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1. Numerical simulation and analysis of jet combustion characteristic in tubular furnace

Hong Laifeng, Sun Tie, Yang Xuefeng, Hui Huaiming

2. Three dimensions numerical simulation of flow and thermal perfoemance in heat pipe air pre-heater
Hong Laifeng, Sun Tie, Shidong Qu, Shijie Feng
3. The nmerical simulation of impeller internal flow field of centrifugal pump based on fluent
Jiangnang Wei, Tie Sun , Shidong Qu, Shijie Feng
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xzzhu7471(½ð±Ò+5): 2011-11-21 10:47:06
FN Thomson Reuters Web of Knowledge
VR 1.0
PT  B
AU  Hong, LF
Sun, T
Yang, XF
Hui, HM
AF  Hong Laifeng
Sun Tie
Yang Xuefeng
Hui Huaiming
GP  PEEC-ORG COMM
TI  Numerical Simulation and Analysis of Jet Combustion Characteristic in Tubular Furnace
SO  POWER AND ENERGY ENGINEERING CONFERENCE 2010
LA  Chinese
DT  Proceedings Paper
CT  Power and Energy Engineering Conference
CY  SEP 11-12, 2010
CL  Wuhan, PEOPLES R CHINA
SP  Wuhan Univ, Sichuan Univ, Conf Overseas Chinese Pioneer & Dev China, Sci Res Publish
DE  furnace; combustion; numerical simulation
AB  Numerical simulation method was applied to study the combustion characteristics of the jet combustion in tube furnace of delayed coking process. The simplified model of the furnace, the non-structural mesh, the k- turbulence model, the simplified PDF combustion model and the discrete ordinate transfer radiation model were used to simulate the three-dimension jet combustion in a combustion chamber. The effect of combustion parameters on combustion characteristics of furnace was discussed, when the fuel flow and excess air coefficient were changed, the change regularity of the temperature distribution in the combustion chamber was analyzed, and that can be used to direct the actual operating conditions.
C1  [Hong, LF; Sun, T; Yang, XF] Liaoning Univ Petr & Chem Technol, Liaoning Fushun 113001, Peoples R China.
RP  Hong, LF (reprint author), Liaoning Univ Petr & Chem Technol, Liaoning Fushun 113001, Peoples R China, Peoples R China
EM  Honglaifeng2008@163.com
NR  6
TC  0
Z9  0
PU  SCI RES PUBL, INC-SRP
PI  IRVIN
PA  5005 PASEO SEGOVIA, IRVIN, CA 92603-3334 USA
BN  978-1-935068-17-4
PY  2010
BP  327
EP  331
PG  5
P2  178
GA  BUR91
UT  WOS:000290185600075
ER  

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Numerical Simulation and Analysis of Jet Combustion Characteristic in Tubular Furnace  
×÷Õß: Hong, LF (Hong Laifeng)1; Sun, T (Sun Tie)1; Yang, XF (Yang Xuefeng)1; Hui, HM (Hui Huaiming)  
Êé¼®ÍÅÌå×÷Õß: PEEC-ORG COMM  
À´Ô´³ö°æÎï: POWER AND ENERGY ENGINEERING CONFERENCE 2010  Ò³: 327-331   ³ö°æÄê: 2010  
±»ÒýƵ´Î: 0 (À´×Ô Web of Science)  
ÒýÓõIJο¼ÎÄÏ×: 6 [ ²é¿´ Related Records ]     ÒýÖ¤¹ØÏµÍ¼      
»áÒéÃû³Æ: Power and Energy Engineering Conference »áÒ鵨µã: Wuhan, PEOPLES R CHINA »áÒéÈÕÆÚ: SEP 11-12, 2010
»áÒéÔÞÖúÉÌ: Wuhan Univ; Sichuan Univ; Conf Overseas Chinese Pioneer & Dev China; Sci Res Publish  
ÕªÒª: Numerical simulation method was applied to study the combustion characteristics of the jet combustion in tube furnace of delayed coking process. The simplified model of the furnace, the non-structural mesh, the k- turbulence model, the simplified PDF combustion model and the discrete ordinate transfer radiation model were used to simulate the three-dimension jet combustion in a combustion chamber. The effect of combustion parameters on combustion characteristics of furnace was discussed, when the fuel flow and excess air coefficient were changed, the change regularity of the temperature distribution in the combustion chamber was analyzed, and that can be used to direct the actual operating conditions.  
ÎÄÏ×ÀàÐÍ: Proceedings Paper  
ÓïÖÖ: Chinese  
×÷Õ߹ؼü´Ê: furnace; combustion; numerical simulation  
ͨѶ×÷ÕßµØÖ·: Hong, LF (ͨѶ×÷Õß),Liaoning Univ Petr & Chem Technol, Liaoning Fushun 113001, Peoples R China, Peoples R China  
µØÖ·:
1. Liaoning Univ Petr & Chem Technol, Liaoning Fushun 113001, Peoples R China  
µç×ÓÓʼþµØÖ·: Honglaifeng2008@163.com  
³ö°æÉÌ: SCI RES PUBL, INC-SRP, 5005 PASEO SEGOVIA, IRVIN, CA 92603-3334 USA  
IDS ºÅ: BUR91  
ISBN: 978-1-935068-17-4  

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xzzhu7471(½ð±Ò+5): 2011-11-21 10:46:59
liuyunme(½ð±Ò+5): ¸ÐлӦÖú£¡ 2011-11-21 21:04:41
1. Numerical simulation and analysis of jet combustion characteristic in tubular furnace



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