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Dynamic of a planing hull in regular waves: Comparison of experimental, numerical and mathematical methods

机译:常规波处的平面船体的动态:实验,数值和数学方法的比较

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摘要

The unsteady planing motion in waves is a complicated problem, that can lead to uncomfortable riding situation and structural damages due to large wave-induced dynamic responses and vertical accelerations. In the current research, this problem is investigated using different approaches, including towing tank tests, Computational Fluid Dynamics (CFD), and the 2D + t model. Results obtained from all three approaches are compared against each other in details. The spectral analysis shows that all motions can be nonlinear, but CFD and 2D + t model may predict weaker nonlinear behaviour at higher speed, especially for the case of vertical accelerations corresponding to longer waves. Interestingly, the vertical acceleration found by 2D + t model is seen to be under-predicted at moderate and long wavelengths and to be over-predicted at short waves. The values of sectional forces found by 2D + t model were compared against CFD results, showing that, while the 2D + t model computes smaller sectional forces, it can also compute negative sectional forces near the bow of the vessel at short waves when the boat exits the water. The emergence of negative sectional forces is likely to be the reason why the 2D + t model over-predicts the vertical acceleration in short waves.
机译:波浪中的不稳定平面运动是一个复杂的问题,这可能导致骑行的情况和由于大的波引起的动态响应和垂直加速而导致的结构损坏。在目前的研究中,使用不同的方法来研究该问题,包括牵引罐试验,计算流体动力学(CFD)和2D + T模型。从所有三种方法获得的结果以细节相互比较。光谱分析表明,所有运动都可以是非线性的,但CFD和2D + T模型可以以更高的速度预测较弱的非线性行为,特别是对于对应于更长的波的垂直加速度的情况。有趣的是,由2D + T模型发现的垂直加速度被认为以中等和长波长预测,并且在短波上过度预测。将2D + T模型发现的截面力的值与CFD结果进行比较,显示,虽然2D + T模型计算较小的截面力,但是当船时,它也可以在船舶的短波附近计算船弓附近的负截面力退出水。负截面力的出现可能是2D + T模型过度预测短波中垂直加速度的原因。

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