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20篇 您的检索式:作者名="Su Ay"
    题名 作者 年代 出处 被引量
1Investigation of impinging diffusion flames with inert gases 显示文摘Su Ay Liu Ying-Chieh 2002International Journal of Heat and Mass Transfer2002,45,:1
2Species identification and phylogenetic relationships based on partial HSP60 gene sequences within the genus Stcrphylococcus 显示文摘Kwok AY Su SC Reynolds RP 1999Int J Sys Bacteriol1999,49,:1
3Effect of Volatile Fatty Acid Composition on Upflow Anaerobic Sludge Blanket (UASB) Performance显示文摘Biing-Teo Wong Kuan-Yeow Show Ay Su 2008Energy & Fuels2008,22,:1
4Anterior chamber depth measurement in phakic and pseudophakic eyes显示文摘Su PF Lo AY Hu CY 2008Optom Vis Sci2008,85,:1
5Dissolved organic matter with multi-peak fluorophores in landfill leachate显示文摘Fan Lu Cheng-Hsuan Chang Duu-Jong Lee Pin-Jing He Li-Ming Shao Ay Su 2008Chemosphere2008,,4:1
6Effect of volatile fatty acid composition on upflow anaerobic sludge blanket (UASB) performance 显示文摘Wong Biing-Teo Show Kuan-Yeow Su Ay 2008Energy and Fuels2008,22,:1
7Effect of volatile fatty acid composi- tion on upflow anaerobic sludge blanket (UASB) performance显示文摘Wong B T Show K Y Ay Su 2008Ener- gy and Fuels2008,22,1:1
8Effects of cathode flowfields on direct methanol fuel cell-simulation study 显示文摘Jung Guo Bin Su Ay Tu Cheng Hsin Lin Yur Tsai Weng Fang Bor Chan Shih Hung 2007Journal of Power Sources2007,171,1:1
9Species identification and phylogenetic relationships based on partial HSP60 gene sequences within the genus Staphylococcus显示文摘Kwok AY Su SC Reynolds RP 1999International Journal of Systematic Bacteriology1999,,49:1
10Negative control of p53 by Sir-alpha promotes cell survival under stress显示文摘Luo J Nikolaev AY Imai S Chen D Su F Shiloh A 2001Cell2001,107,2:1
11Effect of volatile fatty acid composition on upflow anaerobic sludge blanket (UASB) peafonnancc显示文摘Wong B T Show K Y Ay Su 2008Energy and Fucla2008,22,1:1
12The smdy of the effect of gas stoichiometric flow rate on the channel flooding and performance in a transparent fuel cell显示文摘Weng Fang Bor Su Ay Hsu Chun Ying 2007International Journal of Hydrogen Energy2007,32,6:1
13Study of water-flooding behaviour in cathode channel of a transparent proton-exchange membrane fuel cell显示文摘Weng Fang Bor Su Ay Hsu Chun Ying 2006Journal of Power Sources2006,157,2:1
14Knowledge and attitude of health professional students toward patients living with AIDS 显示文摘Oyeyemi AY Jasper US Aliyu SU 2012Aft J Med Med Sci2012,41,4:1
15Investigation of impinging diffusion flames with inert gases 显示文摘Su Ay LiuYing-Chieh 2002International Journal ot Heat and MassTransfer2002,,45:1
16Design, fabrication and performance analysis of a 200W PEM fuel cell short stack显示文摘Weng F Jou Bo-Shian Ay Su 2007Journal of Power Sources2007,,171:1
17Experimental evaluation of an ambient forced-feed air-supply PEM fuel cell显示文摘Jung Guobin Lo Kaifan Su Ay 2008International Journal of Hydrogen Energy2008,33,12:1
18Studies on flooding in PEM fuel cell cathode channels 显示文摘SU Ay WENG Fang-bor HSU Chun-ying CHEN Yen-ming 2009International Journal of Hydrogen Energy2009,34,16:1
19Microsporidial stromal keratitis显示文摘Font RL Su GW Matoba AY 2003Arch Ophthalmol2003,121,7:1
20Enhancements of Impinging Flame by Pulsation显示文摘Experimental investigations on the pulsating jet-impinging diffusion flame were executed. A solenoid valve was aligned upstream of tile jet orifice and the methane fuel was controlled in open-closed cycles from 0 Hz to 20 Hz. Results show that the open-closed cycles indeed increase the fluctuations of the methane fuel obviously. The evolutions of pulsating flame therefore develop faster than the continuous impinging flame. The optimized pulsating frequencies are near 9 to 11 Hz from the Re = 170 to 283. The temperature differences between that under optimized pulsating rate and full open condition (no pulsation) are ranging from 100 to 150 degree. The pulsating effect is more significant at low Reynolds number. The cross section of continuous impinging flame behaves as elliptic shape with axial ratio equals to 2/3. The tip of the impinging flame obviously crosses at 42 mm above the impinging point. Because of the phenomenon of pulsation flame, the flame sheet or flame front may not be identified clearly in the averaged temperature contours. Results show that the averaged end-contour of pulsation flame rears at 38 mm above the impinging point. By observation and experiment, the pulsating flame behaves more stable and efficient than the continuous impinging flame.Ay Su Ying-Chieh Liu (Department of Mechanical Engineering, Yuan-Ze University Tao-Yuan County, Taiwan, China,Meaysu@saturn.yzu.edu.tw) 2000Journal of Thermal Science2000,9,3:0
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