Numerical study on fire smoke movement in elevator shafts under piston effect

Yanqiu Chen, Lizhong Yang, Taolin Zhang
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引用次数: 6

Abstract

The movement of elevator cars in a shaft can be simplified as piston motion. To study the piston effect on fire smoke flow, this article simulates some fire scenes under four different elevator cars motion states by Fluent. It analyzes the pressure distribution, the velocity distribution, and the CO2 concentration distribution. Because of the low CO2 content in the air, CO2 is used to track the movement of fire smoke. The effect of the piston motion on the smoke is analyzed. It has the maximum disturbance on the smoke when the two cars move up and down respectively at the same time. In this case, the smoke can get into the elevator shaft more easily. This will help expand the region of hazards and accelerate the spread of fire.
活塞作用下电梯井内火灾烟气运动的数值研究
电梯轿厢在竖井中的运动可以简化为活塞运动。为了研究活塞对火灾烟气流动的影响,本文利用Fluent软件模拟了四种不同电梯轿厢运动状态下的火灾场景。分析了压力分布、速度分布和CO2浓度分布。由于空气中二氧化碳含量低,二氧化碳被用来追踪火灾烟雾的运动。分析了活塞运动对烟气的影响。两车同时上下运动时对烟气的扰动最大。在这种情况下,烟雾更容易进入电梯井。这将有助于扩大危险区域并加速火灾的蔓延。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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