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Numerical Simulation of Fire Smoke Spread in a Super High-Rise Building for Different Fire Scenarios

机译:不同火灾情景超高层建筑物中火灾烟雾的数值模拟

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Research on fire spread in super high-rise buildings is crucial for identifying feasible methods of fire prevention and personnel evacuation. In this study, a fire spread model was established based on the fire dynamics simulator (FDS), and fire spread results were analyzed for a fire scenario in a single room under different conditions, a fire scenario in different functional places under the same conditions, and the spread of fire outside of the room. The results revealed that the critical time required for a fire to become a safety hazard in a shop, a restaurant, or an office was approximately 200?s. The same type of fire reached the critical time required for a fire to become a safety hazard more quickly in an office than a restaurant or shop, regardless of whether the fire spread was caused by CO mass fraction or temperature. More attention should be paid to fire safety in office spaces in super high-rise buildings. Furthermore, compared with CO mass fraction and temperature, visibility was a more influential factor in determining the critical time required for fire to become a hazard, and smoke affected the adjacent open area in approximately 60?s. In the event of a fire, the temperature of the staircase and its front chamber was always lower than the threshold temperature of 60°C for human body tolerance.
机译:超高层建筑物中的火灾传播研究至关重要,识别可行的防火和人员疏散方法。在这项研究中,基于消防动力学模拟器(FDS)建立了火灾传播模型,并在不同条件下对一次房间的火灾情景分析了火灾传播结果,在相同条件下的不同功能场所的火灾场景,和房间外的火的蔓延。结果表明,火灾所需的临界时间成为商店,一家餐馆或办公室的安全危险约为200?与餐厅或商店相比,相同类型的火灾达到了火灾所需的临界时间,而不是餐厅或商店。无论是由CO质量分数还是温度都是引起的。在超高层建筑中,应更多地关注办公空间中的消防安全。此外,与CO质量分数和温度相比,在确定火灾所需的临界时期,可见性是一种更具影响力的因素,并且烟雾影响了约60℃的烟雾。在火灾的情况下,楼梯的温度和其前腔始终低于60°C的阈值温度,用于人体容差。

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