船首推进器开度对快速双体船阻力影响的数值分析

S. Duman, E. Boulougouris, Myo Zin Aung, Xue Xu, A. Nazemian
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引用次数: 0

摘要

在狭窄的水域中驾驶船舶对于高速渡轮的有效运行尤为重要。船首推进器是显而易见的解决方案。然而,它可能对血管的阻力产生不利影响。对于双体船来说,半船体间的干涉是一个重要而复杂的现象,因为它影响着船舶的许多方面的水动力性能。本文主要研究了带/不带船首推力器隧道的快速双体船的流体流动。一艘零碳快速客运渡轮双体船船体在两种不同速度下进行了阻力模拟。首先,利用商用RANS求解软件对无船首开口的双体船船体进行了数值模拟。在此基础上,对打开船首推力器的双体船船体进行了模拟。最后,船头的开口已经填满了一个网格平面,用于垃圾过滤。这一发现对快速双体船渡轮的设计者和经营者来说非常有趣。本文以比较的方法讨论了这三种情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical analysis of the impact of the bow thruster opening on a fast catamaran’s resistance
Steering a ship in confined waters is particularly important for the efficient operation of high-speed ferries. Bow thruster is the obvious solution. It may have however an adverse effect on the resistance of the vessel. The interference between demi hulls in the case of catamarans becomes an important and complex phenomenon as it affects many aspects of the hydrodynamic performance of the vessel. This study has focused on the analysis of the fluid flow around a fast catamaran with/without a bow thruster tunnel. A zero-carbon fast passenger ferry catamaran hull has been subjected to resistance simulations at two different speeds. Firstly, the catamaran hull without a bow opening has been simulated by commercial RANS solver software. After that, the simulations have been repeated for the catamaran hull with bow thruster opening. Finally, the bow opening has been filled with a gridded plane for garbage straining. The findings are very interesting for the fast catamaran ferry designers and operators. They are discussed for all three conditions in a comparative approach.
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