Open Journal of Modelling and Simulation

Open Journal of Modelling and Simulation

ISSN Print: 2327-4018
ISSN Online: 2327-4026
www.scirp.org/journal/ojmsi
E-mail: ojmsi@scirp.org
"Simulation of High Density Pedestrian Flow: A Microscopic Model"
written by Mohamed H. Dridi,
published by Open Journal of Modelling and Simulation, Vol.3 No.3, 2015
has been cited by the following article(s):
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[1] On the Verification of the Pedestrian Evacuation Model
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[2] Effect of Design on the Evacuation Time for the Colosseum of Rome
Construction of Unique Buildings and Structures, 2021
[3] Computer Simulation of Pedestrian Dynamics in the Design and Operation of Stadiums
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[4] A cellular automaton model for a pedestrian flow problem
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[5] Effect of Design on the Evacuation Time for Large Arenas of Different Epochs
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[6] Digital revolution for Hajj crowd management: a technology survey
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[7] A re-examination of the role of friction in the original Social Force Model
2020
[8] Uni-and bidirectional pedestrian flows through zigzag corridor in a tourism area: a field study
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[9] MULTI-SCALE MODELS FOR TRANSPORTATION SYSTEMS UNDER EMERGENCY
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[10] Evacuation simulation of different flow ratios in low-density state
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[11] FV–DG Method for the Pedestrian Flow Problem
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[12] FLUXO DE PEDESTRES VIA EQUAÇÃO DE BURGERS1
2019
[13] Movilidad urbana, espacio público y ciudadanos sin autonomía: el caso de Lima
2019
[14] Universality of the fundamental diagram in pedestrian dynamics. A study based on social force models.
2018
[15] A cellular automata model for high-density crowd evacuation using triangle grids
Physica A: Statistical Mechanics and its Applications, 2018
[16] Analyzing emergency evacuation strategies for mass gatherings using crowd simulation and analysis framework: Hajj scenario
SIGSIM-PADS 2017 Proceedings of the 2017 ACM SIGSIM Conference on Principles of Advanced Discrete Simulation, 2017
[17] Finite-State Mean-Field Games, Crowd Motion Problems, and its Numerical Methods
2017
[18] Universality of the Fundamental Diagram in Pedestrian Dynamics
2017
[19] Simulation of Evacuation Behaviors in Dynamically Changing Situations and Its Qualitative Validation
2016
[20] ZAHMAH SOCIAL FORCE MODEL FOR PEDESTRIAN MOVEMENT
Journal of Theoretical and Applied Information Technology, 2016
[21] Crowd Evacuation Simulation
Handbook of Human Motion, 2016
[22] On a numerical flux for the pedestrian flow equations
Journal of Applied Mathematics, Statistics and Informatics, 2015
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