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COMPUTATIONAL METHOD AND NUMERICAL SIMULATION OF TEMPERATURE FIELD FOR LARGE-SPACE STEEL STRUCTURES IN FIRE

机译:火灾中大空间钢结构温度场的计算方法与数值模拟

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摘要

For large-space steel structures in fire, an accurate temperature field model is essential to predict the temperature distribution for response analysis of the structure. Based on the field model theories of air thermodynamics and heat transfer, the combustion process and temperature distribution of large-space steel structures in fire were analyzed in this paper. The temperature field model of large-space fire, including fire source, smoke plume and smoke layers models, was established. Closed form formulas were developed to predict the air temperature, within its application limit, near the ceiling of large-space steel structures in fire. The accuracy of the formulas was verified by comparing with results obtained from numerical method based on field models. This research provides an important theoretical basis for further studying the behavior of large-space steel structures in fire.
机译:对于着火的大空间钢结构,准确的温度场模型对于预测结构响应分析的温度分布至关重要。基于空气热力学和热传递的场模型理论,分析了大空间钢结构在火灾中的燃烧过程和温度分布。建立了大空间火灾的温度场模型,包括火源,烟羽和烟层模型。开发了封闭形式公式,以在大火中钢结构天花板附近的应用极限内预测空气温度。通过与基于现场模型的数值方法获得的结果进行比较,验证了公式的准确性。该研究为进一步研究大空间钢结构在火灾中的行为提供了重要的理论依据。

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