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CFD SIMULATION OF SMOKE SPREAD THROUGH ELEVATOR SHAFTS DURING FIRES IN HIGH RISE BUILDINGS

机译:高层建筑中起火过程中电梯轴上烟雾扩散的CFD模拟

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Smoke spread through the elevator shafts of high rise buildings has been numerically investigated using the Fire Dynamics Simulator (FDS), which is a computational fluid dynamics (CFD) program suitable for fire induced heat and mass transfer. A model of a high rise building was developed and a fire was set at the first level. The smoke spread process through the elevator shafts was evaluated. The process can be divided into two phases. In the first phase, the smoke gradually fills the shafts, and the gas temperature and pressure in the shafts are transient. After this phase, the smoke fully fills the shafts, the temperature and pressure in the shaft are almost steady, which suggests that the smoke inflow rate equals the outflow rate. Throughout the process, the spatial distributions of temperature and pressure in the elevator shaft under fire situations were reported. The hot fire product gases entering the shaft causes a stack effect, which transports smoke to the upper levels. A method of partially enclosing the elevator lobbies was also investigated by the CFD simulation. The results were compared with the unenclosed situation, and showed that enclosing lobbies not only increases the time needed for the smoke to fully fill the shafts, but also reduces the temperature and pressure differences in the shafts.
机译:使用消防动力学模拟器(FDS)进行了数值研究了通过电动动力学模拟器(FDS)进行了数值调查的烟雾,这是一种适用于火灾引起的热量和传质的计算流体动力学(CFD)程序。开发了一个高层建筑模型,在第一级设定了火灾。评估通过电梯轴的烟雾扩散过程。该过程可分为两个阶段。在第一阶段,烟雾逐渐填充轴,轴中的气体温度和压力是瞬时的。在此阶段之后,烟雾完全填充轴,轴中的温度和压力几乎稳定,这表明烟雾流入速率等于流出率。在整个过程中,报道了在火情况下电梯轴温度和压力的空间分布。进入轴的热火产品气体导致堆叠效果,将烟雾运输到上层。还通过CFD模拟研究了部分封闭电梯叶面的方法。将结果与未经生命的情况进行比较,并显示封闭式大厅不仅增加了烟雾充分填充轴所需的时间,而且还降低了轴的温度和压力差异。

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