首页> 外文期刊>Coastal Engineering Journal >EFFECT OF SHORT-CRESTEDNESS AND OBLIQUITY ON NON-BREAKING AND BREAKING WAVE FORCES APPLIED TO VERTICAL CAISSON BREAKWATERS
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EFFECT OF SHORT-CRESTEDNESS AND OBLIQUITY ON NON-BREAKING AND BREAKING WAVE FORCES APPLIED TO VERTICAL CAISSON BREAKWATERS

机译:短壳和半球形对垂直沉箱式防波堤的非破损和破损波力的影响

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摘要

This paper addresses wave forces applied to vertical caisson breakwaters. Design diagrams are proposed to evaluate the reduction of the wave force induced by breaking and nonbreaking short-crested oblique waves with increasing horizontal length of the caisson units. Results are derived by testing a model of a typical Italian vertical breakwater with a moderately high rubble mound in the CRF-LSF (Wallingford, UK) wave basin equipped with a multidirectional wave generator. Seven adjacent caisson modules were instrumented with synchronized force transducers. Non-breaking and breaking wave loads are distinguished on the basis of the frequency content. The reduction factor of the load per unit span is derived by the measured spatial correlation, following the argument developed by G. I. Taylor for random movements.
机译:本文研究了施加在垂直沉箱防波堤上的波浪力。提出了设计图,以评估随着沉箱单元水平长度的增加,破裂和不破裂的短尖斜波引起的波浪力的减小。通过测试典型的意大利垂直防波堤的模型得出的结果,该防波堤在配备有多向波发生器的CRF-LSF(英国沃灵福德)水盆中具有中等高的瓦砾堆。七个相邻的沉箱模块装有同步力传感器。根据频率内容区分非破裂和破裂波负载。遵循G.I.Taylor提出的关于随机运动的论据,通过测量的空间相关性得出每单位跨度载荷的减小因子。

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