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VALIDATION OF THE ISIS-3D COMPUTER CODE FOR SIMULATING LARGE POOL FIRES UNDER A VARIETY OF WIND CONDITIONS

机译:各种风况下模拟大型游泳池火灾的ISIS-3D计算机代码的验证

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The Isis-3D computational fluid dynamics/radiation heat transfer code was developed to simulate heat transfer from large fires. It models liquid fuel evaporation, fuel vapor and oxygen transport, chemical reaction and heat release, soot and intermediate species formation/destruction, diffuse radiation within the fire, and view factor radiation from the fire edge to nearby objects and the surroundings. Reaction rate and soot radiation parameters in Isis-3D have been selected based on experimental data. One-dimensional transient conduction modules calculate the response of simple objects engulfed in and near the flames. In this work, Isis-3D calculations were performed to simulate the conditions of three experiments that measured the temperature response of a 4.66-m-diameter culvert pipe located at the leeward edge of 18.9-m and 9.45-m diameter pool fires in crosswinds with average speeds of 2.0, 4.6 and 9.5 m/s. The measured wind conditions were used to formulate time-dependent velocity boundary conditions for a rectangular Isis-3D domain with 16,500 nodes. Isis-3D accurately calculated characteristics of the time-dependent temperature distributions in all three experiments. Accelerated simulations were also performed in which the pipe specific heat was reduced compared to the measured value by a factor of four. This artificially increased the speed at which the pipe temperature rose and allowed the simulated fire duration to be reduced by a factor of four. A 700 sec fire with moderately unsteady wind conditions was accurately simulated in 10 hours on a 2.4 GHz LINUX workstation with 0.5 GB of RAM.
机译:Isis-3D计算流体动力学/辐射热传递代码是为了模拟大火引起的热传递而开发的。它可以模拟液体燃料的蒸发,燃料的蒸气和氧气的输送,化学反应和热量的释放,烟灰和中间物质的形成/破坏,火中的扩散辐射以及查看从火边缘到附近物体和周围环境的辐射因子。已基于实验数据选择了Isis-3D中的反应速率和烟尘辐射参数。一维瞬态传导模块可计算被火焰吞没的简单物体的响应。在这项工作中,进行了Isis-3D计算,以模拟三个实验的条件,这些实验测量了直径为4.66米的涵洞管的温度响应,该涵洞位于18.9米的背风边缘,直径为9.45 m的池火在侧风中与平均速度为2.0、4.6和9.5 m / s。测得的风况用于为16500个节点的矩形Isis-3D域制定与时间有关的速度边界条件。在所有三个实验中,Isis-3D均可精确计算出随时间变化的温度分布的特征。还进行了加速模拟,其中管道的比热与测量值相比降低了四倍。这人为地提高了管道温度的上升速度,并使模拟的火灾持续时间减少了四倍。在具有0.5 GB RAM的2.4 GHz LINUX工作站上,在10个小时内准确模拟了700秒钟起火,中等不稳定风况。

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