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An efficient inelastic approach using SCM/RPHM coupling to study reinforced concrete beams, columns and frames under fire conditions

机译:一种高效的非弹性方法,使用SCM / RPHM耦合,以研究消防条件下的钢筋混凝土梁,柱和框架

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This work has as its main objective the study of the behavior of reinforced concrete beams, columns and structural frames in a fire situation. To do so an efficient numerical formulation was developed, implemented and evaluated. When exposed to high temperatures, the characteristics of the materials deteriorate, resulting in a considerable loss of strength and stiffness of the structure. The CS-ASA (Computational System for Advanced Structural Analysis) was used to achieve the objective. This computer system was expanded for advanced analysis of structures in fire conditions, taking advantage of the existing features and adding new ones. Two new computational modules were created: CS-ASA/FA (Fire Analysis) and CS-ASA/FSA (Structural Fire Analysis). The first one was used to determine the temperature field in the structural elements' cross-section through thermal analysis by the Finite Element Method (FEM) in permanent and transient regimes. The second was created to perform the second-order inelastic analysis of structures under fire using the FEM formulations based on the Refined Plastic Hinge Method (RPHM) and the Strain Compatibility Method (SCM) coupling, which can be considered a unique feature of the present study. The use of SCM allows for a more realistic analysis against the design codes prescriptions. Consequently, even under high temperatures, SCM is used for evaluation of both bearing capacity and stiffness parameters. The results of the nonlinear analysis in a fire situation for eight structural elements and systems with different geometries, boundary, heating and loading conditions are in good agreement with the numerical and experimental results found in the literature.
机译:这项工作主要目的旨在研究火灾情况下钢筋混凝土梁,柱和结构框架的行为。为此,开发,实施和评估了高效的数值制剂。当暴露于高温时,材料的特性劣化,导致结构的强度和刚度的相当大损失。 CS-ASA(用于高级结构分析的计算系统)用于达到目标。此计算机系统被扩展,可用于在防火条件下的结构进行高级分析,利用现有功能和添加新功能。创建了两种新的计算模块:CS-ASA / FA(Fire Analysis)和CS-ASA / FSA(结构火灾分析)。第一个通过在永久性和瞬态制度中通过用于通过有限元方法(FEM)的热分析来确定结构元素的横截面中的温度场。第二个是使用基于精制塑料铰链法(RPHM)和应变兼容性方法(SCM)耦合的FEM配方进行火灾中的结构的二阶内弹性分析,以便将其视为现在的独特特征学习。使用SCM允许对设计代码处方进行更现实的分析。因此,即使在高温下,SCM也用于评估承载能力和刚度参数。在八个结构元素和具有不同几何形状,边界,加热和装载条件的系统中的非线性分析的结果与文献中发现的数值和实验结果吻合良好。

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