基于延迟时间的统一bim在学生宿舍疏散模拟中的应用

Yonghua Huang, Zhongyang Guo, Hao Chu, R. Sengupta
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引用次数: 1

摘要

中国的大学宿舍人口密度很高,在紧急疏散过程中,由于拥挤和踩踏事件,可能导致大量人员伤亡。因此,重要的是要通过减轻阻塞点的影响,提前做好疏散计划。准确的建筑物结构和疏散人员行为的计算机表示是获得准确疏散时间的两个重要因素。本文分别利用Unity平台实现Agent-Based Modeling (ABM)和Building Information Modeling (BIM)对疏散过程进行模拟。以上海师范大学徐汇区学生宿舍楼的布局为例,利用Unity中的a *算法来探索疏散速度和阻塞点延迟的影响。与以往的研究相比,本研究的创新之处在于:(1)利用Unity软件对物理环境进行了逼真且易于实现的仿真,证明了Unity可以作为一个很好的平台来实施以人群疏散为重点的ABM-BIM研究。(2)利用这些模拟来评估不同疏散速度造成的不同程度的拥堵,从而提供与疏散工作有关的可能问题的信息。根据这些结果,可以提出一些建议措施来帮助提高疏散效率。
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Evacuation Simulation Implemented by ABM-BIM of Unity in Students' Dormitory Based on Delay Time
China’s university dormitories have high population densities, which can result in a large number of casualties because of crowding and stampedes during emergency evacuations. It is therefore important to plan properly for evacuations by mitigating the effect of choke points that create backlogs ahead of time. Accurate computer representations of the structure of a building and behavior of the evacuees are two important factors to obtain accurate evacuation time. In this paper, Agent-Based Modeling (ABM) and Building Information Modeling (BIM) are, respectively, implemented using the Unity platform to simulate the evacuation process. As a case study, the layout of a student dormitory building at Shanghai Normal University Xuhui District, Shanghai, China, is utilized along with the A* algorithm in Unity to explore the impact of evacuation speed and delays in creating choke points. Compared with previous research, the innovation of this study lies in: (1) using Unity software to make simulation of the physical environment both realistic and easy to implement, demonstrating Unity can be a well-developed platform to implement ABM-BIM research that focuses on crowd evacuation. (2) Using these simulations to evaluate different degrees of congestion caused by varying evacuation speeds, thus providing information about possible issues relating to evacuation efforts. Using the results, several recommended measures can be generated to help improve evacuation efficiency.
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