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Numerical study of water spray interaction with fire plume in dual chambers connected to tall shaft

机译:高大竖井双室中水雾与火羽相互作用的数值研究

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The interactions between water droplets and fire plume in a two compartmental enclosure connected to tall shaft are numerically investigated. The cooling and drag effects of water particles on thermal plume characteristics are analyzed under natural and forced ventilation conditions. Numerical study is performed by Large Eddy Simulation (LES) using Fire Dynamic Simulator (FDS) code. The water droplets oppose the smoke buoyancy force and reduces the ceiling vent discharge rate. For higher sprinkler operating pressure the drag force dominates buoyancy force and stops the plume propagation through horizontal passage. The critical sprinkler operating pressure that leads to smoke logging is identified. The horizontal vent mass flow rate decreases linearly with water spray discharge rate. The forced air stream supplied at low velocity assists buoyancy force and eliminates smoke logging. However, higher ventilation velocities intensify cooling effect by increasing the interactions between water droplets and thermal plume. The model employed has been validated with the existing experimental results available in the literature. (C) 2015 Elsevier Ltd. All rights reserved.
机译:数值研究了两个与高轴相连的隔室中水滴与火羽之间的相互作用。在自然通风和强制通风条件下,分析了水颗粒对热羽流特性的冷却和阻力效应。数值研究是通过大涡模拟(LES)使用Fire Dynamic Simulator(FDS)代码进行的。水滴与烟气浮力相反,并降低了天花板通风孔的排放速率。对于更高的洒水器工作压力,阻力主要是浮力,并阻止烟羽通过水平通道传播。确定了导致烟雾记录的临界洒水操作压力。水平通风口的质量流量随喷水量的增加而线性降低。低速供给的强制气流有助于浮力并消除烟雾。然而,较高的通风速度通过增加水滴和热羽流之间的相互作用来增强冷却效果。使用的模型已通过文献中现有的实验结果进行了验证。 (C)2015 Elsevier Ltd.保留所有权利。

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