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An experimental study of run-up and loads on a vertical truncated cylinder in a solitary wave

机译:孤立波动垂直截筒上荷载的实验研究

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This work aims to investigate the nonlinear interaction between the tsunami-like wave and the offshore cylinder-style structure. An experimental study on the process of the wave-induced run-up and loads on the cylinder in a solitary wave is presented. An image capture technique is developed to trace the time-varying process of run-up. The secondary run-up is observed in the case of large wave amplitude. The observed streaming collision at the cylinder backside supports the argument on the cause of the secondary peak. The measurement from a six-component force balance shows that the inertial wave force and the buoyancy dominate the inline force and vertical force on the cylinder, respectively. The secondary peak exists in both forcing processes due to the violent motion of the free surface at the large wave amplitude. The influence of different wave amplitudes and truncated depths on the hydrodynamic characters is discussed. The visualized observation and the quantified data provide the benchmark for the theoretical study and the numerical simulation on the coastal protection related to the tsunami issue.
机译:这项工作旨在研究海啸状波与海上汽缸式结构之间的非线性相互作用。介绍了孤立波在循环中的波浪引起的延伸过程中的实验研究。开发了一种图像捕获技术以跟踪旋转的时变过程。在大波幅幅度的情况下观察到次要跑步。气缸背面的观察到的流碰撞支持关于二级峰值的原因的论点。从六分量力平衡的测量表明惯性波力和浮力分别在圆柱体上分别占主导地力和垂直力。由于自由表面的大波幅下的自由表面的剧烈运动,次级峰存在于迫使过程中。讨论了不同波幅度和截短深度对水动力字符的影响。可视化观察和量化数据为理论研究提供了基准,以及与海啸问题相关的沿海保护的数值模拟。

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