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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Impact pressure and void fraction due to plunging breaking wave impact on a 2D TLP structure
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Impact pressure and void fraction due to plunging breaking wave impact on a 2D TLP structure

机译:由于对2D TLP结构的破裂波撞击引起的冲击压力和空隙率

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Violent impacts due to the plunging breaking wave impingement on a 2D tension-leg platform (TLP) structure were experimentally investigated in a laboratory. Simultaneous pressure, void fraction, fluid velocity, and structure motion measurements were performed on the multiphase, turbulent flow. The maximum mean impact pressure is 2.3 rho C-2 with C being the wave phase speed. The pressure maximum and its rise time are negatively correlated, and the rise time for impulsive-type impacts is less than 15 ms or 0.18H/C with H being the wave height. Different approaches show that impact coefficients vary from 0.6 to 9.7, including relating the impact pressure maxima to the wave phase speed, local velocity, and void fraction. By modeling the plunging breaking wave impact as a filling flow, a pressure-aeration relationship was investigated and compared with the approximate solution derived by Peregrine and Thais (J Fluid Mech 325: 377-397, 1996). The measured data show that a high aeration level tends to reduce the impact pressure maximum so the cushioning effect is significant for breaking wave impacts on a moving vertical wall.
机译:在实验室中实验研究了由2D张力腿平台(TLP)结构上的爆破波击波击引起的剧烈影响。在多相,湍流上进行同时压力,空隙级分,流体速度和结构运动测量。最大平均冲击压力为2.3 rho c-2,C是波相速度。压力最大值和其上升时间是呈负相关的,并且冲动型冲击的上升时间小于15ms或0.18h / c,H是波高。不同的方法表明,冲击系数在0.6到9.7之间变化,包括将冲击压力最大值与波相速度,局部速度和空隙部分相关联。通过将陷入困境的破裂波的影响模拟作为填充流程,研究了一种压力曝气关系,并与Peregrine和ThaIS衍生的近似溶液进行了比较(J Fluid Mech 325:377-397,1996)。测量的数据表明,高通气水平倾向于降低冲击压力最大值,因此缓冲效应对于在移动垂直墙壁上破裂波的影响是显着的。

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