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Numerical simulation of fire in a multistoried ready-made garments factory using PyroSim

机译:使用Pyrosim多层现成服装厂的火灾数值模拟

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Fire in a seven-storied ready-made garments (RMG) factory building, based on the actual drawing of an existing RMG building, is simulated and the tenability of the occupants isanalyzed. The modeling is conducted by using PyroSim, a computational fluid dynamics (CFD) tool with the capability of simulating fire and optimized for low-speed, thermally-driven flow. A number of factors including temperature, visibility, and CO concentration are analyzed to examine their effects on the tenability of different zones and floors. The source of the fire is considered to be the fabric storage of the ground floor andnylon, a commonly used fiber in the RMG industries with a high heat release rate, is selected as the fuel. It is found that within 3 min of the initiation of the fire, fire-smoke spreads very rapidly through the hallways and stairways and completely blocks the escape routes of the building. From the point of view of an efficient evacuation process, the conditions in the 1st floor are found to be the most critical as fire and dense smoke surround the escape routes with a high degree of visibility reduction within 2 min. The available safety egress time is found to be small unless the smoke migration ismitigated by the use of fire doors and other smoke management techniques. Findings of this study will be helpful in the assessment of fire risk in the RMG buildings in Bangladesh and would enable to suggest design measures to control the propagation of fire and smoke and improve tenability, thus minimizing the life and property damages.
机译:基于现有RMG建筑的实际绘制的七层现成的服装(RMG)工厂建筑中的火灾是模拟的,被模拟,占有者的居住者的居民。通过使用Pyrosim,计算流体动力学(CFD)工具进行建模,具有模拟火灾的能力,并针对低速,热驱动的流量进行优化。分析了许多包括温度,可见性和CO浓度的因素,以检查它们对不同区域和地板的折损性的影响。火源被认为是底层底座的织物储存,在具有高热释放率的RMG行业中的常用纤维作为燃料。结果发现,在火的开始3分钟内,火烟通过走廊和楼梯迅速传播,完全阻挡了建筑物的逃生路线。从高效的疏散过程的角度来看,发现第一楼的条件是最关键的,因为火灾和浓度围绕着高度可见性在2分钟内降低的逃逸路线。发现可用的安全出口时间很小,除非使用消防门和其他烟雾管理技术患有烟雾迁移。本研究的调查结果将有助于评估孟加拉国RMG建筑物的火灾风险,并能够提出设计措施来控制火灾和烟雾的传播,提高损益,从而最大限度地减少生命和财产损失。

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