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An Evacuation Model for Passenger Ships That Includes the Influence of Obstacles in Cabins

机译:包含客舱障碍物影响的客船疏散模型

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摘要

Passenger behavior and ship environment are the key factors affecting evacuation efficiency. However, current studies ignore the interior layout of passenger ship cabins and treat the cabins as empty rooms. To investigate the influence of obstacles (e.g., tables and stools) on cabin evacuation, we propose an agent-based social force model for advanced evacuation analysis of passenger ships; this model uses a goal-driven submodel to determine a plan and an extended social force submodel to govern the movement of passengers. The extended social force submodel considers the interaction forces between the passengers, crew, and obstacles and minimises the range of these forces to improve computational efficiency. We drew the following conclusions based on a series of evacuation simulations conducted in this study: (1) the proposed model endows the passenger with the behaviors of bypassing and crossing obstacles, (2) funnel-shaped exits from cabins can improve evacuation efficiency, and (3) as the exit angle increases, the evacuation time also increases. These findings offer ship designers some insight towards increasing the safety of large passenger ships.
机译:乘客行为和船舶环境是影响疏散效率的关键因素。但是,当前的研究忽略了客船客舱的内部布局,并将客舱视为空房间。为了研究障碍物(例如桌子和凳子)对客舱疏散的影响,我们提出了一种基于Agent的社会力量模型,用于客船的高级疏散分析;该模型使用目标驱动子模型来确定计划,并使用扩展的社会力量子模型来控制乘客的活动。扩展的社会力量子模型考虑了乘客,机组人员和障碍物之间的相互作用力,并最小化了这些力量的范围以提高计算效率。基于本研究中进行的一系列疏散模拟,我们得出以下结论:(1)提出的模型赋予乘客绕行和越过障碍物的行为;(2)机舱的漏斗形出口可以提高疏散效率,并且(3)随着出口角度的增加,疏散时间也增加。这些发现为船舶设计人员提供了一些有关提高大型客船安全性的见识。

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  • 来源
    《Mathematical Problems in Engineering》 |2017年第10期|5907876.1-5907876.21|共21页
  • 作者单位

    Harbin Engn Univ, Coll Ship Bldg, Harbin, Heilongjiang, Peoples R China;

    Harbin Engn Univ, Coll Mech & Elect Engn, Harbin, Heilongjiang, Peoples R China;

    Shanghai Merchant Ship Design & Res Inst, Shanghai, Peoples R China;

    Dalian Neusoft Univ Informat, Dalian, Peoples R China;

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