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Fast ships models for seakeeping improvement studies using flaps and T-foil

机译:快速船模型,用于使用襟翼和T型箔进行海上航行改进研究

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摘要

Fast ships are taking a relevant role with a clear interest for military purposes. Fast sea transportation encounters several problems to be solved. This article refers to the difficulties originated by brisk vertical motions. The waves encountered by fast ships induce such vertical motions, and this has negative effects: navigation risks, sea sickness, structural damages, and load displacement. It is also interesting for military uses to stabilize the ship when an aircraft is landing or when precision firing is required. By means of submerged actuators, it is possible to alleviate vertical motions. In this research, a pair of transom flaps and a T-foil near the bow are used to counteract the waves. These actuators must move with the maximum efficiency, taking into account the dynamical characteristics of the ship. As a consequence, there is a problem of automatic control design. To carry out this design, it is important to obtain mathematical models of all the aspects involved in the problem: the ship, the waves, the actuators, and the effect on crew and comfort. The aim of this paper is to present the development of these models and the use of them for problem analysis and control design.
机译:出于军事目的,快速舰船正扮演着重要的角色。快速海上运输遇到几个有待解决的问题。本文提到了由轻快的垂直运动引起的困难。快速船遇到的波浪会引起这种垂直运动,这会产生负面影响:航行风险,晕船,结构破坏和负载位移。当飞机降落或需要精确射击时,军事用途也可以使船舶稳定。通过浸入式执行器,可以减轻垂直运动。在这项研究中,船首附近有一对横板襟翼和一个T型箔来抵消波浪。考虑到船舶的动力特性,这些执行器必须以最大效率运动。结果,存在自动控制设计的问题。要进行此设计,重要的是获得涉及该问题的所有方面的数学模型:船舶,波浪,执行机构以及对乘员和舒适度的影响。本文的目的是介绍这些模型的开发以及它们在问题分析和控制设计中的应用。

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