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首页> 外文期刊>Journal of visualization >Effect of vortex generators on hydrodynamic behavior of an underwater axisymmetric hull at high angles of attack
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Effect of vortex generators on hydrodynamic behavior of an underwater axisymmetric hull at high angles of attack

机译:旋涡发生器对高攻角水下轴对称船体水动力行为的影响

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摘要

Underwater vehicles when yawed to free stream flow, like submarines in a turning maneuver, produce large vortical separated regions. This vortical flow affects acoustic, body drag, control effectiveness and maneuverability. A suitable way to reduce the effects of this separated flow is to use vortex generators. The main goal of this study is to investigate the effect of the vortex generator on the flow field around a standard underwater model employing the vortex generators by using the oil flow visualization method in wind tunnel only in yaw direction (0° ≤ β ≤ 30° angles of attack, due to the experimental cost) and the CFD method in the pitch direction (0° ≤ α ≤ 30° angles of attack) and the yaw direction (0° ≤ β ≤ 30° angles of attack). Numerical simulations are performed for the investigation of the DARPA SUBOFF bare hull geometry with the vortex generators placed on it. The cross-flow interaction between the pressure side and the suction side is studied in the presence of angle of attack. For this study, the standard k-ε model of turbulence is used for solving the Reynolds averaged Navier-Stokes equations (RANS). The effect of angle of attack on the flow structure, the force coefficients and the wall related flow variables are discussed in detail. The numerical simulations show that the strength of the separation is significantly reduced for the model with the vortex generators. The experimental method used for this study is the application of the oil flow visualizing method which can help one to precisely study the location of the flow separation and the cross-flow vortices around the SUBOFF submarine model. The results show that the vortex generators placed along the submarine do indeed significantly reduce the cross-flow separation on the submarine in a high incident angle.
机译:偏航时,水下航行器会像偏航机动中的潜艇一样自由流动,产生大的涡旋分离区域。这种涡流会影响声学,车身阻力,控制效果和可操纵性。减少这种分离流的影响的合适方法是使用涡流发生器。这项研究的主要目的是通过仅在偏航方向(0°≤β≤30°)的风洞中使用油流可视化方法,研究旋涡发生器对采用旋涡发生器的标准水下模型周围流场的影响俯仰角(由于实验成本而定)和CFD方法在俯仰方向(0°≤α≤30°迎角)和偏航方向(0°≤β≤30°迎角)。进行了数值模拟,以研究带有涡流发生器的DARPA SUBOFF裸船的几何形状。在存在迎角的情况下研究了压力侧和吸力侧之间的横流相互作用。对于本研究,使用标准的k-ε湍流模型来求解雷诺平均Navier-Stokes方程(RANS)。详细讨论了迎角对流动结构,力系数和与壁有关的流动变量的影响。数值模拟表明,对于带有涡流发生器的模型,分离强度明显降低。用于这项研究的实验方法是油流可视化方法的应用,它可以帮助人们精确地研究SUBOFF潜艇模型周围的流分离位置和横流涡流。结果表明,沿潜艇布置的涡流发生器确实确实以大入射角显着减小了潜艇上的横流分离。

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