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A case study on fire damage assessment of a two-story building with precast pretensioned hollow core slabs

机译:一种案例研究防盗预紧空心板的两层楼大楼的火灾损伤评价

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The study comprises conducting a structural assessment of a two-story building operated as a textile factory. The floor slabs are composed of pre-tensioned precast hollow core slab units of 1.2?m width, 9.0?m length and 0.265?m thickness each. The slab units are assembled side by side to make up the floor slabs. The remaining structural elements of the building are of reinforced concrete. The work involved assessment of the damage using various tools such as on-site inspection for a preliminary evaluation of the construction and the assessment of the severity of fire attack. Then field and laboratory testing were carried out to estimate the amount of damage.Onsite inspection and testing indicated that the fire severity in the first floor was more than that in the second floor. Nondestructive testing indicated that the residual strength of concrete in the first floor for slabs and columns were as low as 58% and 62% of concrete design strength respectively. The pre-tensioned slab panels that made up the floor slabs suffered from discrepancies in the soffit levels. Based on the low existing loads when the fire erupted and the provided strands thermal insulation, a heat transfer analysis was carried out on a finite element model of a precast pretensioned hollow core slab unit. Then a two stage structural analysis was performed to determine the fire endurance exposure time. Ultimately, the fire endurance exposure time was estimated to be one hour. The predicted maximum mid span deflection at the structural end point was 3.26 times larger than the maximum mid span deflection at ambient conditions.The study encompasses proposing appropriate repair methods or to decide whether the demolition of elements or the whole structure is more appropriate. Based on the carried out study, it was concluded that the demolition of the structure is more convenient.
机译:该研究包括对作为纺织厂运营的两层建筑进行结构评估。地板板坯由预张紧的预制空心芯板组成,宽度为1.2Ω米,长度为9.0Ωm,厚度为0.265μm。板坯单元并排组装以构成地板板。建筑物的剩余结构元素是钢筋混凝土。工作涉及使用各种工具的损害评估,如现场检查,以便初步评估建设和对火灾攻击严重程度的评估。然后进行现场和实验室测试以估计损害量。首发检查和测试表明,一楼的火灾严重程度超过二楼。无损检测表明,板坯和柱的一楼中混凝土的剩余强度分别低至混凝土设计强度的58%和62%。构成楼层板的预张紧板块遭受距离水平的差异。基于在火灾爆发和提供的股线绝热时的低现有载荷,在预制预张紧空心芯板单元的有限元模型上进行传热分析。然后进行两阶段结构分析以确定火灾耐久性时间。最终,估计火灾耐力暴露时间为1小时。结构终点的预测最大中跨度偏转比环境条件下的最大MID跨度偏转大3.26倍。该研究包括提出适当的修复方法或决定是否更合适地拆除元件或整体结构。基于进行的研究,得出结论是,拆迁结构更方便。

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