고효율 저유체유발진동 단일채널펌프 설계를 위한다중목적 최적화

Multi-Objective Optimization for Designing a High-Efficiency and Low-Fluid-Induced-Vibration Single-Channel Pump
  • 송왕기
  • 마상범
  • 최영석
  • 이경용
  • 김윤성
  • 외 2명

초록

This paper presents the multi-objective optimization of a single-channel pump for wastewater treatment to simultaneously improve the hydraulic efficiency and reduce the unsteady radial force source caused by the impeller-volute interaction. The optimization was carried out by using a hybrid multi-objective evolutionary algorithm coupled with response surface approximation. For analyzing the internal flow in the single-channel pump, steady and unsteady Reynolds-averaged Navier-Stokes equations were solved with the shear stress transport turbulence model as a turbulence closure model. Five design variables related to the internal flow cross-sectional area of the impeller and volute were selected to optimize concurrently the two objective functions with the hydraulic efficiency and the resultant force of the unsteady radial force caused by the impeller-volute interaction. The results of the multi-objective optimization showed the representative arbitrary optimum design considerably enhanced the efficiency and reduced the resultant force of the unsteady radial force caused by the impeller-volute interaction simultaneously, compared to the reference design.

키워드

Single-Channel Pump(단일채널펌프)Unsteady Analysis(비정상 해석)Radial Force(반경방향 힘)Fluid-Induced- Vibration(유체유발진동)Bezier-Curve(베지어 곡선)Optimization(최적화)
제목
고효율 저유체유발진동 단일채널펌프 설계를 위한다중목적 최적화
제목 (타언어)
Multi-Objective Optimization for Designing a High-Efficiency and Low-Fluid-Induced-Vibration Single-Channel Pump
저자
송왕기마상범최영석이경용김윤성김광용김진혁
DOI
10.5293/kfma.2018.21.4.030
발행일
2018-08
유형
Y
저널명
한국유체기계학회 논문집
21
4
페이지
30 ~ 38