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Hydrothermal model for predicting fire-induced spalling in concrete structural systems

机译:用于预测混凝土结构系统火灾诱发剥落的水热模型

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摘要

A one-dimensional numerical model to predict fire-induced spalling in concrete structures is presented. The model is based on pore pressure calculations in concrete, as a function of time. Principles of mechanics and thermodynamics are applied to predict pore pressure in concrete structures exposed to fire. An assessment of the possibility of tensile fracture is made by comparing the computed pore pressure with temperature-dependent tensile strength. The pore pressure calculations are coupied with heat transfer analysis to ensure that the loss of concrete section, resulting from spalling, is accounted for in subsequent heat transfer analysis. The validity of the numerical model is established by comparing temperature, pore pressure, and concrete spalling predictions with results from fire tests. The computer program is applied to conduct case studies to investigate the influence of concrete permeability, tensile strength of concrete, relative humidity in concrete, and heating rate on fire-induced spalling in concrete members. Through these case studies, it is shown that permeability, tensile strength of concrete, and heating rate have a significant influence on fire-induced spalling in concrete. It is also shown that relative humidity has a marginal influence on fire-induced spalling in concrete.
机译:提出了一种预测混凝土结构火灾诱发剥落的一维数值模型。该模型基于混凝土中的孔隙压力计算(随时间变化)。应用力学和热力学原理来预测着火的混凝土结构中的孔隙压力。通过将计算出的孔隙压力与温度相关的拉伸强度进行比较,可以评估拉伸断裂的可能性。孔隙压力计算与传热分析相结合,以确保在随后的传热分析中考虑到因剥落而造成的混凝土断面损失。通过将温度,孔隙压力和混凝土剥落预测与火灾测试结果进行比较,可以建立数值模型的有效性。该计算机程序用于进行案例研究,以研究混凝土渗透性,混凝土抗张强度,混凝土相对湿度以及加热速率对混凝土构件中火灾引起的剥落的影响。通过这些案例研究表明,混凝土的渗透性,抗张强度和加热速率对火灾引起的混凝土剥落有重要影响。还表明,相对湿度对混凝土中火灾引起的剥落具有边际影响。

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