삼차원 Navier-Stokes 해석을 이용한 원심다익송풍기의 최적설계

영문제목
  • KWANGYONG KIM

초록

In this paper, the response surface method using three-dimensional Navier-Stokes analysis to optimize the shape of a forward-curved blades centrifugal fan, is described. For numerical analysis, Reynolds-averaged Navier-Stokes equations with standard k-e turbulence model are transformed into non-orthogonal curvilinear coordinate system, and are discretized with finite volume approximations. Due to the large number of blades in forward-curved blades centrifugal fan, the flow inside of the fan is regarded as steady flow by introducing the impeller force models for economic calculations. Linear Upwind Differencing Scheme(LUDS) is used to approximate the convection terms in the governing equations. SIMPLEC algorithm is used as a velocity-pressure correction procedure. Design variables, radius of cut off () , expansion angle of scroll(), width of impeller() and Diameter at inlet of impeller() were selected to optimize the shapes of scroll and blades. Data points for response evaluations were selected by D-optimal design, and linear programming method was used for the optimization on the response surface. As a main result of the optimization, the efficiency was successfully improved. It was found that the optimization process provides reliable design of this kind of fans with reasonable computing time

제목
삼차원 Navier-Stokes 해석을 이용한 원심다익송풍기의 최적설계
제목 (타언어)
영문제목
저자
KWANGYONG KIM
학회명
대한기계학회 춘계학술대회