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Advanced three-dimensional nonlinear analysis of reinforced concrete structures subjected to fire and extreme loads.

机译:钢筋混凝土结构在火灾和极端载荷下的高级三维非线性分析。

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摘要

With the rise in hazards that structures are potentially subjected to these days, ranging from pre-contemplated terror attacks to accidental and natural disasters, safeguarding structures against such hazards has increasingly become a common design requirement. The extreme loading conditions associated with these hazards renders the concept of imposing generalized codes and standards guidelines for structural design unfeasible. Therefore, a general shift towards performance-based design is starting to dominate the structural design field.;This study introduces a powerful structural analysis tool for reinforced concrete structures, possessing a high level of reliability in handling a wide range of typical and extreme loading conditions in a sophisticated structural framework. VecTor3, a finite element computer program previously developed at the University of Toronto for nonlinear analysis of three-dimensional reinforced concrete structures employing the well-established Modified Compression Field Theory (MCFT), has been further developed to serve as the desired tool.;VecTor3 is extended to include analysis capabilities for extreme loading conditions, advanced reinforced concrete mechanisms, and new material types. For extreme loading conditions, an advanced coupled heat and moisture transfer algorithm is implemented in VecTor3 for the analysis of reinforced concrete structures subjected to fire. This algorithm not only calculates the transient temperature through the depth of concrete members, but also calculates the elevated pore pressure in concrete, which enables the prediction of the occurrence of localized thermally-induced spalling. Dynamic loading conditions are also extended to include seismic loading, in addition to blast and impact loading.;Advancing the mechanisms considered, VecTor3 is developed to include the Disturbed Stress Field Model (DSFM), dowel action and buckling of steel reinforcement bars, geometric nonlinearity effects, strain rate effects for dynamic loading conditions, and the deterioration of mechanical properties at elevated temperatures for fire loading conditions. Finally, the newly-developed Simplified Diverse Embedment Model (SDEM) is implemented in VecTor3 to add analysis capability for steel fibre-reinforced concrete (SFRC).;Various analyses covering a wide range of different structural members and loading conditions are carried out using VecTor3, showing good agreement with experimental results available in the literature. These analyses verify the reliability of the models, mechanisms, and algorithms incorporated in VecTor3.
机译:从最近设想的恐怖袭击到意外和自然灾害,随着这些结构可能遭受的危害的增加,保护结构免受此类危害已越来越成为常见的设计要求。与这些危险相关的极端载荷条件使对结构设计施加通用规范和标准指南的概念变得不可行。因此,向基于性能的设计的一般转变开始在结构设计领域中占主导地位。;本研究介绍了一种用于钢筋混凝土结构的功能强大的结构分析工具,在处理各种典型和极端载荷条件下具有很高的可靠性。在复杂的结构框架中。 VecTor3是先前在多伦多大学开发的用于对三维钢筋混凝土结构进行非线性分析的有限元计算机程序,该程序使用公认的修正压缩场理论(MCFT)进行了进一步开发,可以用作所需的工具。扩展到包括针对极端载荷条件,先进的钢筋混凝土机制和新材料类型的分析功能。对于极端的负载条件,VecTor3中实施了先进的热与湿耦合传递算法,用于分析遭受火灾的钢筋混凝土结构。该算法不仅可以计算混凝土构件整个深度的瞬态温度,还可以计算混凝土中升高的孔隙压力,从而可以预测局部热致剥落的发生。除了爆炸和冲击载荷外,动态载荷条件还扩展到包括地震载荷。改进了考虑的机制,VecTor3的开发包括扰动应力场模型(DSFM),销钉作用和钢筋的屈曲,几何非线性动态载荷条件下的应力作用,应变率效应,以及火灾载荷条件下高温下的机械性能下降。最后,在VecTor3中实施了新开发的简化多元嵌入模型(SDEM),以增加对钢纤维增强混凝土(SFRC)的分析能力;使用VecTor3对涵盖不同结构构件和载荷条件的各种分析进行了分析,与文献中提供的实验结果吻合良好。这些分析验证了VecTor3中包含的模型,机制和算法的可靠性。

著录项

  • 作者

    ElMohandes, Fady.;

  • 作者单位

    University of Toronto (Canada).;

  • 授予单位 University of Toronto (Canada).;
  • 学科 Civil engineering.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 429 p.
  • 总页数 429
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:26

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