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德国Seyfried教授学术报告

来源: | 发布时间:2011-10-09| 点击🍚:

应我院黄海军教授邀请🤵🏿,德国University of Wuppertal土木工程系和德国Jülich 超级计算中心Seyfried教授将于2011年10月14下午访问我院,并做学术报告。

报告题目:逃生动力学与实验模拟

时 间🏌🏻‍♀️:2011.10.14,16:00pm-17:30pm

地 点🚣🏽:A1136

Seyfried教授的主要研究领域是行人逃生动力学和火灾模拟👐🏻。目前主持一个德国联邦教育和研究部支持的的多所大学与科研机构合作的大型计划“市政设施安全研究”,目的在于保护和拯救灾难中的人类生命🪣🍃。

The collaborative Hermes project aims to improve safety for people in large multifunctional buildings and also at big events by exploring the effectiveness of an evacuation assistant. This assistant predicts bottlenecks in advance in order to help decision-makers (operators, security services, police and firefighters) assessing conditions correctly, thereby enabling the optimal use of security personnel and rescue forces. In addition, it offers the ability to analyse potentially dangerous situations prior to the events. The preparation of appropriate emergency plans or the specifically targeted training of security forces can help to meet the challenges that such situations present. 该研究关于逃生问题的录像资料,请访问:http://www2.fz-juelich.de/jsc/appliedmath/ped/

Seyfried教授的详细情况😈:http://www2.fz-juelich.de/jsc/JSCPeople/seyfried-research

专著章节:

1. Schadschneider and A. Seyfried. Empirical Results for Pedestrian Dynamics and their Implications for Cellular Automata Models in Pedestrian Behaviour: Data Collection and Applications, (ed.) Harry Timmermans, pp. 27-43, Imprint Emerald Group Publishing Limited, 2009.

2. A. Schadschneider, W. Klingsch, H. Klüpfel, T. Kretz, C. Rogsch and A. Seyfried. Evacuation Dynamics: Empirical Results, Modeling and Application, in Robert A. Meyers (Ed), Enzyclopedia of Complexity and System Science, vol.3, pp. 3142, Springer, 2009.

3. A. Schadschneider, H. Klüpfel, T. Kretz,and C. Rogsch and A. Seyfried. Fundamentals of Pedestrian and Evacuation Dynamics, in Bazzan and Klugl (Eds), A .Multi-Agent Systems for Traffic and Transportation Engineering, pp. 124-154; April 2009.

代表性论文:

1. Empirical results for pedestrian dynamics and their implications for modelling. A. Schadschneider and A. Seyfried. Networks and Heterogeneous Media, Vol. 6, Pages : 545 - 560. September 2011.

2. Force-based models of pedestrian dynamics. M. Chraibi, U. Kemloh, A. Schadschneider and A. Seyfried. Networks and Heterogeneous Media, Vol. 6, Pages: 425 - 442. September 2011.

3. Transitions in pedestrian fundamental diagrams of straight corridors and T-junctions. J. Zhang, W. Klingsch, A. Schadschneider, A. Seyfried. Journal of Statistical Mechanics: Theory and Experiment, P06004 (2011).

4. Generalized centrifugal-force model for pedestrian dynamics. M. Chraibi, A. Seyfried and A. Schadschneider. Physical Review E, 2010, vol. 82, p. 046111.

5. Methods for measuring pedestrian density, flow, speed and direction with minimal scatter. B. Steffen, A. Seyfried. Physica A: Statistical Mechanics and its Applications, 2010, vol. 389, Issue 9, pp. 1902-1910.

6. Comparison of Pedestrian Fundamental Diagram Across Cultures. U. Chattaraj, A. Seyfried and P. Chakroborty. Advances in Complex Systems, 2009, vol. 12, Issue 3, pp. 393-405.

7. Validation of CA Models of pedestrian dynamics with fundamental diagrams. A. Schadschneider and A. Seyfried. Cybernetics and Systems, 2009, vol. 40, Issue 5 July 2009, pp. 367-389.

8. New insights into pedestrian flow through bottlenecks. A. Seyfried, T. Rupprecht, O. Passon, B. Steffen, W. Klingsch and M. Boltes. Transportation Science 2009; 43: 395-406.

9. Basics of Modelling the Pedestrian Flow. A.Seyfried, B. Steffen and Th. Lippert. Physica A 368(1), 232-238, 2006.

10. The Fundamental Diagram of Pedestrian Movement Revisited. A. Seyfried, B. Steffen, W. Klingsch and M. Boltes. J. Stat. Mech., P10002, 2005

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