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Influences of exit and stair conditions on human evacuation in a dormitory

机译:出口和楼梯状况对宿舍人员疏散的影响

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Evacuation processes of students are investigated by experiment and simulation. The experiment is performed for students evacuating from a dormitory with an exit and stairs. FDSEvac is proposed to simulate the exit and stair dynamics of occupant evacuation. Concerning the exit and stair widths, we put forward some useful standpoints. Good agreement is achieved between the predicted results and experimental results. With the increase of exit width, a significant stratification phenomenon will be found in flow rate. Stratification phenomenon is that two different stable flow rates will emerge during the evacuation. And the flow rate curve looks like a ladder. The larger the exit width, the earlier the stratification phenomenon appears. When exit width is more than 2.0 m, the flow rate of each exit width is divided into two stable stages, and the evacuation times show almost no change. The judgment that the existence of stairs causes flow stratification is reasonable. By changing the width of the stairs, we proved that judgment. The smaller the width of BC, the earlier the stratification appears. We found that scenario 5 is the most adverse circumstance. Those results are helpful in performance-based design of buildings.
机译:通过实验和模拟研究了学生的疏散过程。该实验是针对从有出口和楼梯的宿舍撤离的学生进行的。提出了FDSEvac来模拟人员疏散的出口和楼梯动态。关于出口和楼梯的宽度,我们提出了一些有用的观点。预测结果与实验结果吻合良好。随着出口宽度的增加,流量中会发现明显的分层现象。分层现象是疏散过程中会出现两种不同的稳定流量。流量曲线看起来像梯子。出口宽度越大,分层现象越早出现。当出口宽度大于2.0 m时,每个出口宽度的流量分为两个稳定阶段,而疏散时间几乎没有变化。楼梯的存在会引起流动分层的判断是合理的。通过改变楼梯的宽度,我们证明了这一判断。 BC的宽度越小,分层越早出现。我们发现方案5是最不利的情况。这些结果对于基于性能的建筑物设计很有帮助。

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