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多孔介质回热微燃烧器预混燃烧特性研究 被引量:3

Study of the Pre-mixed Combustion Characteristics of a Porous Medium Heat Recuperation Micro-burner
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摘要 设计了多孔介质回热微燃烧器,对微燃烧器内H2/Ak的预混燃烧特性进行了实验研究和数值模拟,实验结果表明,当过量空气系数1.0<α<3.0时,微燃烧器具有较高的燃烧效率,出口烟气温度和较低的燃烧热损失率,且燃烧热功率P越高,α越大,热损失率越小。当P=100 W时,其出口烟气温度最高可达到1 232 K,当α=3.0时,燃烧效率仍达到96.85%,而热损失率仅为14.87%。数值模拟结果表明,由于采用了回热夹层和多孔介质回热结构,有效地回收了热量损失,使得微燃烧器具有良好的热性能。证明设计的多孔介质回热微燃烧器是一种燃烧效率高、热损失率低的微燃烧器。 Designed was a porous medium heat recuperation micro-burner and experimentally studied and numerically simulated were its H2/Ak premixed combustion characteristics.The test results show that when the excess air factor falls in a range of 1.0<α<3.0,the burner has a relatively high combustin efficiency and outlet flue gas temperature,and a relatively low combustion heat loss.Furthermore,the higher the combustion heat power P,the bigger the α and the smaller the heat loss rate.When P=100 W,the maximum outlet flue gas temperature can hit 1232 K.When α=3.0,the combustion efficiency still can reach 96.85% while the heat loss rate is only 14.87%.The numerical simulation results show that due to an adoption of a heat recuperation interlayer and porous medium heat recuperation structure,the heat lost can be effectively recovered,making the micro-burner have a good heat performance.It has been proven that the porous medium heat recuperation micro-burner thus designed is regarded as one with a high combustion efficiency and a low heat loss rate.
出处 《热能动力工程》 CAS CSCD 北大核心 2012年第2期207-211,265-266,共5页 Journal of Engineering for Thermal Energy and Power
基金 国家自然科学基金资助项目(50706046)
关键词 多孔介质回热微燃烧器 预混燃烧 热损失 数值模拟 porous medium heat recuperation micro-burner,premixed combustion,heat loss,numerical simulation
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  • 1胡国新,王明磊,李艳红,谭书华.过量空气系数对微细腔内氢气预混燃烧效率的影响[J].上海交通大学学报,2004,38(7):1177-1180. 被引量:5
  • 2张孝友,卫尧,吴勇军,张海燕,马凤仙.氢氧混合比对微型TPV燃烧器内燃烧的影响[J].河南科技大学学报(自然科学版),2005,26(2):18-21. 被引量:3
  • 3张永生,周俊虎,杨卫娟,刘茂省,岑可法.T型微细管道内氢气空气预混燃烧实验研究[J].中国电机工程学报,2005,25(21):128-131. 被引量:28
  • 4曹海亮,徐进良.微尺度环形燃烧室的燃烧特性[J].自然科学进展,2006,16(7):874-880. 被引量:6
  • 5Epstein A H,Senturia S D,Anathasuresh G,et al.Power MEMS and microengines.In:Proceedings of International Conference on Transducer' 97,Chicago,1997,2:753-756
  • 6Spadaccini C M,Mehra A,Lee J,et al.High power density silicon combustion system for micro gas turbine engines.Journal of Engineering for Gas Turbines and Power,2003,125:709-719
  • 7Mehra A,Zhang X,Ayon A A,et al.A six-wafer combustion system for a silicon micro gas turbine engine.Journal of Microelectro-Mechanical Systems,2000,9(4):517-527
  • 8Sitzki L,Borer K,Schuster E,et al.Combustion in microscale heat-recirculating burners.In:The Third Asia-Pacific Conference on Combustion.Seoul,Korea,2001,June 24-27
  • 9Yang W M,Chou S K,Sbu C,et al.Microscale combustion research for application to micro thermophotovoltaic systems.Energy Conversion and Management,2003,44:2625-2634
  • 10Yang W M,Chou S K,Sbu C,et al.Combustion in micro-cylindrical combustors with and without a backward facing step.Applied Thermal Engineering,2002,22:1777-1787

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