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Using FDS to Simulate Smoke Layer Interface Height in a Simple Atrium

机译:使用FDS模拟简单中庭的烟层界面高度

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This study examines the possible effects of various make-up air supply arrangements and velocities in an atrium smoke management system. Variations include velocities ranging from 0.5 to 3.0 m/s. The arrangement of make-up air supply injection points include symmetrically located vents placed low in the spaced, an array of vents distributed from the floor to the ceiling, and asymmetrically located vents. Fire Dynamic Simulator version 4.06 is applied to simulate ten scenarios in a 30.5 m cubical domain with a fire source simulating a stack of pallets with an approximate peak heat release rate of 5 MW. Results show that make-up air supply velocities should be diffused such that little to no velocity effects reach the fire. Make-up air should be supplied to the fire symmetrically for the best chance of not disturbing the fire plume. Disturbing the fire and smoke plume results in a significant increase in the smoke production rate, as evidenced by a deeper smoke layer.
机译:这项研究检查了中庭烟气管理系统中各种补充空气供应安排和速度的可能影响。变化范围包括从0.5到3.0 m / s的速度。补充空气供应喷射点的布置包括对称放置的通风孔,该通风孔在间隔中较低放置,从地板到天花板分布的一系列通风孔,以及不对称放置的通风孔。 Fire Dynamic Simulator版本4.06用于模拟30.5 m立方域中的十种情况,其中火源模拟一堆栈板,峰值放热率约为5 MW。结果表明,应补给补充空气的速度,以使几乎没有甚至没有速度效应到达火上。补充空气应对称地供给火源,以最大程度地避免干扰火柱。较深的烟雾层可以证明,扰乱火和烟羽会大大提高烟雾的产生率。

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