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A Simplified Approach for Predicting Temperature Profile in Steel Members With Locally Damaged Fire Protection

机译:火灾局部破坏的钢构件温度分布的简化预测方法

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摘要

Steel structures in building are to be provided with external insulation to delay temperature rise and associated strength degradation when exposed to fire. However, due to delicateness and fragility of some insulation systems, damage might occur in these insulation systems during their service life, and such damage can lead to rapid rise in steel temperature and result in lower fire resistance of structural mem bers. Currently, there are no simple calculation methods for quantifying the effect of insulation loss on steel temperature. In this paper, a simple approach is proposed for tracing the temperature profile in steel members with partial loss of fire protection. The method is developed based on modifying the existing one-dimensional finite dif ference solutions of the heat transfer equation. The validity of the proposed method is established by comparing the predictions from the proposed method against tem peratures obtained from finite element heat transfer model that is created using ANSYS. The comparisons indicate that the proposed method is capable of predicting temperature in steel members with partially damaged insulation to a good degree of accuracy over a wide range of situations. Further, the simplicity of the proposed method makes it attractive for use in fire resistance assessment in steel structures.
机译:建筑物中的钢结构应设有外部隔热材料,以延缓温度上升以及在火中引起的强度下降。但是,由于某些隔热系统的脆弱性和脆弱性,这些隔热系统在其使用寿命期间可能会发生损坏,并且这种损坏会导致钢水温度迅速升高,并导致结构构件的耐火性降低。当前,没有简单的计算方法来量化绝缘损耗对钢温的影响。本文提出了一种简单的方法来追踪钢构件的温度分布,并部分降低防火性能。该方法是在修改传热方程的一维有限差分解的基础上开发的。通过将提出的方法的预测与使用ANSYS创建的有限元传热模型获得的温度进行比较,可以确定提出的方法的有效性。比较表明,所提出的方法能够在很大范围内的情况下以良好的准确度预测绝缘部分受损的钢构件的温度。此外,所提出方法的简单性使其可用于钢结构的耐火性评估。

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