超大型浮动结构的概念设计和实验室规模的物理模型

L. Cappietti, I. Simonetti, Ilaria Crema
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引用次数: 2

摘要

超大型浮动结构(VLFS)的使用可能代表一种战略方法,以应对未来世界人口的惊人增长所带来的一些社会挑战。在本文中,简要讨论了这一观点的动机,总结了VLFS发展的主要问题,并提出了基于构建块技术的概念结构设计。制作了一个小规模的物理模型,并在意大利佛罗伦萨大学LABIMA海事工程实验室的波浪流水槽中进行了测试。本研究的目的是评估所提出的VLFS概念的结构可行性和有效性,在抵抗波浪荷载和控制浮动行为方面。实验测量为一些关键结构部件的尺寸确定提供了关于载荷大小和浮动行为的必要知识的第一个贡献。从目前可用的结构材料、技术部件和建筑技术的使用来看,结果似乎支持该系统的可行性,这些材料可以承受测量的载荷。此外,所获得的实验数据库对于验证数值模型是至关重要的,从使用这些工具作为进一步改进设计问题知识的补充方法的角度来看。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Concept Design of Very Large Floating Structures and Laboratory-Scale Physical Modelling
The use of Very Large Floating Structures, VLFS, may represent a strategic approach in order to cope with some of the future societal challenges arising from the impressive growth of the world population. In this article, the motivations of this perspective are briefly discussed, the main issues for the development of VLFS are summarized and a concept structural design based on building-blocks technology is proposed. A small-scale physical model was manufactured and tested in the wave-current flume of the Laboratory of Maritime Engineering, LABIMA, of the Florence University, Italy. The aim of this study is the assessment of the structural feasibility and the effectiveness of the proposed VLFS concept, in terms of resistance to wave loads and control of floating behavior. The experimental measurements provide a first contribution to the necessary knowledge, about load magnitudes and floating behavior, for sizing some of the key structural components. The results appear to support the feasibility of the system in terms of usage of structural materials, technical components and building technologies, available at present, that can withstand the measured loads. Moreover, the acquired experimental database is fundamental in order to validate numerical models, in the perspective of using also such tools as complementary methodology for further improvement of the knowledge of design issues.
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