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Study on the oblique water entry impact performance of AUV under different launch conditions based on coupled FEM-ALE method

机译:基于耦合FEM-ALE方法的不同发射条件下AUV倾斜进入抗进入性能研究

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In this study, the hydrodynamic response of an autonomous underwater vehicle (AUV) subjected to oblique water entry impact is investigated by employing an explicit FEM technique with arbitrary Lagrangian–Eulerian formulation. The predictive ability of the employed numerical model is validated by correlating the cavity evolution of AUV and peak impact accelerations with the experimental outcomes of the previous research work. The influence of advection algorithms on the water entry phenomenon is studied. It is found that the first order donor cell advection scheme is more suitable for low speed impact problems as it is computationally more efficient. However, for high speed water entry simulations, the van Leer advection scheme gives more accurate results. Moreover, using different water entry angles, the effect of the angle of attack (AOA) and length of AUV and its head shape on the impact performances are investigated and discussed. The results show that the radial impact load is more likely to be influenced by AOA and the effect of AOA on the radial impact load is more significant for a small water entry angle, i.e., 30°, as compared to a large entry angle, i.e., 60°. It is also observed that AUV of a smaller length shows the ricochet behavior at a water entry angle of 30°. It is seen that the head shape has a substantial effect on the axial and radial impact loads and velocity attenuation of a vehicle under water. The conclusions drawn in this research work will be beneficial for the selection of appropriate initial launch conditions and for the designing of an AUV structure.
机译:在这项研究中,通过采用具有任意拉格朗日 - 欧拉的配方的明确的有限元技术来研究对倾斜水进入冲击进行倾斜水进入撞击的自主水下车辆(AUV)的流体动力学响应。通过将AUV和峰值冲击加速度与先前研究工作的实验结果相关的腔体演化来验证所采用的数值模型的预测能力。研究了平流算法对水处理现象的影响。结果发现,由于计算更有效,第一阶供体细胞平程方案更适合低速影响问题。然而,对于高速水入口模拟,范比平流计划提供更准确的结果。此外,使用不同的水入口角度,研究并讨论了对攻击角度(AOA)和AUV的长度和其头部形状的影响。结果表明,与大进入角度相比,径向冲击载荷更可能受到AOA的影响,并且AOA对径向冲击载荷的影响更大,即30°,即30°,即,60°。还观察到,较小长度的AUV显示在30°的水入口角度下的Ricochet行为。可以看出,头部形状对水下车辆的轴向和径向冲击载荷和速度衰减具有显着影响。在本研究工作中绘制的结论将有利于选择适当的初始发射条件和设计AUV结构。

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