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Numerical simulation of the laminar hydrogen flame in the presence of a quenching mesh

机译:淬火网格下层流氢火焰的数值模拟

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Recent studies of J.H. Song et al. [1], and S.Y. Yang et al.[2] (see also references therein) have been concentrated on mitigation measures against hydrogen risk. The authors have proposed installation of quenching meshes between compartments or around the essential equipment in order to contain hydrogen flames. Preliminary tests were conducted which demonstrated the possibility of flame extinction using metallic meshes of specific size. Considerable amount of numerical and theoretical work on flame quenching phenomenon has been performed in the second half of the last century and several techniques and models have been proposed to predict the quenching phenomenon of the laminar flame system (see for example [3] and references therein). Most of these models appreciated the importance of heat loss to the surroundings as a primary cause of extinguishment, in particular, the heat transfer by conduction to the containing wall. The supporting simulations predict flame-quenching structure either between parallel plates (quenching distance) or inside a tube of a certain diameter (quenching diameter). In the present study the flame quenching is investigated assuming the laminar hydrogen flame propagating towards a quenching mesh using two-dimensional configuration and the earlier developed models. It is shown that due to a heat loss to a metallic grid the flame can be quenched numerically.
机译:J.H.的最新研究宋等。 [1]和S.Y.杨等。[2] (也参见其中的参考文献)集中在针对氢风险的缓解措施上。作者建议在隔室之间或基本设备周围安装淬火网,以抑制氢火焰。进行了初步测试,证明了使用特定尺寸的金属网进行火焰熄灭的可能性。在上世纪下半叶,已经进行了大量的关于火焰猝灭现象的数值和理论工作,并且已经提出了几种技术和模型来预测层流火焰系统的猝灭现象(例如,参见[3]及其参考文献)。 )。这些模型中的大多数都认识到热量散失到周围环境作为灭火的主要原因的重要性,尤其是通过传导到容纳壁的热量传递。支持模拟可预测在平行板之间(淬火距离)或一定直径的管内(淬火直径)的火焰淬火结构。在本研究中,假设使用二维构造和较早开发的模型,假设层流氢火焰朝着淬火网传播,则对火焰淬火进行了研究。结果表明,由于金属格栅的热量损失,火焰可以被数值淬火。

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