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首页> 外文期刊>Ocean Engineering >Parametric study on hydro-elasticity characteristics of auto-pitch wing-in-ground effect oscillating foil propulsors
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Parametric study on hydro-elasticity characteristics of auto-pitch wing-in-ground effect oscillating foil propulsors

机译:自动桨距地面翼效应振荡箔片推进器水弹性特性的参数研究

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摘要

A parametric study on the propulsive performance of auto-pitch wing-in-ground effect oscillating foil propulsors (APWIGs) was conducted using an unsteady Reynolds Averaged Navier-Stokes solver. The harmonic sinusoidal function is actively imposed to the heave motion of such a configuration, which has a passively flow-induced pitch motion restrained by torsional springs. Comparative investigation between APWIGs and fully prescribed system was performed, indicating that APWIGs is capable of producing a satisfactory propulsive efficiency within a wide range of advance speed. The jet-like profiles implying the time-averaged momentum surplus were obtained in the wake of APWIGs, which is attributed to the produced reverse Karman vortex street behind each oscillating foil. Obvious vortex shedding along both leading edge and trailing edge can be observed at a high reduced frequency, while the low oscillating frequency corresponding to a small reduced frequency tends to produce the high efficiency due to the highly attached flow around foil surface. Furthermore, comprehensive computations for the influence of multiple parameters on the hydro-elasticity responses and propulsive characteristics of APWIGs were conducted in the current study. We noted that heaving amplitude and equilibrium distance only affect the maximum flow-induced pitching angle. Nonetheless, the position of elastic pitching axis shows a significant effect on both pitch-leading phase difference and the maximum pitching angle. The maximum increase of propulsive efficiency around 12% due to the wing-in-ground effect was discovered within the considered parametric space. It was found that the APWIGs can achieve a high efficiency of over 70%, with the appropriate combination of geometry and motion parameters.
机译:使用不稳定的雷诺平均Navier-Stokes求解器对自动俯仰机翼地面效应振荡箔推进器(APWIG)的推进性能进行了参数研究。谐波正弦函数被主动地施加到这种构造的升沉运动,其具有由扭转弹簧限制的被动流动引起的俯仰运动。对APWIG和完全规定的系统进行了比较研究,表明APWIG能够在较宽的推进速度范围内产生令人满意的推进效率。在APWIGs之后获得了暗示时间平均动量盈余的喷射状轮廓,这归因于在每个振荡箔片后面产生的反向Karman涡街。可以以较高的降低频率观察到沿前缘和后缘的明显涡旋脱落,而由于箔表面周围高度附着的流动,对应于较小的降低频率的低振荡频率倾向于产生高效率。此外,在当前研究中,进行了多个参数对APWIGs的水弹性响应和推进特性影响的综合计算。我们注意到,起伏幅度和平衡距离仅影响最大流量引起的俯仰角。尽管如此,弹性俯仰轴的位置对俯仰超前相位差和最大俯仰角均显示出显着影响。在考虑的参数空间内发现了由于机翼对地面的影响,推进效率的最大增加约为12%。已经发现,通过适当组合几何形状和运动参数,APWIG可以达到70%以上的高效率。

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