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首页> 外文期刊>The Transactions of the Royal Institution of Naval Architects >COUPLED RANSE AND LIFTING LINE THEORY FOR ESTIMATION OF SHIP PROPULSION FACTORS
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COUPLED RANSE AND LIFTING LINE THEORY FOR ESTIMATION OF SHIP PROPULSION FACTORS

机译:船舶推力因子估计的耦合距离和上升线理论

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摘要

Advances in Computational Fluid Dynamics (CFD) techniques through the development of the Reynolds-Averaged Navier-Stokes Equations (RANSE) have assisted in estimation of resistance and propulsion characteristics of ships to a reasonable level of accuracy. The aim of this paper is to test and demonstrate the capabilities of the coupled RANSE and Lifting Line theory for undertaking ship resistance, propeller open-water and self-propulsion simulations. Further, parametric studies for generation of numerical propeller design sheets and optimisation of propulsive efficiency using the coupled simulation approach has been discussed. Commercial CFD solver "M/s Flowtech - Shipflow" has been used for the study. Initially, some benchmark experimentalumerical model results are validated with the results of the CFD simulations and then, further parametric analyses have been undertaken with the KRISO Container Ship and the KP505 Propeller. The numerical propeller series and the preliminary study methodology for optimization of location of propeller disc behind the ship's hull are being proposed as an effective concept/feasibility design stage tool for estimation of ship propulsion characteristics.
机译:通过开发雷诺平均Navier-Stokes方程(RANSE)在计算流体动力学(CFD)技术方面的进步有助于将船舶的阻力和推进特性估算到合理的精度水平。本文的目的是测试和演示RANSE和Lifting Line耦合理论在进行船舶阻力,螺旋桨开阔水域和自推进模拟方面的能力。此外,已经讨论了用于生成数值螺旋桨设计表和使用耦合仿真方法优化推进效率的参数研究。商用CFD解算器“ M / s Flowtech-Shipflow”已用于研究。最初,一些基准实验/数值模型结果已通过CFD仿真结果进行了验证,然后,使用KRISO集装箱船和KP505螺旋桨进行了进一步的参数分析。数值推进器系列和优化推进器盘在船体后方位置的初步研究方法正在被提出,作为评估船舶推进特性的有效概念/可行性设计阶段工具。

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