首页> 外文会议>International conference on ocean, offshore and arctic engineering;OMAE2009 >EXPERIMENTAL OBSERVATIONS AND NUMERICAL SIMULATIONS OF WAVE IMPACT FORCES ON RECURVED PARAPETS MOUNTED ABOVE A VERTICAL WALL
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EXPERIMENTAL OBSERVATIONS AND NUMERICAL SIMULATIONS OF WAVE IMPACT FORCES ON RECURVED PARAPETS MOUNTED ABOVE A VERTICAL WALL

机译:竖立在竖壁上的斜交桥上的波冲击力的实验观察和数值模拟

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Large-scale hydraulic model tests and detail numerical model investigations were conducted on recurved wave deflecting structures to aid in the design of wave overtopping mitigation for vertical walls in shallow water. The incident wave and storm surge conditions were characteristic return period events for an offshore island on the North Slope of Alaska. During large storm events, despite depth-limited wave heights, a proposed vertical wall extension was susceptible to wave overtopping, which could potentially cause damage to equipment. Numeric calculations were conducted prior to the experimental tests and were used to establish the relative effectiveness of several recurved parapet concepts. The numerical simulations utilized the COrnell BReaking waves and Structures (COBRAS) fluid modeling program, which is a Volume-of-Fluid (VOF) model based on Reynolds Averaged Navier-Stokes equations [1] [2]. The experimental testing was conducted in the Large Wave Flume (LWF) at Oregon State University, O.H. Hinsdale Wave Research Laboratory. The experimental test directly measured the base shear force, vertical force, and overturning moment applied to the recurved parapets due to wave forcing. Wave impact pressure on the parapet and water particle velocities seaward of the wall were also measured. Results from the experimental testing include probability of exceedance curves for the base shear force, vertical force, and overturning moment for each storm condition. Qualitative comparisons between the experimental tests and the COBRAS simulations show that the numerical model provides realistic flow on and over the parapet.
机译:在弯曲的波浪偏转结构上进行了大规模的水力模型测试和详细的数值模型研究,以帮助设计浅水垂直壁的波浪越过顶部。入射波和风暴潮条件是阿拉斯加北坡上一个近海岛屿的特征性返回期事件。在大风暴事件中,尽管波浪高度受到深度的限制,但拟议的垂直墙扩展很容易受到波浪的破坏,这可能会损坏设备。在进行实验测试之前,先进行了数值计算,并用于确定几种反曲护栏概念的相对有效性。数值模拟利用了科纳尔破裂波和结构(COBRAS)流体建模程序,该程序是基于雷诺平均Navier-Stokes方程[1] [2]的流体体积(VOF)模型。实验测试是在俄亥俄州俄勒冈州立大学的大波浪水槽(LWF)中进行的。欣斯代尔波浪研究实验室。实验测试直接测量了由于波浪作用力而作用在反曲墙上的基础剪力,垂直力和倾覆力矩。还测量了护墙的波浪冲击压力和壁向海的水颗粒速度。实验测试的结果包括每种风暴条件下的基本剪力,垂直力和倾覆力矩的超出概率曲线。实验测试与COBRAS仿真之间的定性比较表明,数值模型可在护栏上和护栏上提供真实的流动。

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