文章摘要
曾文,解茂昭.微元管催化燃烧过程中燃烧特性分岔分析[J].,2009,(6):842-848
微元管催化燃烧过程中燃烧特性分岔分析
Bifurcation analysis of catalytic combustion in micro-channel
  
DOI:10.7511/dllgxb200906012
中文关键词: 催化燃烧  短体蜂窝状模型  分岔理论  微元管
英文关键词: catalytic combustion  short monolith model  bifurcation theory  micro-channel
基金项目:国家自然科学基金资助项目50906059;“九七三”国家重点基础研究发展规划资助项目2001CB209201.
作者单位
曾文,解茂昭  
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中文摘要:
      运用分岔理论对微元管催化燃烧过程进行了详细的分岔分析,采用了一种比较理想的简化模型——短体蜂窝状模型(SM模型),同时微元管中气体流动采用了层流模型.分别以径向Thiele数及滞留时间为分岔参数对微元管催化燃烧过程中混合气的着火与熄火特性进行了详细分析,同时,详细讨论了 B、P、Le f及 s对混合气燃烧特性的影响.结果表明当以径向Thiele数为分岔参数时,随着 Le f减小或 B、P增大,主体气流与催化剂表面混合气的着火点与熄火点之间的非稳定区域将变宽;当以滞留时间为分岔参数时,随着 s及 B减小或Le f增大,催化剂表面混合气的着火点与熄火点之间的非稳定区域将变窄.
英文摘要:
      Bifurcation analysis of catalytic combustion in micro-channel was carried out using bifurcation theory. A simple model \_ the short monolith model (SM model) and the laminar flow model were adopted. The bifurcation behaviors of the ignition and the extinction of the mixed gas were analyzed with the transverse Thiele modulus and the residence time as bifurcation parameter respectively. At the same time, the effects of the values of B, P, Le f and s on the bifurcation characteristics of the mixed gas combustion were discussed. The results show that with the transverse Thiele modulus as bifurcation parameter, the unstable steady region between the ignition and extinction of the fluid and mixed gas on the catalyst surface is widened with Le f decreasing or B and P increasing. With the residence time as bifurcation parameter, the unstable steady region between the ignition and extinction of the mixed gas on the catalyst surface becomes narrow with s and B decreasing or Le f increasing.
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