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WAVE SLAM/SLAP LOADS ON STRUCTURAL MEMBERS IN THE AIR-GAP

机译:气隙中结构构件上的波浪状刮擦/刮擦载荷

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The offshore platforms shall be designed with deck elevation that maintains sufficient air-gap with maximum predicted wave crest elevations. However, due to compelling reasons of hydrocarbon process and changes to water levels/seabed subsidence may have structures in the close vicinity of the sea level or submerged. Hence the assessment of wave induced forces on the deck structures especially the old platforms become very essential. Review of literature indicates that the previous studies focused mainly on the circular sections and not much information is available on the non-circular sections. The current study focused on measurement of wave induced slam/slap loads in a laboratory wave flume and estimation of force coefficients based on drag based empirical equations. Further, it is of interest to focus on the flow around the open sections (non-circular) using a flow visualization technique (Particle Image Velocimetry) to understand the flow pattern around the elements. The results indicate that the slam and slap coefficients for 1 sections are smaller than the channel sections and the values of coefficients are few times higher than the circular sections.
机译:离岸平台的设计应具有一定的甲板高程,以保持足够的气隙,并具有最大的预计波峰高程。但是,由于碳氢化合物加工的迫切原因以及水位/海底沉降的变化,其结构可能紧邻海平面或被淹没。因此,对甲板结构特别是旧平台上的波浪感应力的评估变得非常重要。文献综述表明,先前的研究主要集中在圆形截面上,关于非圆形截面的信息很少。当前的研究重点是在实验室波浪槽中测量波浪引起的猛击/拍击载荷,并基于基于阻力的经验方程估算力系数。此外,使用流可视化技术(颗粒图像测速法)来关注围绕开放部分(非圆形)的流,以了解元件周围的流型是令人感兴趣的。结果表明,1个截面的砰击系数和拍击系数小于通道截面,系数值比圆形截面高几倍。

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