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Turbulent burning velocity of stoichiometric syngas flames with different hydrogen volumetric fractions upon constant-volume method with multi-zone model

机译:恒体积法多区域模型的不同氢气体积分数的化学计量合成气火焰的湍流燃烧速度

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摘要

Syngas has been widely concerned and tested in various thermo-power devices as one promising alternative fuel. However, little is known about the turbulent combustion characteristics, especially on outwardly propagating turbulent syngas/air premixed flames. In this paper, the outwardly propagating turbulent syngas/air premixed flames were experimentally investigated in a constant-volume fan-stirred vessel. Tests were conducted on stoichiometric syngas with different hydrogen volumetric fractions (X-H2, 10%-90%) in the ambience with different initial turbulence intensity (u'(rms), 0.100 m/s similar to 1.309 m/s). Turbulent burning velocity was taken as the major topic to be studied upon the multi-zone model in constant-volume propagating flame method. The influences of initial turbulent intensity and hydrogen volumetric fraction on the turbulent flame speed were analysed and discussed. An explicit correlation of turbulent flame speed was obtained from the experimental results. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:合成气作为一种有前途的替代燃料已受到广泛关注并在各种热电设备中经过测试。然而,关于湍流燃烧特性,尤其是向外传播的湍流合成气/空气预混火焰,知之甚少。在本文中,在恒容量风扇搅拌容器中,对向外传播的湍流合成气/空气预混火焰进行了实验研究。在具有不同初始湍流强度(u'(rms),0.100 m / s,类似于1.309 m / s)的环境中,对具有不同氢气体积分数(X-H2,10%-90%)的化学计量合成气进行了测试。在定容扩展火焰法的多区域模型中,以湍流燃烧速度为主要研究对象。分析并讨论了初始湍流强度和氢体积分数对湍流火焰速度的影响。从实验结果中获得了湍流火焰速度的明确相关性。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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