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NUMERICAL STUDY ON SEAKEEPING PERFORMANCE OF A DAMAGED SHIP

机译:损坏船舶海人性能的数值研究

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Ships sailing in the sea may encounter collision, grounding or projectile impacting accidents, which may cause hull damage and subsequent compartment flooding. Due to the effect of the flooding water induced moment and the restoring moment, the damaged ship may have inclination and rolling motion. When the inclination or the rolling motion is too large, it may affect the safety and survivability of ship in navigation and cause severe casualties and property losses. In order to increase the navigation safety and survivability of the damaged ship, a numerical model is established based on the potential flow theory to investigate the seakeeping performance of the damaged ship in two scenarios, i.e., the case before ship damaged, and the case when the damaged ship reaching a relatively stable floating state. The heave, pitch and roll motion responses and corresponding wave-induced loads acting on the ship are analyzed in regular waves. In addition, the effects of the navigation speed and the wave direction on the seakeeping performance are also investigated.
机译:海上航行的船舶可能会遇到碰撞,接地或弹丸影响事故,这可能导致船体损坏和随后的隔间洪水。由于洪水诱导时刻和恢复时刻的效果,损坏的船可能具有倾斜和滚动运动。当倾斜或轧制运动过大时,可能会影响船舶在导航中的安全性和生存能力,并导致严重伤亡和财产损失。为了提高损坏船舶的导航安全性和生存能力,基于潜在流动理论建立了一个数值模型,以研究两种情况下损坏的船舶的海守性能,即船舶损坏前的情况,以及案例损坏的船达到相对稳定的浮动状态。在常规波中分析了在船上作用的凸起,间距和滚动运动响应和相应的波引起的负载。此外,还研究了导航速度和波方向对海守性能的影响。

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