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Symmetric modeling of the thermal actions in a structural fire experiment on a long-span composite floor beam in a compartment

机译:隔室长跨度复合地板梁的结构火灾实验中热动作的对称建模

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This paper presents symmetric modeling of the thermal actions in a structural fire experiment on a 12.8 m long composite floor beam in a compartment. A quarter of the fire compartment was modeled in FDS and a portion of about 1/160 of the composite beam was modeled in ANSYS. The FDS symmetry model gave consistent results with the FDS model of the entire compartment, the differences between the predicted upper layer gas temperatures were within 2 ?C on average. The differences between the FDS symmetry model predicted upper layer gas temperatures and the experimental data were within 7% at the steady stage. Using the thermal boundaries predicted by the FDS symmetry model, the finite element symmetry model gave good prediction of the lower flange and mid web steel temperatures of the composite beam, the differences between predicted and measured maximum lower flange and maximum mid web temperatures were within 2%. The study indicates that symmetry model might be used to predict the thermal responses of structures in realistic fires.
机译:本文介绍了在隔室中的12.8米长的复合地板梁上结构火灾实验中的热动作的对称建模。在FDS中建模了四分之一的消防舱,并且在ANSYS中建模了一部分约1/160的复合梁。 FDS对称模型对整个隔室的FDS模型进行了一致的结果,预测的上层气温之间的差异平均在2℃内。 FDS对称模型之间的差异预测的上层气温和实验数据在稳定阶段的7%范围内。使用FDS对称模型预测的热边界,有限元对称模型对复合梁的下凸缘和中幅钢温度的良好预测,预测和测量的最大较低法兰和最大中网温度之间的差异在2内%。该研究表明,对称模型可用于预测现实火灾中结构的热响应。

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