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EFFECTS OF EULER ANGLES OF VERTICAL CAMBERED OTTER BOARD ON HYDRODYNAMICS BASED ON RESPONSE SURFACE METHODOLOGY AND MOGA

机译:基于响应曲面法和MOGA的弧形水獭板EULER角对水动力的影响

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In this present work, effects of three Euler angles (Angle of Attack (AOA), Angle of Trim (AOT), Angle of Pitch (AOP)) of vertical cambered otter board on hydrodynamic characteristics (drag coefficient (C_d), lift coefficient (C_l), center-of-pressure coefficients (C_p)) were studied based on numerical simulation combined with Kriging Response Surface Methodology (KRSM) and Multi-Objective Genetic Algorithm (MOGA). Wind tunnel experiments were carried out to validate the accuracy of response surface based on numerical simulation. It was demonstrated that AOA had prominent effects on C_d and C_l, while AOT and AOP had less effects. The working posture of otter board were recommended to lean inwards (0°~6°) and forward (-10°~0°) to improve the lift-drag ratio without sacrificing C_l. The influences of AOT and AOP on positions of center-of-pressure point were less significant than that of AOA and decreasing with the increase of AOA. In addition, response surface of hydrodynamic coefficients around the critical AOA was a decent indicator of occurrence of stall. Finally, three candidate cases were selected to satisfy the high working efficiency by MOGA, which was consistent with the above recommendations. This study provided a scientific reference of response surface experimental investigations methodology and the configuration of Euler angles of otter board.
机译:在本工作中,垂直弧形水獭板的三个欧拉角(攻角(AOA),修剪角(AOT),俯仰角(AOP))对水动力特性(阻力系数(C_d),升力系数(基于数值模拟,结合Kriging响应面方法(KRSM)和多目标遗传算法(MOGA),研究了C_1),压力中心系数(C_p)。进行了风洞实验,以数值模拟为基础来验证响应面的准确性。证实了AOA对C_d和C_1具有显着的影响,而AOT和AOP具有较小的影响。建议水獭板的工作姿势向内倾斜(0°〜6°),向前倾斜(-10°〜0°),以提高升阻比而不牺牲C_1。 AOT和AOP对压力中心点位置的影响不如AOA显着,并且随着AOA的增加而减小。此外,临界AOA周围的水动力系数响应面是失速发生的良好指示。最后,通过MOGA选择了三个候选案例以满足高工作效率,这与上述建议是一致的。该研究为响应面实验研究方法和水獭板欧拉角的构造提供了科学参考。

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