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Fire Resistance of L-shaped Columns Subjected to Different Fire Exposure Cases

机译:L形柱的耐火性受到不同火灾曝光案件的影响

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The fire resistance of the columns with L-shaped cross section is lower than that of the columns with rectangular cross section for the former has thinner sectional thickness and larger surface area exposed to fire.Analyses were performed using a numerical program RCSSCF based on the conjugate beam method to study the influence of several parameters, such as axial load ratio,effective length,sectional dimension,load eccentricity ratio, reinforcement ratio and load angle, on the fire resistance of L-shaped columns subjected to the ISO834 standard fire with typical fire exposure cases.20736 columns were selected for fire response analyses.Different axial load ratios, effective lengths, sectional dimensions, load eccentricity ratios, reinforcement ratios,load angles and fire exposure cases were considered in the analyses. Based on the simulation results, a practical calculation method is proposed for the fire resistance of the columns with L-shaped cross section subjected to three typical fire exposure cases. The simulation results indicate that: (a) reducing the axial load ratio is an effective measure to improve the fire resistance of the columns with L-shaped cross section subjected to typical fire exposure cases; (b) the fire resistance of the columns with L-shaped cross section subjected to typical fire exposure cases decreases linearly with the increasing of effective length, whereas increases linearly with the increasing of sectional thickness for the same value of sectional height/sectional thickness; (c) the fire resistance of the columns with L-shaped cross section subjected to typical fire exposures decreases significandy with the increasing of load eccentricity ratio on the whole; and (d) the influence of load angle on the fire resistance of the columns with L-shaped cross section subjected to typical fire exposure cases is significant and complex.
机译:具有L形横截面的柱的抗火电阻低于前者的矩形横截面的柱的磁阻具有较薄的截面厚度和暴露于火灾的较大表面积。使用基于共轭的数值程序rcsscf进行了较大的表面积。光束方法研究几个参数的影响,例如轴向载率,有效长度,截面尺寸,负载偏心比,加固率和载荷角,对L形柱的耐火性与ISO834标准火灾典型的火灾接触案例为消防响应分析选择了20736个柱。在分析中考虑了有效的轴向载荷比,有效长度,截面尺寸,负荷偏心比,加强比,负荷角和火灾曝光案例。基于仿真结果,提出了一种实用的计算方法,用于L形横截面柱的磁阻,对三种典型的火灾曝光案例进行柱子。仿真结果表明:(a)降低轴向载荷比是提高L形横截面柱的柱子的耐火性的有效措施; (b)具有典型火灾曝光情况的L形横截面的柱子的耐火性随着有效长度的增加而线性地降低,而随着截面厚度的截面厚度的截面厚度的增加而导致线性增加; (c)与典型火灾曝光的L形横截面的柱的耐火性降低了整体载荷偏心比的增加; (d)负载角对柱状横截面柱的耐火性的影响是显着的,复杂的典型横截面。

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