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首页> 外文期刊>Journal of advanced concrete technology >A Simplified Model to Predict Thermo-Hygral Behaviour and Explosive Spalling of Concrete
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A Simplified Model to Predict Thermo-Hygral Behaviour and Explosive Spalling of Concrete

机译:预测混凝土的热水行为和爆炸剥落的简化模型

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Explosive spalling of concrete leads to premature failure of concrete structures under fire. Thus it is important to assess explosive spalling risk of concrete. Thermo-hygral process in concrete is believed to be responsible for explosive spalling of concrete. Currently, simple yet reliable models to predict thermo-hygral behaviour are still desirable. In this study, a one-dimensional numerical model is established to predict moisture migration, pore pressure and explosive spalling in concrete exposed to heating. The effectiveness of the model is validated against five sets of experimental data. The experiments covered (a) moisture migration inside normal strength concrete (NSC); (b) pore pressure buildup inside NSC; (c) pore pressure buildup inside high-performance concrete (HPC) containment vessel; (d) pore pressure buildup inside HPC slab; and (e) one-time explosive spalling of concrete. The results predicted by the model match well the experimental results. The model developed provides an effective and economical tool to assess explosive spalling of concrete in addition to experimental methods.
机译:混凝土爆炸性剥落会导致混凝土结构在火灾下过早破坏。因此,评估混凝土的爆炸剥落风险很重要。据认为,混凝土的热湿过程是造成混凝土爆炸性剥落的原因。目前,仍需要简单而可靠的模型来预测热-水气行为。在这项研究中,建立了一个一维数值模型来预测受热混凝土中的水分迁移,孔隙压力和爆炸剥落。该模型的有效性针对五组实验数据进行了验证。实验包括(a)普通强度混凝土(NSC)中的水分迁移; (b)NSC内部的孔隙压力增加; (c)高性能混凝土安全壳内的孔压增加; (d)HPC平板内部的孔隙压力增加; (e)一次性爆炸性剥落混凝土。该模型预测的结果与实验结果非常吻合。除实验方法外,开发的模型还提供了一种有效且经济的工具来评估混凝土的爆炸剥落。

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