作为重型双体船灯泡使用的浮波形成研究

E. Cheban, Artur I. Kozhevnikov
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引用次数: 0

摘要

大型货运双体渡船可以提高内河货运的速度。然而,船舶速度的提高会导致船舶航行时波浪高度的增加,这反过来又会对船舶本身的水动力特性产生不利影响,并增强波浪对双体船桥梁和水体生态状况的影响。根据一些科学文章,减少大型双体船波浪阻力的一种方法是在船体之间部署一个浮球。船舶的波浪和波浪阻力取决于浮球的形状,因此最好先研究自由流动时在浮球上形成的波浪参数,然后再研究与双体船一起形成的波浪参数。本文提出了 "浮筒-双体船复合体 "阻力的分析方程,以及可以计算浮筒主要参数的公式。本文介绍了三种椭圆体长度的数值模拟结果:29,2 米(Fr=0,414-0,691)、14,6 米(Fr=0,585-0,978)和 7,3 米(Fr=0,827-1,383),球体 d=1,76 米(Fr=1,685-2,816)。确定了产生的船波的特征。得出了为重型双体船修改浮球形状的可行性结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The study of float wave formation for the usage as heavy-duty catamaran bulbs
The large cargo catamaran ferries can increase speed freight transportation on inland waterways. However, an increase of vessel's speed entails the growth in the heights of ship waves when the ship, which in turn adversely affects both the hydrodynamic characteristics of the ship itself, enhances wave impacts on the catamaran bridge and the ecological state of water bodies. According some scientific articles one way to reduce wave resistance of large catamarans may be deployment а a float-bulb between it hulls. Ship's wave and wave resistance depend on the shape of the float-bulb, so it is advisable to study the parameters of the waves formed first on the bulb in free flow, and then together with the catamaran. In this paper presents analytical equations for the resistance of the "float-catamaran complex", as well as formulas that also allow one to calculate the main parameters of the float-bulb. The results of numerical simulation are presented for the three ellipsoid's length: 29,2m (Fr=0,414-0,691), 14,6m (Fr=0,585-0,978) and 7,3m (Fr=0,827-1,383), ball d=1,76m (Fr=1,685-2,816). The characteristics of the generated ship waves is determined. Conclusions about the feasibility of modifying the float-bulb shape for heavy catamarans is given.
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