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Finite element simulation of deployment of large-scale confined inflatable structures

机译:大型密闭充气结构展开的有限元模拟

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Large-scale inflatable structures have become a viable alternative for sealing and isolating segments of large-diameter conduits or tunnel sections to prevent the propagation of flooding, noxious gases or smoke. In such applications, the inflatable structure is prepared for placement, either permanently or temporary, and left ready for deployment, inflation, and pressurization when needed. Once deployed and in operation, the level of sealing effectiveness depends on the ability of the inflatable structure to deploy and self-accommodate, without human intervention, to the intricacies of the perimeter of the conduit being sealed. This work presents finite element evaluations of the deployment and inflation of a full-scale inflatable plug placed within a tunnel section. Folding sequences and controlled deployment techniques developed experimentally served as the basis for the development of finite element models that can simulate different stages of folding, placement, initial deployment and full inflation of the structure. The good level of correlation between experimental and simulation results in terms of deployment dynamics, levels of contact as well as number and position of zones with no contact in the confining perimeter, demonstrate that the proposed modeling strategy can be used as a predicting tool of the behavior of a large-scale inflatable structure for a given confining environment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:大型充气结构已成为密封和隔离大直径导管或隧道段的一部分的可行替代方案,以防止洪水,有毒气体或烟雾的传播。在这样的应用中,可充气结构准备永久或临时放置,并在需要时准备好展开,充气和加压。一旦展开并在操作中,密封效果的水平取决于可充气结构在没有人为干预的情况下展开并自我适应于被密封的导管周界的复杂性的能力。这项工作提出了放置在隧道段内的全尺寸可膨胀塞的展开和充气的有限元评估。实验开发的折叠顺序和受控展开技术是开发有限元模型的基础,该模型可以模拟折叠,放置,初始展开和结构完全膨胀的不同阶段。实验和仿真结果之间的良好关联程度,包括部署动态,接触水平以及在限制范围内没有接触的区域的数量和位置,证明了所提出的建模策略可以用作预测模型的工具。给定密闭环境下大型充气结构的性能(C)2016 Elsevier Ltd.保留所有权利。

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