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Design and experimental performance of short curved wall diffusers with axial symmetry utilizing slot suction

contributor authorNASA - National Aeronautics and Space Administration (NASA)
date accessioned2017-09-04T18:38:42Z
date available2017-09-04T18:38:42Z
date copyright01/01/1973
date issued1973
identifier otherJQHOEEAAAAAAAAAA.pdf
identifier urihttp://yse.yabesh.ir/std;query=authoCA5893FD081D49A96159DD6EFDEC014A/handle/yse/220425
description abstractThe feasibility of designing short curved wall axially symmetrical subsonic diffusers utilizing suction through slots in the diffuser walls to prevent flow separation was investigated. A potential flow analysis was made, and a digital computer program was written for determining the diffuser wall contour for prescribed boundary conditions. The flow field included branch flow so that the suction slot geometry could be a part of the diffuser design. One bell shaped diffuser and three annular diffusers with area ratios of either 2.5:1 or 3:1 were designed, fabricated, and tested. Minimum suction requirements of metastable operation ranged from 6.3 percent to 12 percent when operating with inlet air velocities in the 1000 to 250 ft/sec (30 to 76 m/sec) range. For stable operation suction rates from 10 percent to 22 percent were required. In all cases the diffuser effectiveness was above 95 percent based on the conventional definition, and from 81 percent to 94 percent when the suction loss was accounted for. The exit velocity profiles were virtually flat with no more than or - 9% variation over 95 percent of the exit area when operated with sufficient suction to prevent flow separation.
languageEnglish
titleNASA-CR-2209num
titleDesign and experimental performance of short curved wall diffusers with axial symmetry utilizing slot suctionen
typestandard
page115
statusActive
treeNASA - National Aeronautics and Space Administration (NASA):;1973
contenttypefulltext
subject keywordsAXISYMMETRIC FLOW
subject keywordsCURVATURE
subject keywordsDIFFUSERS
subject keywordsSLOTS
subject keywordsSUBSONIC FLOW
subject keywordsSUCTION


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