首页> 外文期刊>Journal of Civil Engineering and Management >A GLOBAL RELATION OF FIRE SMOKE RE-CIRCULATION BEHAVIOUR IN URBAN STREET CANYONS
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A GLOBAL RELATION OF FIRE SMOKE RE-CIRCULATION BEHAVIOUR IN URBAN STREET CANYONS

机译:城市街道峡谷火灾烟气循环行为的全球关系

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摘要

Street canyon, formed by buildings along two sides of a road, is an important and ubiquitous architectural element in the metropolises. When a fire occurs in an urban street canyon, a critical serious phenomenon is found to happen where the uprising fire smoke is re-circulated back into the base of the street canyon by the wind flow beyond a critical velocity. Theoretical analysis is derived based on Froude number (Fr), by balancing the inertial force of the wind flow to the buoyancy strength of the fire smoke. It is found that the critical re-circulation wind velocity is proportional to an integrated global parameter Q~(1/3)H~(-1/3). Large Eddy Simulations (LES) are carried out by Fire Dynamics Simulator (FDS). The critical Froude number (Fr) is found to be about 0.7~0.8. The simulation results are well collapsed by the generalized theoretical relation. It is further revealed that the non-dimensional critical re-circulation wind velocity u_c/(Q~(1/3)H~(-1/3))((ρc_pT_∞)/g)~(1/3). against aspect ratio of street canyons in the skimming flow pattern (W/H < 1.43) falls into two behavioural regimes, where it firstly increases then remains constant with the increase in street canyon aspect ratio (W/H) with a turning point at W/H = 1. A global non-dimensional relation is finally achieved for the critical re-circulation wind velocity (u), fire heat release rate (Q) and its height (H) to the top of the street canyon as well as the street canyon aspect ratio (W/H).
机译:由沿道路两侧的建筑物形成的街道峡谷是大都市中重要且普遍存在的建筑元素。当城市街道峡谷发生火灾时,发现了严重的严重现象,起义的火烟被超过临界速度的风流重新循环回街道峡谷的底部。通过平衡风流的惯性力与火烟的浮力,基于弗洛德数(Fr)得出理论分析。发现临界再循环风速与整体积分参数Q〜(1/3)H〜(-1/3)成正比。大型涡流仿真(LES)由Fire Dynamics Simulator(FDS)进行。临界弗劳德数(Fr)约为0.7〜0.8。通过广义理论关系可以很好地模拟结果。进一步揭示了无量纲的临界再循环风速u_c /(Q〜(1/3)H〜(-1/3))((ρc_pT_∞)/ g)〜(1/3)。掠流模式下(W / H <1.43)对街道峡谷纵横比的影响分为两种行为方式,即先增加然后随街道峡谷纵横比(W / H)的增加而保持恒定,拐点为W / H =1。最终获得了关键的再循环风速(u),火热释放速率(Q)及其在街道峡谷顶部和地面的高度(H)的全局无量纲关系。街道峡谷纵横比(W / H)。

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