[1]
W.M. Yang S.K. Chou,C. Shu,H. Xue, et al. Microscale Combustion Research for Application to Micro Thermophotovoltaic Systems[J]. Energy Conversion&Management, 2003, 16: 2625-2634.
DOI: 10.1016/s0196-8904(03)00024-4
Google Scholar
[2]
, Lars Sitzki, Kevin Borer, Ewald Schuster, et al. Combustion in Microscale Heat-Reciculating Burners [A]. The Third Asia-Pacific Conference on Combustion[C]. Seoul, Korea. 2001: 24-27.
Google Scholar
[3]
Beijing Zhong, Jian Jiao, Extinction Limits of CH4/ Air Premixed Combustion in a Micro Channel [J]. Tshinghua University (Sci&Tech), 2007, 47(11):2041-2044. (In Chinese).
Google Scholar
[4]
Xinpu Zhao, Bin Xu, Jian Wu, Jiaxuan Miao, Hong Xue. The Influence of Materials, Size and Structure of Combustors on Micro Thermophotovoltaic Systems [J] , Energy Technology. 2008, 29(3) (In Chinese).
Google Scholar
[5]
Wenming Yang, Chou Siawkiang, Chang Shu, etal. Effect of Wall Thickness of Micro Combustor on the Performance of Micro Thermophotovoltaic Power Generators [J] , Sensors and Actuators A, 2005, 119: 441 - 445.
DOI: 10.1016/j.sna.2004.10.005
Google Scholar
[6]
Hong Xue, Jiaxuan Miao , Jian Wu, Bin Xu. Exprimental Investigation of the Performance of Porous Media for Micro Thermophotovoltaic Power Systems[J], Journal of Combustion Science and Technology. 2006, 12(4). (In Chinese).
Google Scholar
[7]
Guanjun Lu, Diaoqing Zhao, etc. NOx Emission Characteristics of Methane/Oxygen-enriched Air Jet Diffusion Flames [J], The Chinese Journal of Process Engineering, 2007, 7(1):29-32. (In Chinese).
Google Scholar
[8]
Daiqing Zhao, Yaoxun Feng, Qingcai Liu, Shanxia boshi. Impact of Fuel Dilution on the Formation of NOx in an Oxygen-rich air/Methane Diffusion Flame [J] . Journal of Engineering for Thermal Energy and Power, 2004, 19(4)(In Chinese).
Google Scholar