首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >HYDRODYNAMIC LOADS ON A SUBMERGED FLOATING TUBE BRIDGE INDUCED BY A PASSING SHIP OR TWO SHIPS IN MANEUVER IN CALM WATER
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HYDRODYNAMIC LOADS ON A SUBMERGED FLOATING TUBE BRIDGE INDUCED BY A PASSING SHIP OR TWO SHIPS IN MANEUVER IN CALM WATER

机译:静水中机动或两船通过引起的水下浮管桥上的水力载荷

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The European highway E39 ferry-free Project led by the Norwegian Public Roads Administration (Statens vegvesen, NPRA) is in its full momentum on solving the technological challenges to cross the deep (up to 1350 m) and wide (up to around 6 km) Norwegian fjords. Different types of crossing solutions have been explored up to now. The current paper is related to the submerged floating tube bridge (SFTB) solution. But the model itself can be applied to any other structure that may experience loads induced by a passing vessel. The method of Xiang and Faltinsen (2010) for evaluating the calm water interacting loads between two vessels up to the point of collision has been extended to include an SFTB. Equations of loads are extended to include also the vertical load and pitch moment on the body in question. The vertical load induced on the SFTB is investigated for the purpose of identifying the significance of this effect on the design. The investigation includes this effect under different maneuver scenarios of the passing vessels: a single ship passing, two ships advancing in side-by-side positions, encountering or overtaking maneuvers. In addition, parametric studies on the submergence of floating tube bridge, and vessel speeds are studied to get more understanding of this effect. A simple exercise shows that it is worth of further investigation on ship-induced surface waves effects on the structures in vicinity of the ship path. Finally, the evaluated loads are compared with other types of loads from the analysis results of the on-going NPRA SFTB design.
机译:由挪威公共道路管理局(Statens vegvesen,NPRA)牵头的欧洲E39无渡轮项目正全力以赴应对跨越深处(长达1350 m)和宽处(长达6 km)的技术挑战挪威的峡湾。迄今为止,已经探索了不同类型的交叉解决方案。当前的论文与浸入式浮管桥(SFTB)解决方案有关。但是该模型本身可以应用于任何其他可能经历过船所引起的载荷的结构。 Xiang和Faltinsen(2010)的方法用于评估两艘船至碰撞点之间的静水相互作用载荷已扩展至包括SFTB。载荷方程被扩展为还包括所讨论物体上的垂直载荷和俯仰力矩。为了确定这种影响对设计的重要性,研究了在SFTB上引起的垂直载荷。调查包括在过往船只的不同操纵场景下的这种影响:单艘船通过,两艘船并排前进,相遇或超车。此外,还对浮管桥的淹没以及船速进行了参数研究,以加深对这种影响的了解。一个简单的练习表明,值得进一步研究船诱导的表面波对船径附近结构的影响。最后,根据正在进行的NPRA SFTB设计的分析结果,将评估后的负载与其他类型的负载进行比较。

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