Simulation model of pedestrian evacuation in high-rise building: Considering group behaviors and real-time fire

被引:0
作者
Xueling, Jiang [1 ,2 ]
机构
[1] College of Computer and Information Engineering, Guangxi Teachers Education University, Nanning, Guangxi
[2] Laboratory for Photoelectric Technology and Application, Guizhou University, Guiyang, Guizhou
来源
International Journal of Smart Home | 2015年 / 9卷 / 02期
基金
中国国家自然科学基金;
关键词
Group behavior; Pedestrian evacuation; Real-time;
D O I
10.14257/ijsh.2015.9.2.07
中图分类号
学科分类号
摘要
Many fire evacuation models have been proposed in recent years to better simulate such as an emergency situation. However, fire has different characters in high-rise building, and is affected by all kinds of factors. Evacuation of persons in case of fire is very complex, the environment will affected it, the individual psychological quality and physical quality, real time fire and so on. The numerical model based on cellular automata is presented, considering group behavior and real time fire development in the paper, and simulation experiments show the model is on the brink of reality and demonstrate its applicability and validity. © 2015 SERSC.
引用
收藏
页码:81 / 92
页数:11
相关论文
共 24 条
  • [1] Schreckenberg M., Sharma S.D., KeBelA, Microscopic simulation of pedestrian crowd motion, Pedestrian and Evacuation Dynamics (PED), (2002)
  • [2] Pelechano N., Malkawi A., Evacuation simulation models: Challenges in modeling high rise building evacuation with cellular automata approaches, Automation in construction, 17, 4, pp. 377-385, (2008)
  • [3] Owen M., Galea E.R., Lawrence P.J., The exodus evacuation model applied to building evacuation scenarios, J of Fire Protection Engr., (1996)
  • [4] Spengler J.J., Vertical restraints and antitrust policy, Journal of Political Economy, 58, 5, pp. 347-352, (1950)
  • [5] Tang F.Q., Ren A., GIS-based 3D evacuation simulation for indoor fire, Building and Environment, pp. 193-202, (2012)
  • [6] Yamamoto K., Simulation of Fire Evacuation by Real-Coded Cellular Automata (RCA), Cellular Automata, pp. 447-454, (2008)
  • [7] Blue V.J., Adler J.L., Bi-directional emergent fundamental pedestrian flows from cellular automata micro simulation, Transportation and Traffic Theory, Proceedings of the 14th International Symposium on Transportation and Traffic Theory, (1999)
  • [8] Jain S., McLean C., Components of an incident management simulation and gaming framework and related developments, Simulation, 84, 1, pp. 3-25, (2008)
  • [9] Peacock R.D., Jones W.W., Reneke P.A., CFAST -consolidated model of fire growth and smoke transport users' guide, (2005)
  • [10] Gwynne S., Galea E.R., Owen M., A review of the methodologies used in the computer simulation of evacuation from the built environment, Building and Environment, 34, pp. 741-749, (1999)