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首页> 外文期刊>Transactions of the Royal Institution of Naval Architects >HYDRODYNAMIC HULL FORM DESIGN SPACE EXPLORATION OF LARGE MEDIUM-SPEED CATAMARANS USING FULL-SCALE CFD
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HYDRODYNAMIC HULL FORM DESIGN SPACE EXPLORATION OF LARGE MEDIUM-SPEED CATAMARANS USING FULL-SCALE CFD

机译:大型CFD的全尺寸CFD水动力船体设计空间探索

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摘要

Large medium-speed catamarans are a new class of vessel currently under development as fuel-efficient ferries for sustainable fast sea transportation. Appropriate data to derive design guidelines for such vessels are not available and therefore a wide range of demihull slenderness ratios were studied to investigate the design space for fuel-efficient operation. Computational fluid dynamics for viscous free-surface flow simulations were utilised to investigate resistance properties of different catamaran configurations having a similar deadweight at light displacement, but with lengths ranging from 110 m to 190 m. The simulations were conducted at full-scale Reynolds numbers (log(Re) = 8.9 - 9.6) and Froude numbers ranged from Fr = 0.25 to 0.49. Hulls of 130 m and below had high transport efficiency below 26 knots and in light loading conditions while hulls of 150 m and 170 m showed benefits for heavier displacement cases and speeds up to 35 knots. Furthermore, the study concluded that the lowest drag was achieved with demihull slenderness ratios between 11 and 13.
机译:大型中速双体船是一类新型船舶,目前正在开发中,作为节油型渡轮,用于可持续的快速海上运输。没有获得用于此类船舶的设计指南的适当数据,因此,研究了多种船体细长比,以研究节油运行的设计空间。用于粘性自由表面流动模拟的计算流体动力学用于研究在轻位移时具有相似自重但长度范围为110 m至190 m的不同双体船配置的阻力特性。模拟在满量程雷诺数(log(Re)= 8.9-9.6)下进行,弗洛德数范围从Fr = 0.25到0.49。 130 m及以下的船体在26节以下且在轻载条件下具有较高的运输效率,而150 m和170 m的船体对于重载情况和高达35节的速度表现出优势。此外,研究得出的结论是,除雾器细长比在11到13之间时,阻力最小。

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