Reduced-Order Modeling of Composite Floor Slabs in Fire. I: Heat-Transfer Analysis.

Jian Jiang, Joseph A Main, Jonathan M Weigand, Fahim Sadek
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Abstract

This paper presents a reduced-order numerical modeling approach for the analysis of heat transfer in composite floor slabs with profiled steel decking exposed to fire effects. This approach represents the thick and thin portions of a composite slab with alternating strips of shell elements, using a layered thick-shell formulation that accounts for both in-plane and through-thickness heat transfer. To account for the tapered profile of the ribs, layered shell elements representing the thick portion of the slab adopt a linear reduction in the density of concrete within the depth in the rib. The specific heat of concrete in the rib is also proportionally reduced to indirectly consider the heat input through the web of the decking, because the reduced-order model considers thermal loading only on the upper and lower flanges of the decking. The optimal ratio of modified and actual specific heat of concrete in the rib is determined, depending on the ratio of the height of the upper continuous portion to the height of the rib. The reduced-order modeling approach is validated against experimental results.

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火灾中复合楼板的降序建模。I:传热分析。
本文介绍了一种简化的数值建模方法,用于分析受火灾影响的带异型钢板的复合楼板的传热情况。该方法采用分层厚壳公式,用交替的条状壳元素表示复合楼板的厚板和薄板部分,同时考虑了平面内和厚度内的热传递。为了考虑肋条的锥形轮廓,代表板厚部分的分层厚壳元素采用了肋条深度内混凝土密度的线性降低。肋中混凝土的比热也按比例降低,以间接考虑通过装饰板腹板输入的热量,因为降阶模型只考虑装饰板上下翼缘的热荷载。根据上部连续部分的高度与肋条高度之比,确定了肋条中混凝土修正比热与实际比热的最佳比例。减阶建模方法与实验结果进行了验证。
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