在被摧毁的掩体中模拟可能的吸烟区

O. Oleynyk, Yu. Otrosh, N. RASHKEVICH, S. Shapoval
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引用次数: 0

摘要

本文的目的是建立一个模型,用于计算危险火灾因素蔓延的过程,并确定各种工程和技术、组织措施和手段的有效性,这些措施和手段旨在增加敌对情况下人们在民防建筑中停留的时间。该作品的作者对“不同火灾地点地铁站的火灾建模和烟雾传播分析”、“不同通风条件下地下车库火焰和烟雾传播建模”等领域的科学研究进行了分析。作者提出了危险火灾因素蔓延的两种情景。第一种情况是火灾危险的蔓延,没有考虑到通风,而不是敞开的门。第二种情况是危险火灾因素的蔓延,同时考虑到通过三个通风通道供应通风。假设通风通道直径为0.3048 m,容积流量为0.5 m3/s。研究人员确定了在避难所的逃生路线阻塞期间,PyroSim软件中的通风效果。通风效率系数1.351或135.1%。作者模拟了被导弹击中和地下室天花板(一楼的地板)被摧毁后的掩体。封锁疏散路线的时间根据DSTU 8828:2019的各种参数确定,即距离地面1.7 m高度的能见度、温度、氧和二氧化碳浓度。该工作是制定提高消防安全水平、保障人员安全的工程技术和组织措施的基础。关键词:避难场所,火灾危险因素,通风,疏散,PyroSim
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SIMULATION OF A POSSIBLE SMOKING ZONE IN A DESTROYED SHELTER
The purpose of the presented work is to create a model for calculating the process of the spread of dangerous fire factors and determining the effectiveness of various engineering and technical, organizational measures and means aimed at increasing the duration of people's stay in a civil defense building in the conditions of hostilities. The authors of the work conducted an analysis of scientific research in areas such as "Modeling of fire and analysis of smoke propagation at metro stations in different fire locations" and "Modeling of flame and smoke propagation in an underground garage under different ventilation conditions." The authors developed two scenarios of the spread of dangerous fire factors. The first scenario is the spread of fire hazards without taking into account ventilation other than open doorways. The second scenario is the spread of dangerous fire factors taking into account supply ventilation through three ventilation channels. The ventilation channels were assumed to have a diameter of 0.3048 m with a volumetric flow rate of 0.5 m3/s. The researchers determined the effectiveness of the ventilation in the PyroSim software during the blocking of escape routes in the shelter. The ventilation efficiency factor 1.351 or 135.1%. The authors conducted a simulation of the shelter after a missile hit and the destruction of the basement ceiling (floor of the first floor). The time of blocking the evacuation routes was determined according to various parameters in accordance with DSTU 8828:2019, namely visibility, temperature, concentration of oxygen oxide and carbon dioxide at a height of 1.7 m from the floor level. The work is the basis for the development of engineering and technical and organizational measures to increase the level of fire safety and ensure the safety of the population. Keywords: shelter, dangerous factors of fire, ventilation, evacuation, PyroSim.
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