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Numerical simulation for optimization of hybrid fire ventilation system in highway tunnel

机译:公路隧道混合消防通风系统优化的数值模拟

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With the growth of the length and traffic volume of the highway tunnel, the traditional use of a separate ventilation mode has been unable to meet the comprehensive requirements properly, including aspects of energy conservation, economical efficiency and safe reliability, Etc. This paper, based on the theory of network ventilation, mainly focuses on the integration analysis of the numerical results of the SES program and the detailed check of the CFD simulation on this subject, and is to predict and compute the fire thermal property and the concentration distributions of air pollutants in the advanced hybrid fire ventilation mode, which promotes the interrelated design parameters and operating strategies to be optimized. The results show that the critical air velocity in tunnel is the key parameter for fire ventilation control system. Furthermore, when the air velocity inside is greater than the critical air velocity calculated, it can prevent fume reversing effectively, and greatly reduce the rear temperature of the fire source, which is conducive to the rear evacuation and rescue work, as well as reducing the ignition chances of the vehicles.
机译:随着公路隧道的长度和交通量的增长,传统的单独通风方式已无法充分满足综合要求,包括节能,经济效益和安全可靠性等方面。在网络通风理论上,主要着重于对SES程序的数值结果进行积分分析和对此问题进行CFD模拟的详细检查,目的是预测和计算火灾的热性质和空气污染物的浓度分布在高级混合式消防通风模式下,可促进相关设计参数和运行策略的优化。结果表明,隧道的临界风速是消防通风控制系统的关键参数。此外,当内部风速大于计算的临界风速时,可以有效防止烟气逆转,大大降低了火源的后部温度,有利于后部疏散和救援工作,并减少了车辆的点火机会。

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