Optimization of Blade Sweep in a Transonic Axial Compressor Rotor

  • KWANGYONG KIM

초록

This paper describes the optimization of blade sweep in a transonic axial compressor rotor. The shape optimization has been performed using response surface method and three-dimensional Navier-Stokes analysis. Two shape variables of the rotor blade, which are used to define rotor sweep, are introduced to increase an adiabatic efficiency of the axial compressor. Blade sweep has been used in transonic compressor design with the intent of reducing shock losses. Throughout the optimization of a blade sweep, optimal shape having a backward sweep is obtained. Adiabatic efficiency, which is the objective function of the present optimization, is successfully increased by 1.25 percent. Separation line due to the interference between shock and surface boundary layer on the blade suction surface is moved downstream for the optimized blade compared to reference one. The increase in adiabatic efficiency for the optimized blade is caused by suppression of the separation due to shock on the blade suction surface.

제목
Optimization of Blade Sweep in a Transonic Axial Compressor Rotor
저자
KWANGYONG KIM
학회명
The 6th KSME-JSME Thermal & Fluids Engineering Conference