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首页> 外文期刊>Ocean Engineering >Reduction of non-breaking wave loads on caisson type breakwaters using a modified perforated configuration
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Reduction of non-breaking wave loads on caisson type breakwaters using a modified perforated configuration

机译:使用改进的穿孔结构减少沉箱式防波堤上的不间断波浪载荷

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In this study a new type of partially perforated caisson breakwater is introduced with two shallow chambers split horizontally by an impermeable plate at the mean sea level. A plexiglass laboratory model of the structure was manufactured with different frontface perforation ratios and adjustable chamber breadths, then tested under 2D non-breaking regular and irregular waves. The horizontal wave force and wave moment are evaluated as dimensionless parameters from measured pressure-time series. A control group of tests was also conducted with plain vertical face under identical waves, also the wave loads on a vertical face for the same wave properties were computed using Goda (1985) formulation. Results show that the dimensionless wave forces and dimensionless wave moments can be reduced by a ratio up to 35%-40% under regular and irregular waves and structure performance increases with decreasing wave length. The obtained results are also compared with reference to a fully perforated (Jarlan) caisson using the method given by Tabet-Aoul and Lambert (2003) and a general harmony was seen both for the magnitudes and variation of wave loads with dimensionless chamber breadth (B/L).
机译:在这项研究中,引入了一种新型的部分穿孔沉箱式防波堤,该防波堤具有两个浅室,在平均海平面上,这些浅室由不透水的板水平分开。制造了具有不同正面穿孔率和可调节腔室宽度的有机玻璃实验室模型,然后在2D不间断规则波和不规则波下进行了测试。根据测得的压力时间序列,将水平波浪力和波浪矩作为无量纲参数进行评估。还对对照组进行了相同波浪作用下的平直表面试验,同时使用Goda(1985)公式计算了具有相同波浪特性的垂直面上的波浪载荷。结果表明,在规则波和不规则波作用下,无因次波力和无因次波矩可以减小高达35%-40%的比率,并且结构性能随​​着波长的减小而提高。使用Tabet-Aoul和Lambert(2003)给出的方法,还将获得的结果与完全穿孔的(Jarlan)沉箱进行比较,并且在无量纲腔室宽度的情况下,波载荷的大小和变化都具有普遍的和谐性(B / L)。

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