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Design and Construction Methods of Caisson-Type Maritime Infrastructures Using GFRP

机译:GFRP的沉箱型海洋基础设施的设计与施工方法。

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摘要

Glass-fiber-reinforced polymers (GFRPs) are commonly used in various applications in civil-engineering projects. However, they are not common in the construction of civil-marine structures. The GFRP caisson technology was developed for the construction of two mooring dolphins in Puerto el Rosario (Fuerteventura, Spain). Ultraviolet-protected glass-fiber and epoxy resin coats were used to build a 12-m diameter, 13.3-m high cylindrical structure. A finite-element model was used to verify the sandwich composite configuration using the Tsai?Hill criteria?the shear strength of the skins and honeycomb core and the buckling and local failure modes with respect to the composite configuration. This is the first time that the two caissons were designed and built of polymeric materials and installed in a seaport. Accordingly, the construction technique marks a milestone in civil engineering because of its highly innovative nature in addition to significantly reducing the time associated with and the complexity of construction operations.
机译:玻璃纤维增​​强聚合物(GFRP)通常用于土木工程项目的各种应用中。但是,它们在民用海事结构的建造中并不常见。 GFRP沉箱技术是为在罗萨里奥港(西班牙富埃特文图拉,西班牙)建造两只系泊海豚而开发的。使用紫外线保护的玻璃纤维和环氧树脂涂层来构建直径为12 m的高13.3 m的圆柱结构。使用Tsai?Hill准则?表皮和蜂窝状芯的剪切强度以及相对于复合材料构造的屈曲和局部破坏模式,使用有限元模型来验证三明治复合材料构造。这是两个沉箱首次使用聚合材料设计和建造并安装在海港中。因此,由于施工技术具有高度创新性,因此不仅大大缩短了施工时间,而且降低了施工操作的复杂性,因此在土木工程中具有里程碑意义。

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