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Modelling and Analysis of the Bottom Frames of Multi-story Masonry Buildings Exposed to Fire

机译:曝光到火灾的多层砌体建筑底部框架的建模与分析

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The multi-story masonry buildings with reinforced concrete frames on ground floors collapse more easily than pure frames when bottom frames exposed to fire, for reasons that fire load of its ground floors is relatively large, and the ratio of dead load to the total loads is also large, deformations of joists caused by fire produce adverse effect on arch mechanism of masonry. For the purpose of loading temperature on steel bars and concrete for fire resistance analysis of reinforced concrete structures in ABAQUS, separated loading method is proposed firstly in this article. The Hill yield criterion for compression and the Rankine yield criterion for tension are adopted to establish anisotropic elasto-plastic material model for masonry. The process simulation from temperature rises to buildings collapse is realized. A parametric study is conducted to investigate the effects on fire resistance of the bottom frames when the bottom floors exposed to fire due to the change in effective load ratio, section size and reinforcement ratio. The study shows that the failure mode of the bottom frames exposed to fire is mainly due to columns collapse. Bottom fames designed with seismic class I and II have relatively more safety storage than non-seismic designed bottom frames to resist the fire load effect, and they can satisfy time limits of fire resistance.
机译:当底部框架暴露于火灾时,钢筋混凝土框架的多层砌体建筑比纯框架更容易折叠,因为它的地板的火焰负荷相对较大,并且死载与总负载的比率是也大,由火灾引起的托梁的变形产生对砌体拱机制的不利影响。为了加载钢筋上的温度和ABAQUS中钢筋混凝土结构的耐火分析混凝土,本文首先提出了分离的装载方法。采用山坡屈服标准和抗拉伸的rankine产量标准来建立砌体的各向异性弹塑性材料模型。从温度上升到建筑物崩溃的过程模拟。一种参数研究以调查在底部框架的耐火性的影响时的底部地板暴露于火由于在有效负载率,截面尺寸和增强件比的变化。该研究表明,暴露于火灾的底部框架的故障模式主要是由于柱塌陷。使用地震级I和II设计的底部着名的安全存储比非地震设计的底部框架相对较长,以抵抗火灾荷载作用,并且它们可以满足防火的时间限制。

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