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An experiment and simulation of smoke confinement and exhaust efficiency utilizing a modified Opposite Double-Jet Air Curtain

机译:改进的对置双射流幕帘对烟气限制和排气效率的实验与模拟

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Fires in high-rise buildings often result in tremendous property losses and heavy casualties. Smoke has been reported to be the main cause of these casualties. A modified Opposite Double-Jet Air Curtain (ODAC) is introduced in order to confine smoke movement and to exhaust smoke during a high-rise building fire. Here, a study including an experiment and a numerical simulation, was performed to determine the efficacy of a modified ODAC. The experiment was conducted on a 1:12 scale model of a high-rise building. A complementary Fire Dynamics Simulator (FDS) simulation was conducted on a full scale building. The influences of the air curtain discharge velocity and heat release rates (HRRs) were examined. The results of this study show that given the same supply air volume and HRR, the carbon monoxide (CO) concentration with the ODAC is clearly lower than the levels found with a traditional air curtain in a high rise building fire. The gas temperatures in the hallway increased significantly with the increase of HRR, and when the HRR reached 1.5 MW or more, a significant increase in the temperature of the smoke in the stairwell entrance was observed. When HRR reaches 2 MW, and the velocity has increased to 9 m/s, the CO concentration in the entrance of stairwell just meets the minimum Safety and Health standards.
机译:高层建筑中的火灾通常会造成巨大的财产损失和重大人员伤亡。据报道,烟雾是造成这些人员伤亡的主要原因。引入了一种改进的对置双射流空气幕(ODAC),以限制烟雾运动并在高层建筑火灾中排烟。在这里,进行了包括实验和数值模拟在内的研究,以确定改进的ODAC的功效。实验是在1:12比例的高层建筑模型上进行的。在完整的建筑物上进行了补充火力动力学模拟器(FDS)仿真。考察了气帘排放速度和放热率(HRR)的影响。这项研究的结果表明,在相同的送风量和HRR的情况下,ODAC中的一氧化碳(CO)浓度明显低于高层建筑火灾中传统气幕的一氧化碳浓度。随着HRR的增加,走廊中的气体温度显着增加,并且当HRR达到1.5 MW或更高时,在楼梯间入口处观察到烟气温度显着升高。当HRR达到2 MW,并且速度增加到9 m / s时,楼梯间入口处的CO浓度刚好满足最低安全和健康标准。

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