对冲击流体动力学的影响,其中选择了两种船舶部分:一个底部灯泡,另一个没有。讨论了包括落下运动学,自由表面和埋入载荷的冲击流体动力学特性,表明球茎弓的压力越来越高于没有灯泡的情况,这应该在船舶结构设计中注意。特别关注水入口速度对二次冲击的影响,结果表明,水入口速度对第一压力峰具有显着影响。

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