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Physical model studies on damage and stability analysis of breakwaters armoured with geotextile sand containers

机译:土工织物砂容器铠装防波堤损伤及稳定性分析的物理模型研究

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Harnessing the advantages of geotextile sand containers (GSCs), numerous submerged breakwaters and shoreline protection structures have been constructed worldwide. But an emerged breakwater structure with geotextile armour units, capable of replacing the conventional structures, is rarely discussed. A 1:30 scaled physical experimentation is chosen as a preliminary investigation to test the feasibility of using GSCs as breakwater armour units. Structural design is evolved based on a comprehensive literature survey. The paper focuses on the stability parameters and damage characteristics of the proposed structure. Four different configurations are subjected to waves, confining to Mangaluru?s wave parameters. Effect of armour unit size and sand fill ratio on the stability of the structure is analysed and it is concluded that changing sand fill ratio from 80% to 100% shot up the structural stability to a maximum of 14%. Increasing bag size also resulted in the increased stability up to 8%. Experiments revealed that the best performing configuration could withstand wave heights up to 2.7 m. Stability curves for all tested configurations are discussed and can serve as an effective guideline for designing GSC breakwaters.
机译:利用土工织物砂容器(GSC)的优点,在全球范围内构建了许多浸湿的防波堤和海岸线保护结构。但是,具有能够更换传统结构的土工织物装甲单元的出现的防水结构很少。选择1:30的物理实验作为初步调查,以测试使用GSCS作为防堤装甲单元的可行性。基于全面的文学调查,发展结构设计。本文侧重于所提出的结构的稳定性参数和损坏特性。将四种不同的配置进行波浪,限制到MangaluRu?S波参数。分析了装甲单元尺寸和砂填充比对结构稳定性的影响,结论是,将砂填充比从80%降至100%的结构稳定至最大14%。增加的袋子尺寸也导致稳定性增加高达8%。实验表明,最佳性能的配置可以承受高达2.7米的波浪高度。讨论了所有测试配置的稳定性曲线,并可作为设计GSC防波堤的有效准则。

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