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contributor authorY. T. Lee
contributor authorC. Hah
contributor authorJ. Loellbach
date accessioned2017-05-08T23:51:57Z
date available2017-05-08T23:51:57Z
date copyrightApril, 1996
date issued1996
identifier issn0889-504X
identifier otherJOTUEI-28651#240_1.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/117858
description abstractSteady-state analyses of the incompressible flow past a single-stage stator/rotor propulsion pump are presented and compared to experimental data. The purpose of the current study is to validate a numerical method for the design application of a typical propulsion pump and for the acoustic analysis based on predicted flowfields. A steady multiple-blade-row approach is used to calculate the flowfields of the stator and the rotor. The numerical method is based on a fully conservative control-volume technique. The Reynolds-averaged Navier–Stokes equations are solved along with the standard two-equation k–ε turbulence model. Numerical results for both mean flow and acoustic properties compare well with measurements in the wake of each blade row. The rotor blade has a thick boundary layer in the last quarter of the chord and the flow separates near the trailing edge. These features invalidate many Euler prediction results. Due to the dramatic reduction of the turbulent eddy viscosity in the thick boundary layer, the standard k–ε model cannot predict the correct local flow characteristics near the rotor trailing edge and in its near wake. Thus, a modification of the turbulence length scale in the turbulence model is applied in the thick boundary layer in response to the reduction of the turbulent eddy viscosity.
publisherThe American Society of Mechanical Engineers (ASME)
titleFlow Analyses in a Single-Stage Propulsion Pump
typeJournal Paper
journal volume118
journal issue2
journal titleJournal of Turbomachinery
identifier doi10.1115/1.2836631
journal fristpage240
journal lastpage248
identifier eissn1528-8900
keywordsFlow (Dynamics)
keywordsPropulsion
keywordsPumps
keywordsTurbulence
keywordsRotors
keywordsBlades
keywordsBoundary layers
keywordsStators
keywordsEddies (Fluid dynamics)
keywordsViscosity
keywordsAcoustics
keywordsWakes
keywordsNumerical analysis
keywordsChords (Trusses)
keywordsMeasurement
keywordsSteady state
keywordsDesign
keywordsEquations AND Reynolds-averaged Navier–Stokes equations
treeJournal of Turbomachinery:;1996:;volume( 118 ):;issue: 002
contenttypeFulltext


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