Development of a Method for Increasing the Fire Resistance of Cast-iron Structures of Cultural Heritage Sites under Reconstruction

Sergey Puzach, Lisienkova Liubov, Ekaterina Кamchatova, Lyudmila Nosova, Viktoriya Degtyareva, Valentina Tarasova, Liudmila Komarova
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Abstract

When reconstructing cultural heritage sites, significant changes to the original design planning are not allowed. More rational methods are needed to increase the fire resistance of historical buildings, which will ensure their fire safety and preserve their architectural value. Nowadays, most heritage sites do not meet the safety requirements of modern buildings. The purpose of the study is to develop a methodology for increasing the fire resistance of cast iron structures. The key tasks are increasing the fire resistance of buildings during reconstruction and ensuring their fire safety during operation. The tasks have been achieved by developing a new methodology for increasing the fire resistance of cast iron. It includes an integrated approach to assessing the risk of a fire, a predictive model for the occurrence of fire danger, as well as various scenarios for the fire development caused by cast iron heating. The results’ analysis has allowed us to determine the fire resistance limits of cast iron structures. The scientific novelty lies in the study of the fire resistance of cast iron structures using a three-dimensional mathematical model. The resulting values have been obtained via differential equations of the laws of mass conservation, momentum, gaseous energy, and the optical density of smoke. Doi: 10.28991/CEJ-2024-010-02-015 Full Text: PDF
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开发提高重建中的文化遗址铸铁结构耐火性的方法
在重建文化遗址时,不允许对原设计规划进行重大改动。需要采用更合理的方法来提高历史建筑的耐火性能,从而确保其消防安全,保护其建筑价值。如今,大多数文物古迹都不符合现代建筑的安全要求。这项研究的目的是制定一种提高铸铁结构耐火性的方法。主要任务是在重建过程中提高建筑物的耐火性能,并在运行过程中确保其防火安全。这些任务是通过开发一种提高铸铁耐火性的新方法来实现的。它包括评估火灾风险的综合方法、火灾危险发生的预测模型以及铸铁加热引起火灾发展的各种情况。通过对结果的分析,我们可以确定铸铁结构的耐火极限。科学新颖之处在于使用三维数学模型研究铸铁结构的耐火性。通过质量守恒定律、动量、气态能量和烟雾光学密度的微分方程,得出了相应的数值。Doi: 10.28991/CEJ-2024-010-02-015 全文:PDF
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