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Investigation of Effectiveness of Emergency Ventilation Strategies in the Event of Fires in Road Tunnels

机译:公路隧道火灾时紧急通风策略的有效性调查

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摘要

A research project is being conducted at the National Research Council of Canada (NRC) to evaluate the effectiveness of current emergency ventilation strategies to control smoke spread in the event of a fire in two road tunnels. The research study includes numerical and experimental phases. The numerical phase uses computational fluid dynamics (CFD) models to study smoke ventilation in the tunnels. The experimental phase is used to calibrate and to partially validate the chosen CFD models and to provide the necessary initial and boundary conditions. SOLVENT, a CFD model, was used to model ventilation scenarios using existing data. The current paper presents the efforts to validate the CFD model against on-site flow and fire test measurements conducted in a 1.8 km road tunnel. The CFD model includes aerodynamically significant physical features of the tunnel and is customized to provide general roughness replicating the actual roughness in the tunnel.
机译:加拿大国家研究委员会(NRC)正在进行一项研究项目,以评估当前的紧急通风策略在两条道路隧道发生火灾时控制烟雾扩散的有效性。研究包括数值和实验阶段。数值阶段使用计算流体动力学(CFD)模型研究隧道中的烟气通风。实验阶段用于校准和部分验证所选的CFD模型,并提供必要的初始条件和边界条件。 CFD模型SOLVENT用于使用现有数据对通风场景进行建模。本文介绍了针对在1.8 km公路隧道中进行的现场流量和火灾测试测量结果验证CFD模型的努力。 CFD模型包括隧道在空气动力学方面的重要物理特征,并经过定制以提供可复制隧道中实际粗糙度的一般粗糙度。

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