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DNS study of the propagation and flashback conditions of lean hydrogen-air flames in narrow channels: Symmetric and non-symmetric solutions

机译:窄通道中稀氢空气火焰的传播和回火条件的DNS研究:对称和非对称解决方案

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摘要

In this paper we present results of direct numerical simulations of lean hydrogen-air flames freely propagating in planar narrow adiabatic channels, using detailed chemistry and transport. Our simulations show that double solutions, symmetric and nonsymmetric, can coexist for the same set of parameters. The symmetric solutions were calculated imposing symmetric boundary conditions in the channel midplane and when this restriction was relaxed non-symmetric solutions developed. This indicates that the symmetric solutions are unstable to non-symmetric perturbations, as predicted before within the context of a thermo-diffusive model and simplified chemistry. Moreover, the propagation speeds of the symmetric and the non-symmetric flames are found to be very different, and therefore the flashback critical conditions also differ significantly. This analysis seems to have received no attention in the literature, even if it can have important safety implications in micro-scale combustion devices burning hydrogen in a lean premixed way. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:在本文中,我们使用详细的化学和运输方法,给出了在狭窄的平面绝热通道中自由传播的贫氢-空气火焰的直接数值模拟的结果。我们的仿真表明,对称和非对称双重解决方案可以针对同一组参数共存。计算对称解决方案时会在通道中平面施加对称边界条件,并且在放松此限制时会发展出非对称解决方案。这表明对称溶液对于非对称扰动是不稳定的,正如之前在热扩散模型和简化化学过程中所预测的那样。而且,发现对称和非对称火焰的传播速度有很大的不同,因此回火临界条件也有很大的不同。即使在以稀薄预混方式燃烧氢的微型燃烧装置中可能具有重要的安全意义,该分析似乎也没有受到文献关注。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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