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COMPUTATIONAL FLUID DYNAMICS STUDY OF A FLEXIBLE FLAPPING HYDROFOIL PROPULSOR

机译:柔性扑翼水翼螺旋桨的计算流体动力学研究

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A CFD study to understand the hydrodynamics and fluid flow around a chordwise flexible hydrofoil with combined sway and yaw motion which imitates the caudal fin flapping in thunniforms, is presented. The dependency of motion parameters of the flexible flapping hydrofoil to its propulsive performance is studied by carrying out the analyses over a Strouhal number range of 0.1 to 0.4 in steps of 0.025 at three maximum angle of attacks viz. 10°, 15°,20°. Qualitative observations of the wake field and trailing jet is presented using velocity magnitude contours and vorticity contours. The analyses carried out at 40,000 Reynolds number and sway amplitude of 0.75 chordlength, revealed that the average thrust coefficient increases with increase in Strouhal number and maximum angle of attacks. The highest efficiency is achieved when the maximum angle of attack is 15° and Strouhal number is 0.225.
机译:提出了一项CFD研究,以了解弦向柔性水翼周围的流体动力学和流体流动,并结合摇摆和偏航运动模拟了楔形的尾鳍拍打。通过在三个最大攻角即0.125到0.4的斯特劳哈尔数范围内以0.025的步长进行分析,研究了柔性扑翼水翼的运动参数对其推进性能的依赖性。 10°,15°,20°。使用速度幅度等高线和涡度等高线对尾流场和尾随射流进行定性观察。在40,000雷诺数和0.75弦长的摆幅下进行的分析表明,平均推力系数随Strouhal数和最大迎角的增加而增加。当最大迎角为15°且Strouhal数为0.225时,可获得最高效率。

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