Perception-based analytical technique of evacuation behavior under radiological emergency: An illustration of the Kori area

A simulation-based approach is proposed to study the protective actions taken by residents during nuclear emergencies using cognitive findings. Human perception-based behaviors are not heavily incorporated in the evacuation study for nuclear emergencies despite their known importance. This study pro...

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Main Authors: Jeongsik Kim, Byoung-Jik Kim, Namhun Kim
Format: Article
Language:English
Published: Elsevier 2021-03-01
Series:Nuclear Engineering and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1738573320308299
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spelling doaj-aeb1a24b1fbe4e2abc5995642a5dced02021-03-03T04:20:53ZengElsevierNuclear Engineering and Technology1738-57332021-03-01533825832Perception-based analytical technique of evacuation behavior under radiological emergency: An illustration of the Kori areaJeongsik Kim0Byoung-Jik Kim1Namhun Kim2School of Mechanical, Aerospace, and Nuclear Engineering, Ulsan National Institute of Science and Technology, Ulsan, 44919, Republic of KoreaKorea Institute of Nuclear Safety, Republic of KoreaSchool of Mechanical, Aerospace, and Nuclear Engineering, Ulsan National Institute of Science and Technology, Ulsan, 44919, Republic of Korea; Corresponding author.A simulation-based approach is proposed to study the protective actions taken by residents during nuclear emergencies using cognitive findings. Human perception-based behaviors are not heavily incorporated in the evacuation study for nuclear emergencies despite their known importance. This study proposes a generic framework of perception-based behavior simulation, in accordance with the ecological concept of affordance theory and a formal representation of affordance-based finite state automata. Based on the generic framework, a simulation model is developed to allow an evacuee to perceive available actions and execute one of them according to Newton’s laws of motion. The case of a shadow evacuation under nuclear emergency is utilized to demonstrate the applicability of the proposed framework. The illustrated planning algorithm enables residents to compute not only prior knowledge of the environmental map, but also the perception of dynamic surroundings, using widely observed heuristics. The simulation results show that the temporal and spatial dynamics of the evacuation behaviors can be analyzed based on individual perception of circumstances, while utilizing the findings in cognitive science under unavoidable data restriction of nuclear emergencies. The perception-based analysis of the proposed framework is expected to enhance nuclear safety technology by complementing macroscopic analyses for advanced protective measures.http://www.sciencedirect.com/science/article/pii/S1738573320308299Affordance theoryAgent-based simulationBandwagon effectEmergency evacuationProtective actionAvailability heuristic
collection DOAJ
language English
format Article
sources DOAJ
author Jeongsik Kim
Byoung-Jik Kim
Namhun Kim
spellingShingle Jeongsik Kim
Byoung-Jik Kim
Namhun Kim
Perception-based analytical technique of evacuation behavior under radiological emergency: An illustration of the Kori area
Nuclear Engineering and Technology
Affordance theory
Agent-based simulation
Bandwagon effect
Emergency evacuation
Protective action
Availability heuristic
author_facet Jeongsik Kim
Byoung-Jik Kim
Namhun Kim
author_sort Jeongsik Kim
title Perception-based analytical technique of evacuation behavior under radiological emergency: An illustration of the Kori area
title_short Perception-based analytical technique of evacuation behavior under radiological emergency: An illustration of the Kori area
title_full Perception-based analytical technique of evacuation behavior under radiological emergency: An illustration of the Kori area
title_fullStr Perception-based analytical technique of evacuation behavior under radiological emergency: An illustration of the Kori area
title_full_unstemmed Perception-based analytical technique of evacuation behavior under radiological emergency: An illustration of the Kori area
title_sort perception-based analytical technique of evacuation behavior under radiological emergency: an illustration of the kori area
publisher Elsevier
series Nuclear Engineering and Technology
issn 1738-5733
publishDate 2021-03-01
description A simulation-based approach is proposed to study the protective actions taken by residents during nuclear emergencies using cognitive findings. Human perception-based behaviors are not heavily incorporated in the evacuation study for nuclear emergencies despite their known importance. This study proposes a generic framework of perception-based behavior simulation, in accordance with the ecological concept of affordance theory and a formal representation of affordance-based finite state automata. Based on the generic framework, a simulation model is developed to allow an evacuee to perceive available actions and execute one of them according to Newton’s laws of motion. The case of a shadow evacuation under nuclear emergency is utilized to demonstrate the applicability of the proposed framework. The illustrated planning algorithm enables residents to compute not only prior knowledge of the environmental map, but also the perception of dynamic surroundings, using widely observed heuristics. The simulation results show that the temporal and spatial dynamics of the evacuation behaviors can be analyzed based on individual perception of circumstances, while utilizing the findings in cognitive science under unavoidable data restriction of nuclear emergencies. The perception-based analysis of the proposed framework is expected to enhance nuclear safety technology by complementing macroscopic analyses for advanced protective measures.
topic Affordance theory
Agent-based simulation
Bandwagon effect
Emergency evacuation
Protective action
Availability heuristic
url http://www.sciencedirect.com/science/article/pii/S1738573320308299
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