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Simplified Modeling Strategy for the Thermomechanical Analysis of Massive Reinforced Concrete Structures at an Early Age

机译:大型钢筋混凝土结构早期热力学分析的简化建模策略

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摘要

The objective of this work is to propose a comprehensive and efficient modeling approach to simulate the entire loading program of the RG8 test (both the restrained shrinkage and mechanical parts) performed within the framework of the French national program CEOS.fr. This effort was made possible by introducing a multi-fiber beam discretization that included a thermomechanical model coupled with a unilateral concrete damage model. Due to the massiveness of the test structure, the scale effect needed to be taken into account. This step could be accomplished through use of a Weibull law. Extensive results were obtained during the experiment, some of which focused on deformations and forces developed in the structure by restrained shrinkage, the times of crack appearance and opening, and the consequences of damage sustained on the residual mechanical performance of the beam. A comparison with calculation output has demonstrated the ability of our modeling approach to simulate phenomena at both global and local levels, thus confirming the relevance of model choices made.
机译:这项工作的目的是提出一种全面有效的建模方法,以模拟在法国国家计划CEOS.fr框架内进行的RG8测试的整个加载程序(约束收缩和机械零件)。通过引入多纤维束离散化(包括热机械模型和单边混凝土损伤模型)使这项工作成为可能。由于测试结构的庞大性,需要考虑比例效应。此步骤可通过使用威布尔定律来完成。在实验过程中获得了广泛的结果,其中一些集中在结构上的变形和受约束的收缩产生的力,裂纹出现和开裂的时间,以及损伤对梁的残余机械性能的影响。与计算结果的比较表明,我们的建模方法具有在全局和局部水平上模拟现象的能力,从而证实了所做模型选择的相关性。

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