TY - JOUR
T1 - Surrogate-based optimization with improved support vector regression for non-circular vent hole on aero-engine turbine disk
AU - Yan, Cheng
AU - Yin, Zeyong
AU - Shen, Xiuli
AU - Mi, Dong
AU - Guo, Fushui
AU - Long, Dan
N1 - Publisher Copyright:
© 2019 Elsevier Masson SAS
PY - 2020/1
Y1 - 2020/1
N2 - This paper investigates a structural optimization for the non-circular vent hole on an aero-engine turbine disk. A novel optimization approach, namely SO-ISVR (the surrogate-based optimization using an improved support vector regression), for the vent hole design is developed. ISVR (the improved support vector regression) is proposed to extract some ignored valuable information from the existing training data by using the least squares method, so as to improve the performance of SVR (support vector regression). To validate the advantages of SO-ISVR, another two optimization approaches are also developed. They are SO-SVR (the surrogate-based optimization using SVR) and FEMO (the finite element method based optimization). The results show that ISVR is suitable and valuable in engineering optimization. Compared to the initial scheme, the maximum von Mises stress of the optimal scheme obtained by SO-ISVR is reduced from 1189.488 MPa to 948.530 MPa. Further comparative study for SO-ISVR, SO-SVR, and FEMO demonstrates that SO-ISVR possesses some advantages in both computational efficiency and optimization effect.
AB - This paper investigates a structural optimization for the non-circular vent hole on an aero-engine turbine disk. A novel optimization approach, namely SO-ISVR (the surrogate-based optimization using an improved support vector regression), for the vent hole design is developed. ISVR (the improved support vector regression) is proposed to extract some ignored valuable information from the existing training data by using the least squares method, so as to improve the performance of SVR (support vector regression). To validate the advantages of SO-ISVR, another two optimization approaches are also developed. They are SO-SVR (the surrogate-based optimization using SVR) and FEMO (the finite element method based optimization). The results show that ISVR is suitable and valuable in engineering optimization. Compared to the initial scheme, the maximum von Mises stress of the optimal scheme obtained by SO-ISVR is reduced from 1189.488 MPa to 948.530 MPa. Further comparative study for SO-ISVR, SO-SVR, and FEMO demonstrates that SO-ISVR possesses some advantages in both computational efficiency and optimization effect.
KW - Aero-engine
KW - Non-circular vent hole
KW - Structural optimization
KW - Support vector regression
KW - Surrogate
KW - Turbine disk
UR - https://www.scopus.com/pages/publications/85075987551
U2 - 10.1016/j.ast.2019.105332
DO - 10.1016/j.ast.2019.105332
M3 - 文章
AN - SCOPUS:85075987551
SN - 1270-9638
VL - 96
JO - Aerospace Science and Technology
JF - Aerospace Science and Technology
M1 - 105332
ER -