TY - JOUR
T1 - Parametric modeling and multidisciplinary design optimization for cooling turbine blade
AU - Yu, Kua Hai
AU - Yue, Zhu Feng
PY - 2007/8
Y1 - 2007/8
N2 - A multidisciplinary design optimization system for gas turbine blade, which involves structure, aerodynamic, heat transfer, vibration and service life, etc, has been developed, serving the purpose of multidisciplinary design optimization of single-hole thin wall cooling blade. A parametric modeling method was also proposed for single-hole thin wall cooling blade. The blade surface geometry is defined by five-order polynomials, while 3-D coupling analysis was made for aerodynamic and heat transfer. The average temperature and maximum temperature of blade volume were optimized, with aerodynamic, vibration and service life as the constraints. A combined algorithm of annealing simulation and SQP (Sequential Quadratic Programming) was used to optimize the blade parameters. While the flow rate of cooling air was kept unchanged, the cooling effect was improved and the performance requirement on the blade materials was reduced.
AB - A multidisciplinary design optimization system for gas turbine blade, which involves structure, aerodynamic, heat transfer, vibration and service life, etc, has been developed, serving the purpose of multidisciplinary design optimization of single-hole thin wall cooling blade. A parametric modeling method was also proposed for single-hole thin wall cooling blade. The blade surface geometry is defined by five-order polynomials, while 3-D coupling analysis was made for aerodynamic and heat transfer. The average temperature and maximum temperature of blade volume were optimized, with aerodynamic, vibration and service life as the constraints. A combined algorithm of annealing simulation and SQP (Sequential Quadratic Programming) was used to optimize the blade parameters. While the flow rate of cooling air was kept unchanged, the cooling effect was improved and the performance requirement on the blade materials was reduced.
KW - Aerospace propulsion system
KW - Cooling turbine blade
KW - Coupling analysis
KW - Multidisciplinary design optimization (MDO)
KW - Parametric modeling design
UR - http://www.scopus.com/inward/record.url?scp=34548473832&partnerID=8YFLogxK
M3 - 文章
AN - SCOPUS:34548473832
SN - 1000-8055
VL - 22
SP - 1346
EP - 1351
JO - Hangkong Dongli Xuebao/Journal of Aerospace Power
JF - Hangkong Dongli Xuebao/Journal of Aerospace Power
IS - 8
ER -