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RANS方法的螺旋桨与舵附推力鳍相互干扰水动力性能(英文) 被引量:2

Using RANS to Simulate the Interaction and overall Performance of Propellers and Rudders with Thrust Fins
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摘要 The Reynolds-averaged Navier-Stokes (RANS) method, along with the Fluent software package, was used to study the steady and unsteady interaction of propellers and rudders with additional thrust fins.The sliding mesh model was employed to simulate unsteady interactions between the blades, the rudder and the thrust fins.Based on the numerical results, the pressure distribution on the propeller and the efficiency of the fins were calculated as a function of the attack angle.The RANS results were compared with results calculated by the potential method.It was found that the results for the potential method and the RANS method have good consistency, but they yield maximum efficiencies for the fins, and thus corresponding attack angles, that are not identical. The Reynolds-averaged Navier-Stokes (RANS) method, along with the Fluent software package, was used to study the steady and unsteady interaction of propellers and rudders with additional thrust fins. The sliding mesh model was employed to simulate unsteady interactions between the blades, the rudder and the thrust fins. Based on the numerical results, the pressure distribution on the propeller and the efficiency of the fins were calculated as a function of the attack angle. The RANS results were compared with results calculated by the potential method. It was found that the results for the potential method and the RANS method have good consistency, but they yield maximum efficiencies for the fins, and thus corresponding attack angles, that are not identical.
出处 《Journal of Marine Science and Application》 2010年第3期323-327,共5页 船舶与海洋工程学报(英文版)
基金 Supported by the National Natural Science Foundation of China under Grant No.10702016 the Fundamental Research Funds for the Central Universities No.HEUCFT1001
关键词 舵附推力鳍 雷诺平均 螺旋桨 模拟 性能 STOKES 计算结果 不稳定 rudder with additional fins RANS sliding mesh model
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