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Effect of Transient Creep Strain Model on the Behavior of Concrete Columns Subjected to Heating and Cooling

机译:瞬态蠕变应变模型对受热与受冷混凝土柱性能的影响

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摘要

In the numerical analysis of structures in fire, the material models that are used have important implications on the global behavior of the structure. In concrete, a particular phenomenon appears when subjected to high temperatures: the transient creep strain. Models integrating explicitly a term for transient creep strain have been proposed in the literature but, in the current Eurocode 2 model, there is no explicit term for transient creep strain. This phenomenon is included in the Eurocode 2 model, but it is implicitly considered in the mechanical strain term. A series of experi mental fire tests on axially restrained concrete columns subjected to heating and cool ing has been recently performed at South China University of Technology and described by Wu et al. (Fire Technol 46:231-249). In the original paper, it was shown that using the implicit model of Eurocode 2, the behavior of the columns cannot be simulated properly, especially during the cooling phase. The objective of the present paper is to perform again the fire tests simulations using a new formulation of the Eurocode 2 model that contains an explicit term for transient creep. In the first part of the paper, the explicit formulation of the Eurocode 2 model is presented. In the second part, the fire tests are modeled with the software SAFIR using, on the one hand, the implicit Eurocode model and, on the other hand, the new explicit model. It is shown that the transient creep model has significant implications on the global behavior of structural concrete members, as the residual axial load sustained by the columns at the end of the fire can differ by up to 25% of the initial applied load depending on the transient creep strain model that is used for the calculation. The experimental behavior is better matched with the new explicit model than with the current Eurocode model. Particularly, the results given by the Eurocode model dur ing the cooling phase are unconservative as the residual axial load is overestimated. Finally, it is explained why, on the basis of an example, in a performance-based approach, these results can have important implications on the global fire resistance of a structure.
机译:在火灾结构的数值分析中,所使用的材料模型对结构的整体行为具有重要意义。在混凝土中,高温时会出现一种特殊现象:瞬态蠕变应变。在文献中已经提出了将瞬态蠕变应变的术语明确整合的模型,但是在当前的Eurocode 2模​​型中,没有瞬态蠕变应变的显式术语。此现象包含在Eurocode 2模​​型中,但在机械应变项中隐含了该现象。最近在华南理工大学进行了对受轴向约束的混凝土柱进行加热和冷却的一系列实验性防火测试,并由Wu等人描述。 (消防技术46:231-249)。在原始文件中显示,使用Eurocode 2的隐式模型无法正确模拟塔的行为,尤其是在冷却阶段。本文的目的是使用新的Eurocode 2模​​型公式(包含一个包含瞬态蠕变的显式术语)再次执行耐火试验模拟。在本文的第一部分,介绍了Eurocode 2模​​型的显式表述。在第二部分中,一方面使用隐式Eurocode模型,另一方面使用新的显式模型,通过SAFIR软件对火灾测试进行建模。结果表明,瞬态蠕变模型对结构混凝土构件的整体性能具有重要影响,因为火灾结束时,柱承受的残余轴向载荷根据初始施加的载荷可能相差高达初始施加载荷的25%。计算中使用的瞬态蠕变应变模型。新的显式模型比当前的Eurocode模型更好地匹配了实验行为。特别是,在冷却阶段,由Eurocode模型给出的结果并不保守,因为残余轴向载荷被高估了。最后,以一个基于性能的方法为例,说明了为什么这些结果会对结构的整体耐火性产生重要影响。

著录项

  • 来源
    《Fire Technology》 |2012年第2期|p.313-329|共17页
  • 作者

    Thomas Gernay;

  • 作者单位

    The National Fund for Scientific Research, Structural Engineering Division, University of Liege, Bat. B52/3, chemin des Chevreuils 1, 4000 Liege, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    concrete; constitutive model; fire; transient creep;

    机译:具体;本构模型火;瞬态蠕变;
  • 入库时间 2022-08-18 00:12:48

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