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首页> 外文期刊>Ocean Engineering >Submarine propeller computations and application to self-propulsion of DARPA Suboff
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Submarine propeller computations and application to self-propulsion of DARPA Suboff

机译:潜艇螺旋桨的计算及其在DARPA Suboff自推进系统中的应用

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摘要

Simulations of the submarine propeller E1619 using the overset flow solver CFDShip-Iowa V4.5 are presented. Propeller open water curves were obtained for two grids for a wide range of advance coefficients covering high to moderately low loads, and results compared with available experimental data. A verification study was performed for one advance coefficient (J=0.71) on four grids and three time step sizes. The study shows that grid refinement has a weak effect on thrust and torque but very strongly affects the wake. The effect of the turbulence model on the wake was evaluated at J=0.4 comparing results with RANS, DES, DDES and with no turbulence model, showing that RANS overly dissipates the wake and that in the solution with no turbulence model the tip vortices quickly become unphysically unstable. Tip vortex pairing is observed and described for J≤0.71, showing multiple vortices merging for higher loads. The wake velocities are compared against experimental data for 7=0.74, showing good agreement. Self-propulsion computations of the DARPA Suboff generic submarine hull fitted with sail, rudders, stern planes and the E1619 propeller were performed in model scale and the resulting propeller performance analyzed.
机译:提出了使用溢流求解器CFDShip-Iowa V4.5对潜艇螺旋桨E1619进行的仿真。获得了两个栅格的螺旋桨开水曲线,这些栅格具有覆盖从高到中等低负载的各种提前系数,并且将结果与可用的实验数据进行了比较。对四个网格和三个时间步长的一个提前系数(J = 0.71)进行了验证研究。研究表明,网格细化对推力和扭矩影响较小,但对尾流影响很大。在J = 0.4时评估了湍流模型对尾流的影响,将结果与RANS,DES,DDES和没有湍流模型的结果进行了比较,表明RANS过度耗散了尾流,而在没有湍流模型的溶液中,尖端涡旋迅速变为物理上不稳定。观察到并描述了J≤0.71的尖端涡流配对,表明多个涡旋合并为更高的载荷。将苏醒速度与实验数据进行比较,得出7 = 0.74,显示出良好的一致性。在模型规模上对装有帆,舵,船尾飞机和E1619螺旋桨的DARPA Suboff通用潜艇船体进行了自我推进计算,并对得到的螺旋桨性能进行了分析。

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