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The physics and simulation of occupant traffic flow in the case of evacuating public building area

机译:撤离公共建筑区域时乘员流的物理模拟

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In cases where public building areas need to be evacuated, a large number of occupants are expected to be routed through exit(s) effectively. This paper combines two aspects of this problem. On the one hand, the traffic flows must be routed through the exit(s) according to some requirements, e.g., the time required to get everyone out is as short as possible. Hence, it is necessary to derive the embedded physics principles of occupant traffic, e.g., based on fluid dynamics laws, especially applicable to occupant traffic in normal (i.e., non-panic) conditions. The principles are helpful solving optimization problems such as finding out how many exits are needed, how wide the aisles should be set, or how to determine the area deployment according to the distribution of people in the building design. On the other hand, occupant traffic flows are dynamic in nature and phenomena related to the evacuation efficiency are examined by the simulation of System Dynamics, which is a way to illustrate and understand complex system behavior changing with time. In a simplified example, considering the typical occupants' behavior modes, we simulate and compute the evacuation efficiency in terms of various building design strategies, to demonstrate the applicability and practical sense of the principles to real-world problems. (C) 2014 Elsevier Ltd. All rights reserved.
机译:在需要疏散公共建筑区域的情况下,预计大量乘客将被有效引导通过出口。本文结合了此问题的两个方面。一方面,必须根据一些要求将交通流通过出口,例如,使所有人下车所需的时间尽可能短。因此,有必要例如基于流体动力学定律来得出乘员交通的嵌入式物理原理,特别是适用于正常(即,非紧急)情况下的乘员交通。这些原理有助于解决优化问题,例如找出需要多少出口,应设置多大的走道,或如何根据建筑物设计中人员的分布来确定区域部署。另一方面,乘员流量本质上是动态的,并且通过系统动力学仿真研究了与疏散效率相关的现象,这是一种说明和理解复杂系统行为随时间变化的方式。在一个简化的示例中,考虑到典型的乘员的行为模式,我们根据各种建筑设计策略模拟并计算了疏散效率,以证明该原理在实际问题中的适用性和实际意义。 (C)2014 Elsevier Ltd.保留所有权利。

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