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Crowd dynamics.Volume 3,Modeling and...
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Bellomo, N.
Crowd dynamics.Volume 3,Modeling and social applications in the time of COVID-19
Record Type:
Electronic resources : Monograph/item
Title/Author:
Crowd dynamics.edited by Nicola Bellomo, Livio Gibelli.
remainder title:
Modeling and social applications in the time of COVID-19
other author:
Bellomo, N.
Published:
Cham :Springer International Publishing :2021.
Description:
1 online resource (viii, 257 p.) :ill. (chiefly col.), digital ;24 cm.
Contained By:
Springer Nature eBook
Subject:
Human engineering.
Online resource:
https://doi.org/10.1007/978-3-030-91646-6
ISBN:
9783030916466$q(electronic bk.)
Crowd dynamics.Volume 3,Modeling and social applications in the time of COVID-19
Crowd dynamics.
Volume 3,Modeling and social applications in the time of COVID-19[electronic resource] /Modeling and social applications in the time of COVID-19edited by Nicola Bellomo, Livio Gibelli. - Cham :Springer International Publishing :2021. - 1 online resource (viii, 257 p.) :ill. (chiefly col.), digital ;24 cm. - Modeling and simulation in science, engineering and technology,2164-3725. - Modeling and simulation in science, engineering and technology..
N. Bellomo, L. Gibelli, Behavioral human crowds: Recent results and new research frontiers -- F. Ceragioli, P. Frasca, B. Piccoli, F. Rossi, Generalized solutions to opinion dynamics models with discontinuities -- Z. Sabeur, B. Arbab-Zavar, Crowd behaviour understanding using computer vision and statistical mechanics principles -- L. Li, H. Liu, Y. Han, G. Zhang, D. Lu, Applications of crowd dynamic models: Feature analysis and process optimization -- G. Albi, F. Ferrarese, C. Segala, Optimized leaders strategies for crowd evacuation in unknown environments with multiple exits -- E. Ronchi, D. Nilsson, R. Lovreglio, M. Register, K. Marshall, The impact of physical distancing on the evacuation of crowds -- D. Kim, A. Quaini, A kinetic theory approach to model crowd dynamics with disease contagion -- M. Colangeli, A. Muntean, Towards a quantitative reduction of the SIR epidemiological model -- G. Pescarmona, P. Terna, A. Acquadro, P. Pescarmona, G. Russo, E. Sulis, S. Terna, An agent-based model of COVID-19 Diffusion to plan and evaluate intervention policies.
This contributed volume explores innovative research in the modeling, simulation, and control of crowd dynamics. Chapter authors approach the topic from the perspectives of mathematics, physics, engineering, and psychology, providing a comprehensive overview of the work carried out in this challenging interdisciplinary research field. In light of the recent COVID-19 pandemic, special consideration is given to applications of crowd dynamics to the prevention of the spreading of contagious diseases. Some of the specific topics covered in this volume include: - Impact of physical distancing on the evacuation of crowds - Generalized solutions of opinion dynamics models - Crowd dynamics coupled with models for infectious disease spreading - Optimized strategies for leaders in controlling the dynamics of a crowd Crowd Dynamics, Volume 3 is ideal for mathematicians, engineers, physicists, and other researchers working in the rapidly growing field of modeling and simulation of human crowds.
ISBN: 9783030916466$q(electronic bk.)
Standard No.: 10.1007/978-3-030-91646-6doiSubjects--Topical Terms:
182676
Human engineering.
LC Class. No.: HM1033 / C76 2021
Dewey Class. No.: 620.86
Crowd dynamics.Volume 3,Modeling and social applications in the time of COVID-19
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N. Bellomo, L. Gibelli, Behavioral human crowds: Recent results and new research frontiers -- F. Ceragioli, P. Frasca, B. Piccoli, F. Rossi, Generalized solutions to opinion dynamics models with discontinuities -- Z. Sabeur, B. Arbab-Zavar, Crowd behaviour understanding using computer vision and statistical mechanics principles -- L. Li, H. Liu, Y. Han, G. Zhang, D. Lu, Applications of crowd dynamic models: Feature analysis and process optimization -- G. Albi, F. Ferrarese, C. Segala, Optimized leaders strategies for crowd evacuation in unknown environments with multiple exits -- E. Ronchi, D. Nilsson, R. Lovreglio, M. Register, K. Marshall, The impact of physical distancing on the evacuation of crowds -- D. Kim, A. Quaini, A kinetic theory approach to model crowd dynamics with disease contagion -- M. Colangeli, A. Muntean, Towards a quantitative reduction of the SIR epidemiological model -- G. Pescarmona, P. Terna, A. Acquadro, P. Pescarmona, G. Russo, E. Sulis, S. Terna, An agent-based model of COVID-19 Diffusion to plan and evaluate intervention policies.
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This contributed volume explores innovative research in the modeling, simulation, and control of crowd dynamics. Chapter authors approach the topic from the perspectives of mathematics, physics, engineering, and psychology, providing a comprehensive overview of the work carried out in this challenging interdisciplinary research field. In light of the recent COVID-19 pandemic, special consideration is given to applications of crowd dynamics to the prevention of the spreading of contagious diseases. Some of the specific topics covered in this volume include: - Impact of physical distancing on the evacuation of crowds - Generalized solutions of opinion dynamics models - Crowd dynamics coupled with models for infectious disease spreading - Optimized strategies for leaders in controlling the dynamics of a crowd Crowd Dynamics, Volume 3 is ideal for mathematicians, engineers, physicists, and other researchers working in the rapidly growing field of modeling and simulation of human crowds.
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based on 0 review(s)
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EB HM1033 .C953 2021 2021
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https://doi.org/10.1007/978-3-030-91646-6
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