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FOCUSSING THE WAVE-WAKE SYSTEM OF A HIGH-SPEED MARINE FERRY

机译:侧重于高速海运渡轮的波浪唤醒系统

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The wave-wake system generated by a high-speed ferry is a major problem for many of the world's routes. This applies particularly when the ferry is required to operate in a confined situation, such as in a river or near the shore of a major port. Indeed, in recent years, legal disputes have arisen as a result of the allegations of damage caused by the wave systems created by these ferries. As a result, naval architects are now becoming more aware of the need to incorporate low-wave-wake characteristics in their ferries at the design stage, rather than after problems occur during operation of the new vessel. In the current work, it is not only the wave pattern itself that is considered. In addition, the divergent wave system is the subject of the analysis. Thus, the intention is to seek hull concepts that focus the wave energy behind the vessel rather than to its sides. That is, the purpose is to minimize the energy in the divergent wave system, where the potential to cause harm is greater. In this theoretical and experimental investigation, it is shown that monohulls, catamarans, trimarans, and tetramarans possess quite different characteristics in this regard. It is further demonstrated how the length of the vessel plays a major role, in order to provide guidance for designers wishing to create low-wash ships. It is also proven that vessels possessing a greater number of subhulls generate both a smaller overall wave system and a smaller divergent wave system. It is remarkable that this relative improvement is almost identical for the two wave systems. Thus, the aim of producing a certain degree of focussing per se was not achieved. On the other hand, it has been amply demonstrated here, that the multihulls and the tetramaran, in particular, are advantageous in reducing the magnitude of the generated wave system.
机译:由高速渡轮产生的波浪唤醒系统是世界上许多航线的主要问题。特别适用于渡轮需要在狭窄的情况下运行,例如在河里或主要港口的岸边。事实上,近年来,由于这些渡轮创造的波浪系统造成的损害指控,因此已经出现了法律纠纷。因此,海军架构师现在越来越意识到在设计阶段,在设计阶段将低波唤醒特性结合在其渡轮中,而不是在新船舶操作期间发生问题。在当前的工作中,它不仅是所考虑的波模式本身。此外,发散波系统是分析的主题。因此,目的是寻求船体概念,将波浪能量集中在船舶后面而不是其侧面。也就是说,目的是最大限度地减少发散波系统中的能量,其中造成伤害的可能性更大。在这种理论和实验研究中,显示在这方面的单卤,双氰酸酯,三甲烷和四马纳斯具有相当不同的特征。进一步证明了船舶的长度如何发挥重要作用,以便为希望创造出低洗船的设计者提供指导。还证明拥有更多数量的亚壳的血管产生较小的整体波系统和较小的发散波系统。对于两个波系统来说,这种相对改善几乎是相同的。因此,没有实现产生一定程度的聚焦程度的目的。另一方面,这里已经展示了,其中多壳和四脉兰,特别是有利于降低所产生的波系统的大小。

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