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Adjacent surface effect on the flammable cloud of hydrogen and methane jets: Numerical investigation and engineering correlations

机译:氢和甲烷喷射流的可燃云的邻近表面效应:数值研究和工程关联

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The effect of an adjacent surface on the lower flammability limit cloud extents of high pressure horizontal and vertical unignited jets of both hydrogen and methane is studied using Computational Fluid Dynamics (CFD) simulations performed with FLACS Hydrogen. Two jet directions (horizontal and vertical) and two surface positions (horizontal or ground, vertical or side wall) were studied: horizontal jets along a horizontal surface, vertical and horizontal jets along a vertical surface or side wall. Results for constant flow rate through a 6.35 mm round leak orifice from 101 bar, 251 bar, 401 bar, 551 bar and 701 bar compressed gas systems are presented. The effect of the surface on the flammable extents is studied systematically by positioning the jet exit release at various distances from the surface ranging from 0.029 m to 10 m. Free jets simulations were performed for comparison purposes. Our results were quantified by establishing engineering correlations that could be used to predict the flammable extent of hydrogen and methane jet releases in the presence of surfaces. These correlations were validated using experiments conducted for horizontal hydrogen jets in the vicinity of horizontal surfaces, carried out at the facilities of Defence Research and Development Canada (DRDC) in Val-Belair, Quebec. (C) 2016 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:使用FLACS氢气进行的计算流体动力学(CFD)仿真研究了相邻表面对氢气和甲烷的高压水平和垂直未点火射流的较低可燃性极限云量的影响。研究了两个射流方向(水平和垂直)和两个表面位置(水平或地面,垂直或侧壁):沿水平表面的水平射流,沿垂直表面或侧壁的垂直射流和水平射流。给出了从101 bar,251 bar,401 bar,551 bar和701 bar压缩气体系统通过6.35 mm圆形泄漏孔的恒定流量的结果。通过将射流出口释放装置放置在距表面0.029 m至10 m的不同距离处,系统地研究了表面对可燃程度的影响。为了比较目的,进行了免费喷射模拟。通过建立可用于预测存在表面的氢气和甲烷射流释放的可燃程度的工程相关性,对我们的结果进行了量化。这些相关性是通过在魁北克Val-Belair的加拿大国防研究与发展局(DRDC)的设施上对水平表面附近的水平氢射流进行的实验验证的。 (C)2016氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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