厚板
参数统计
结构工程
芯(光纤)
材料科学
有限元法
耐火性
灵敏度(控制系统)
流离失所(心理学)
热导率
消防工程
防火
消防安全
复合材料
工程类
机械工程
土木工程
统计
数学
心理治疗师
电子工程
心理学
作者
T. M. Jeyashree,P. R. Kannan Rajkumar
标识
DOI:10.1108/jsfe-09-2023-0037
摘要
Purpose This study focused on identifying critical factors governing the fire response of prestressed hollow-core slabs. The hollow-core slabs used as flooring units can be subjected to elevated temperatures during a fire. The fire response of prestressed hollow-core slabs is required to develop slabs with greater fire endurance. The present study aims to determine the extent to which the hollow-core slab can sustain load during a fire without undergoing progressive collapse under extreme fire and heating scenarios. Design/methodology/approach A finite element model was generated to predict the fire response of prestressed hollow core slabs under elevated temperatures. The accuracy of the model was predicted by examining thermal and structural responses through coupled temperature displacement analysis. A sensitivity analysis was performed to study the effects of concrete properties on prediction of system response. A parametric study was conducted by varying the thickness of the slab, fire and heating scenarios. Findings Thermal conductivity and specific heat of concrete were determined as sensitive parameters. The thickness of the slab was identified as a critical factor at a higher load level. Asymmetric heating of the slab resulted in higher fire resistance compared with symmetric heating. Originality/value This is the first study focused on studying the effect of modeling uncertainties on the system response by sensitivity analysis under elevated temperatures. The developed model with a parametric study helps in identifying critical factors for design purposes.
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