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Numerical Modeling of the Macroscopic Behavior of a Crowd of People under Emergency Conditions Triggered by an Incidental Release of a Heavy Gas: an Integrated Approach

机译:大气偶然释放引发的应急条件下一群人群宏观行为的数值模型:综合方法

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摘要

In the present study, we focus on modeling and simulations of macroscopic behavior of a crowd of people under emergency conditions. We present a newly developed integrated numerical approach, which combines the time-dependent RANS method in predicting the temporal and spatial evolution of a heavy gas turbulent dispersion with the macroscopic model of a crowd movement. The coupling is imposed through locally determined concentration of the heavy gas which directly impacts the movement of the crowd of people. The potential of the developed approach is demonstrated in a series of cases that include the crowd behavior on an open railway platform and inside a train station, as well as predictions of field studies of turbulent dispersion of a heavy gas under windy conditions. Finally, various scenarios have been analyzed of the coupling between the local concentration of a potentially harmful heavy gas on crowd behavior through different forms of the cost functions. In conclusion, the version of the integrated model is recommended for future optimization studies of crowd dynamics following an incidental release of heavy gas.
机译:在本研究中,我们专注于在紧急条件下,专注于一群人群的宏观行为的建模和模拟。我们提出了一种新开发的综合数字方法,其结合了时间依赖的RAN方法,以预测与人群运动的宏观模型重度气体湍流色散的时间和空间演变。通过局部确定的重气浓度施加耦合,这直接影响人群的运动。开发方法的潜力在一系列案例中证明了包括开放式铁路平台和火车站内的人群行为,以及在刮风条件下的重气体湍流分散的现场研究的预测。最后,通过不同形式的成本函数分析了各种情景,通过不同形式的成本函数来分析了潜在有害重气体的局部浓度之间的耦合。总之,建议综合模型的版本,以便在偶然释放重气体后对人群动力学的未来优化研究。

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