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An Overview of Modeling Cement Based Materials at Elevated Temperatures with Mechanics of Multi-Phase Porous Media

机译:多相多孔介质力学在高温下对水泥基材料建模的概述

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Application of mechanics of multi-phase porous media for modeling cement based materials at high temperature is presented. The considerations are based on the mathematical model of mechanistic type, developed by the authors within recent years. The model has been previously experimentally validated and successfully applied for analyzing performance of various concrete structures at high temperature. Physical phenomena in a concrete element heated during a fire are described and analyzed, confirming multi-phase nature of concrete in these conditions. Main stages of the mathematical model development by means of hygro-thermo-mechanics of porous media are briefly presented. The mass, energy and linear momentum conservation equations at micro-scale are given and averaged in space to obtain the macroscopic form of the equations. Some main key-points in modeling cement-based materials at high temperature are discussed. Final form of the model equations and method of their numerical solution are presented. The model is validated by comparison with some published results of experimental studies. Two examples of the model application for numerical simulation of concrete structures exposed to fire conditions, including also a cooling phase, are analyzed.
机译:提出了多相多孔介质力学在水泥基材料高温模拟中的应用。这些考虑基于作者近年来开发的机械类型的数学模型。该模型已经过实验验证,并成功地用于分析高温下各种混凝土结构的性能。描述并分析了在火灾中受热的混凝土构件中的物理现象,证实了在这些条件下混凝土的多相性质。简要介绍了利用多孔介质的湿热力学进行数学模型开发的主要阶段。给出了微观尺度上的质量,能量和线性动量守恒方程,并在空间中进行平均,以获得方程的宏观形式。讨论了在高温下对水泥基材料进行建模的一些主要要点。给出了模型方程的最终形式及其数值求解方法。通过与一些已发表的实验研究结果进行比较来验证该模型。分析了两个示例应用程序示例,这些示例应用程序在暴露于火灾条件下的混凝土结构(包括冷却阶段)进行数值模拟。

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