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Stilling wave basins for overtopping reduction at an urban vertical seawall - The Kordon seawall at Izmir

机译:静水波浪盆,用于减少城市垂直海堤的越顶现象-伊兹密尔的科登海堤

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Reduction of wave overtopping at urban coastal structures is a significant concern as uncontrolled flooding, and the wave forces disrupt the daily flow of the urban life causing damage to people, structures and economy. However, the design of these structures needs to consider the spatial and visual demands of the urban function that restrict the crest heights. Therefore, crest modifications such as a storm wall, a bullnose or a combined structure like Stilling Wave Basin (SWB) can be used to optimize the crest height for lower overtopping values. Although reduction factors of these modifications have been studied for sloped structures in EurOtop (2016), there is relatively limited dataset regarding the vertical structures. This paper presents the results of wave overtopping experiments for an urban vertical wall with low crested Stilling Wave Basin structure with foreshore, under impulsive wave conditions. Over 150 tests have been carried out using a model of a seawall and promenade combined structure based on the urban vertical seawall of Kordon, Izmir. A variety of design parameters such as the pattern of gaps, blocking coefficients, and promenade are investigated under constant hydraulic conditions to optimize SWB design for this urban vertical wall structure. The hydrodynamic conditions for overtopping experiments are designed to test the applicability of the empirical formulas of overtopping over vertical walls for impulsive waves in EurOtop (2016). A method, calculating reduction factors, is determined for the finalized SWB design for a broader spectrum of hydraulic boundary conditions (0.40 = H-m0/d(w) = 0.90, 1.22 = T-m-1,T-0 = 2.02 s, and 0.106 = d(w) = 0.20 m) of the impulsive wave with 0.708 R-c /H-m0 2.091.
机译:由于无法控制的洪水泛滥,减少城市沿海建筑物的波浪过顶是一个重要的问题,波浪力破坏了城市生活的日常流动,对人,建筑物和经济造成了破坏。但是,这些结构的设计需要考虑城市功能的空间和视觉需求,这些需求会限制波峰高度。因此,可以使用波峰改型(例如防风墙,牛鼻草或诸如斯蒂林波浪盆地(SWB)的组合结构)来优化波峰高度,以降低较低的越顶值。尽管在EurOtop(2016)中已针对倾斜结构研究了这些修改的折减因子,但关于垂直结构的数据集相对有限。本文介绍了在冲击波条件下,具有前滨低顶静流盆地结构的城市垂直墙的波浪越过试验的结果。使用基于伊兹密尔科登市区垂直海堤的海堤和长廊组合结构模型进行了150多次测试。在恒定的水力条件下,研究了各种设计参数,例如间隙模式,阻塞系数和长廊,以优化此城市垂直墙结构的SWB设计。设计了用于超顶实验的流体力学条件,以测试EurOtop(2016)中脉冲波在垂直壁上超顶的经验公式的适用性。确定了用于减少SWB设计的方法,以针对更广的水力边界条件范围(0.40 <= H-m0 / d(w)<= 0.90,1.22 <= Tm-1,T-0 <= 2.02 s和0.106 <= d(w)<= 0.20 m)的脉冲波,其中0.708

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