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Optimization of Emergency Ventilation Strategies in a Roadway Tunnel

机译:巷道应急通风策略的优化

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In order to evaluate the effectiveness of in-place emergency ventilation strategies to control smoke spread in the event of a fire in a section of a roadway tunnel, both numerical and experimental studies were performed. The experimental study was conducted to provide the necessary initial and boundary conditions for the numerical phase of the investigation. A fire heat release rate of 1 MW was used in all fire tests. This fire heat release rate was selected to minimize the risk of damage to the tunnel and its associated systems while producing reliable data for visualizing the smoke movement in the tunnel. The numerical study used Computational Fluid Dynamics, Fire Dynamic Simulator version 4.0 to investigate smoke removal in the tunnel for large fire of 30 MW (bus or truck on fire). In total, four field fire tests and seven numerical simulations were conducted. Based on the study results, recommendations were made to optimize the ventilation scenarios in the tunnel section. This article presents the details of the study as well as the recommendations made.
机译:为了评估就地紧急通风策略控制行车隧道部分火灾时散发烟尘的有效性,进行了数值和实验研究。进行了实验研究,为研究的数字阶段提供了必要的初始条件和边界条件。在所有火灾测试中均使用1 MW的火热释放速率。选择该火热释放速率是为了最大程度地减少损坏隧道及其相关系统的风险,同时生成可靠的数据以可视化隧道中的烟雾运动。数值研究使用4.0版Fire Dynamic Simulator计算流体动力学研究了30 MW大型火灾(公共汽车或卡车着火)时隧道内的烟雾清除。总共进行了四次现场火灾测试和七个数值模拟。根据研究结果,提出了建议以优化隧道部分的通风方案。本文介绍了研究的细节以及提出的建议。

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