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Turbulent smoke flow in evacuation staircases during a high-rise residential building fire

机译:高层住宅火灾中疏散楼梯中的湍流烟气

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Purpose- The purpose of this paper is to study the behavior of smoke flow in a typical high-rise residential building fire in six common smoke control systems. Design/methodology/approach- The pressure, temperature and CO_2 concentration were used to trace the motion of turbulent smoke flow through CFD. Findings- It is found that the hot smoke could rise up and spread into the indoor space on the upper floors through the staircase. When the pressure in the evacuation staircase is higher, it would be more difficult for the smoke to enter the staircase and transport vertically. On the other hand, the smoke would soon transport to the indoor space on the upper floors horizontally. During this process, the smoke shows a more disorder horizontal transport under the sole effect of thermal buoyancy than the co-existence of thermal buoyancy and the air inlet. Research limitations/implications- Because of the chosen research approach, the research results may need to be tested by further experiments. Practical implications- The paper includes implications for the design of smoke control systems and evacuation in a building fire. Originality/value- This paper fulfils an identified need to study the behavior of smoke in a fire and optimize the design of smoke control systems.
机译:目的-本文的目的是研究六种常见烟雾控制系统中典型高层住宅建筑火灾中烟气流动的行为。设计/方法/方法-压力,温度和CO_2浓度用于追踪通过CFD的湍流烟气运动。调查结果:发现,热烟可能会上升并通过楼梯传播到较高楼层的室内空间。当疏散楼梯中的压力较高时,烟气更难进入楼梯并垂直传输。另一方面,烟雾很快就会水平地传送到较高楼层的室内空间。在此过程中,与热浮力和进气口并存相比,在热浮力的唯一作用下,烟雾显示出更多的水平传输紊乱。研究局限性/含意-由于选择了研究方法,因此可能需要通过进一步的实验来检验研究结果。实际意义-本文包括对烟雾控制系统设计和建筑物火灾中疏散的意义。原创性/价值-本文满足了研究火灾中烟雾行为并优化烟雾控制系统设计的确定需求。

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