Internal Viscous Flow Computation Within the Jet Pump Elements

제트 폄프 요소 내부의 유동 해석

  • 조장근 (부산대학교 대학원 기계공학과 전산유체역학실험실) ;
  • 오상욱 (부산대학교 대학원 기계공학과 전산유체역학실험실) ;
  • 박원규 (부산대학교 기계공학과) ;
  • 오세민 ((주)LG전자) ;
  • 이수원 ((주)LG전자)
  • Published : 1996.05.01

Abstract

The jet pump is being used in many fields for several purposes because of its simple construction and easy operation. The characteristics of the geometrical variables, pressure gradient and velocity distribution of the jet pump are studied using the CFD technique. The flow calculations through a bended nozzle. a mixing chamber and a venturi are presented and phenomenological aspects are discussed. This study solve 3-D steady incompressible Navier-Stokes equations using the Iterative time marching scheme. The governing equations are differenced with 1st-order accurate backward difference scheme for the time derivatives and 3rd-order accurate QUICK scheme for the convective terms. The Mark-and-cell concept was applied efficiently to solve continuity equation, which is differenced 2nd-order accurate central differenced scheme. The 4th-order artificial damping is added to the continuity equation for numerical stability. A O-type of grid system is generated inside a nozzle and venturi of the jet pump. It has concluded that the results of present study properly agree with physical flow phenomena.

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