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首页> 外文期刊>Journal of loss prevention in the process industries >A 3D numerical study on the effects of obstacles on flame propagation in a cylindrical explosion vessel connected to a vented tube
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A 3D numerical study on the effects of obstacles on flame propagation in a cylindrical explosion vessel connected to a vented tube

机译:3D数值研究障碍物对连接到通风管的圆柱形爆炸容器中火焰传播的影响

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This article presents a numerical study of the explosive wave propagations from a 40 cm long and 10.8 cm diameter cylinder to smaller 1.7 m and 2.6 m long cylinders with 36 mm diameters. Initially, the 40 cm long cylinder was filled with 4% propane-air mixtures and ignited with a 1 kJ sparking energy until the maximum temperature near the ignition source reached 2400/3000 K. In the study, a 3D numerical model was established by combining compressible four-step reduced propane oxidation reaction kinetics with the k-omega shear-stress transport (SST) turbulent model. In order to resolve the thin detonation wave front, a dynamically refined mesh near the high pressure gradient was adopted. The pressure gradient profiles, velocity magnitude contours, temperature contours and compressible wave propagation speeds across the tubes were then predicted using this 3D model. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文介绍了爆炸波从40厘米长和10.8厘米直径的圆柱到直径36毫米的较小的1.7 m和2.6 m圆柱的传播的数值研究。最初,在40厘米长的圆柱体中充满4%的丙烷-空气混合物,并以1 kJ的火花能点燃,直到点火源附近的最高温度达到2400/3000K。在研究中,通过组合建立3D数值模型k-ω剪切应力传递(SST)湍流模型的可压缩四步还原丙烷氧化反应动力学为了解决薄的爆轰波阵面,在高压梯度附近采用了动态细化的网格。然后,使用此3D模型预测压力梯度分布,速度幅值轮廓,温度轮廓和可压缩波在管道上的传播速度。 (C)2016 Elsevier Ltd.保留所有权利。

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