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Numerical simulations on fire spread and smoke movement in an underground car park

机译:地下停车场火灾蔓延和烟气运动的数值模拟

摘要

The Fire Dynamic Simulator code is used to investigate fire spread and smoke movement in a large underground car park under different fire scenarios. Initially, by comparing with experimental results of heat release rate of a single car fire, the development of car fire is designed by letting surface densities of the fuel over the car. Fire spread and movement of smoke are then investigated under different ventilation conditions. Simulated results show that the development of car fire in the underground car park can be classified into four stages; namely an initial stage, a developed stage, an extinction and re-burning stage and another fast-developed stage. Affected by ventilation systems, fire develops rapidly resulting in consuming most oxygen quickly followed by early extinction of the fire. After extinction of the fire, with more ambient air drawn into the car park due to ventilation, re-ignition takes place with accelerated development. In addition, detailed field distributions of temperature and velocity vectors are given. It is found that the smoke layer decent to the top of the car after 15 min and the hot smoke flows in a disorderly manner resulting in the spread of fire more rapidly.
机译:火灾动态模拟器代码用于调查大型地下停车场在不同火灾情况下的火灾蔓延和烟雾运动。最初,通过与单个汽车着火的放热率的实验结果进行比较,通过让燃料的表面密度覆盖汽车来设计汽车着火的发展。然后研究在不同通风条件下的火势蔓延和烟雾的运动。模拟结果表明,地下停车场火灾的发展可分为四个阶段。即初始阶段,发展阶段,灭绝和再燃阶段以及另一个快速发展阶段。受通风系统影响,火势迅速发展,导致大部分氧气迅速消耗,随后火势早日熄灭。火灾熄灭后,由于通风使更多的环境空气吸入停车场,因此重新点燃会加速发展。另外,给出了温度和速度矢量的详细场分布。发现15分钟后,烟雾层像汽车顶部一样,热烟以不规则的方式流动,导致着火更加迅速地蔓延。

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