Accimap and crowd flow in urban infrastructure: Case study of Elphinstone road railway station tragedy, Mumbai, India

IF 2.2 3区 工程技术 Q3 ENGINEERING, MANUFACTURING Human Factors and Ergonomics in Manufacturing & Service Industries Pub Date : 2022-08-31 DOI:10.1002/hfm.20972
Vivek Kant, Aishwary Khobragade
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引用次数: 1

Abstract

The aim of this article is to show how Human Factors and Ergonomics (HFE) methods can be used to improve urban public infrastructure systems in densely populated countries, such as India. In this case, we use Accimap analysis with crowd flow approaches to inform safety and policy. We demonstrate the need for sociotechnical systemic safety by a case study of accident analysis of the Elphinstone Road railway station stampede. On September 29, 2017, the Elphinstone Road, Mumbai, India, railway platform bridge stampede killed at least 23 and injured 39 other commuters who traveled through the Mumbai Suburban railway. In this study, we understand the accident as it is presented in newspaper articles. We analyze the accident by a sociotechnical accident analysis method called the Accimap. The Accimap method helps by identification of various stakeholders and their interactions in the different levels of hierarchy in a sociotechnical system. This ensures moving away from individualistic and blame-based accounts of media reporting to a coherent sociotechnical account based on understanding the dynamics of the situation. The findings from the Accimap analysis identify the problem areas in the commuter transit system and provide recommendations. These recommendations range from commuter flow management to enforcement of rules for supporting pedestrian flow. The article concludes with an emphasis on the development of the sociotechnical dimension of public safety and infrastructure from a human factors perspective, above and beyond what is currently practiced in India.

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Accimap与城市基础设施中的人群流动——以印度孟买Elphinstone路火车站悲剧为例
本文的目的是展示如何使用人为因素和工效学(HFE)方法来改善人口稠密国家(如印度)的城市公共基础设施系统。在这种情况下,我们使用Accimap分析和人群流动方法来告知安全和政策。我们通过对埃尔芬斯通路火车站踩踏事故分析的案例研究,证明了社会技术系统安全的必要性。2017年9月29日,印度孟买Elphinstone路铁路站台桥踩踏事件造成至少23人死亡,39名其他途经孟买郊区铁路的通勤者受伤。在这项研究中,我们理解了报纸文章中所描述的事故。我们通过一种称为Accimap的社会技术事故分析方法来分析事故。Accimap方法有助于识别社会技术系统中不同层次的利益相关者及其互动。这确保了从个人主义和基于指责的媒体报道转变为基于对局势动态的理解的连贯的社会技术报道。Accimap分析的结果确定了通勤交通系统中的问题区域,并提出了建议。这些建议的范围从通勤流量管理到支持行人流量的规则的执行。文章最后强调了从人为因素的角度发展公共安全和基础设施的社会技术层面,超越了印度目前的做法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.20
自引率
8.30%
发文量
37
审稿时长
6.0 months
期刊介绍: The purpose of Human Factors and Ergonomics in Manufacturing & Service Industries is to facilitate discovery, integration, and application of scientific knowledge about human aspects of manufacturing, and to provide a forum for worldwide dissemination of such knowledge for its application and benefit to manufacturing industries. The journal covers a broad spectrum of ergonomics and human factors issues with a focus on the design, operation and management of contemporary manufacturing systems, both in the shop floor and office environments, in the quest for manufacturing agility, i.e. enhancement and integration of human skills with hardware performance for improved market competitiveness, management of change, product and process quality, and human-system reliability. The inter- and cross-disciplinary nature of the journal allows for a wide scope of issues relevant to manufacturing system design and engineering, human resource management, social, organizational, safety, and health issues. Examples of specific subject areas of interest include: implementation of advanced manufacturing technology, human aspects of computer-aided design and engineering, work design, compensation and appraisal, selection training and education, labor-management relations, agile manufacturing and virtual companies, human factors in total quality management, prevention of work-related musculoskeletal disorders, ergonomics of workplace, equipment and tool design, ergonomics programs, guides and standards for industry, automation safety and robot systems, human skills development and knowledge enhancing technologies, reliability, and safety and worker health issues.
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