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Structural performance evaluation of innovative prestressed concrete floating fuel storage tanks

机译:创新型预应力混凝土浮式储油罐结构性能评估

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摘要

Prestressed concrete (PC) tanks have been widely used in industrial applications and are commonly constructed as base-supported structures. In land-space constrained cities, it may be viable to construct such facilities as floating structures on sea areas. Several innovative conceptual designs of floating fuel storage tanks, including double- and single-hull structures, are first proposed in this paper. For this new type of fuel storage facility, the self-weight and in-fill fuel are balanced by buoyancy forces, and there is no need for massive foundations. Due to the absence of specific guidelines, many design concerns have to be addressed before a fully functional PC floating fuel storage facility can be designed and operated economically. In this study, finite-element analyses are performed to investigate the structural behavior of floating fuel storage tanks of various design options. To mobilize the buoyancy and hydrostatic load effects during filling operations, water ballasting and the use of in-fill expanded polystyrene foam were examined to optimize the performance of proposed concepts. Analysis results indicate that single-hull tanks show better performance than double-hull tanks because the hydrostatic pressure on the tank wall due to outside seawater and in-fill fuel are balanced to a great extent. Following the principles of load-balancing and allowable stress design approach, prestressing steel requirements are determined for the selected tank concept.
机译:预应力混凝土(PC)储罐已广泛用于工业应用,通常构造为基础支撑结构。在受土地空间限制的城市中,在海域上建造诸如漂浮物之类的设施可能是可行的。本文首先提出了浮动燃料储罐的几种创新概念设计,包括双壳和单壳结构。对于这种新型的燃料存储设备,自重和填充燃料通过浮力平衡,因此无需庞大的基础。由于缺乏具体指南,在可以经济地设计和运行功能齐全的PC浮动燃料存储设施之前,必须解决许多设计问题。在这项研究中,进行了有限元分析,以研究各种设计方案的浮动式燃料储罐的结构性能。为了调动填充过程中的浮力和静水载荷效应,对压载水和填充泡沫聚苯乙烯泡沫的使用进行了研究,以优化建议概念的性能。分析结果表明,单壳型储罐的性能优于双壳型储罐,因为外部海水和填充燃料在罐壁上产生的静水压力在很大程度上得到了平衡。遵循负载平衡和允许应力设计方法的原则,为选定的储罐概念确定了预应力钢的要求。

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