NASA-CR-121024-1972 An improved design method and experimental performance of two dimensional curved wall diffusers《二维弯曲壁扩散器的改良设计方法和实验性能》.pdf
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1、N 7 3“ 122 9 4NASA CR 121024ASE FILECOPYAN IMPROVED DESIGN METHOD AND EXPERIMENTALPERFORMANCE OF TWO DIMENSIONAL CURVED WALLDIFFUSERSBYTAH-TEH YANG , W.G.HUDSONAND ALI M.EL-NASHARCLEM SON UNIVERSITYCLEMSON , SOUTH CAROLINAPREPARED FORNATIONAL AERONAUTICAL AND SPACE ADMINISTRATIONNASA LEWIS RESEARCH
2、CENTERGRANT NGR 41-001-031A. JUHAS2, PROJECT MANAGERProvided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-1. Report No.CR-12102*2. Government Accession No. 3. Recipients Catalog No.4. Title and SubtitleAn Improved Design Method and Experimental Performance
3、 of TwoDimensional Curved Wall Diffusers5. Report Date6. Performing Organization Code7. Author(s)Tah-teh Yang, W.G. Hudson, and Ali. M. El-Nashar8. Performing Organization Report No.10. Work Unit No.9. Performing Organization Name and AddressMechanical Engineering DepartmentClemson UniversityClemson
4、, South Carolina11. Contract or Grant No.NASA Grant NCR-* 1-001-03112. Sponsoring Agency Name and AddressNational Aeronautics and Space AdministrationWashington, D. C. 205613. Type of Report and Period CoveredContractor Report14. Sponsoring Agency Code15. Supplementary NotesProject Manager, Albert J
5、. JuhaszAir Breathing Engines Division, NASA Lewis Research CenterCleveland, Ohio16. AbstractA computer design program was developed to incorporate the suction slots insolving the potential flow equations with prescribed boundary conditions. Using the contourgenerated from this program, two Griffith
6、 diffusers were tested having area ratios AR = 3 and4. The inlet Reynolds number ranged from 6 x 1CP to 7 x 106. It was found that the slotsuction required for meta-stable operation depends on the side-wall suction applied Valuesof slot suction of 81 of the inlet flow rate was required for AR = 4 wi
7、th meta-stable con-dition, provided that enough side-wall suction was applied. For AR = 3, the values of slotsuction was about 25% lower than those required for AR = k. For nearly all unseparated testruns the effectiveness n was 100% and the exit flow was uniform. In addition to theGriffith diffuser
8、s, dump and cusp diffusers of comparable area ratios were built and testedThe results obtained from these diffusers were compared with those of the Griffith diffusersFlow separation occurred in all test runs with the dump and cusp diffusers17. Key Words (Suggested by Author(s)Contour wall diffuserBo
9、undary layer controlDiffuser performanceDi ffuser des ign18. Distribution StatementUnclassified - unlimited19. Security Classif. (of this report)Unclass i fi ed20. Security Classif. (of this page)Unclassi f ied21. No. of Pages7222. Price* For sale by the National Technical Information Service, Sprin
10、gfield, Virginia 22151Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-FOREWORDThe research described herein, which was conducted by the MechanicalEngineering Department of Clemson University, was performed under NASAGrant NGR-41-001-031. Project Mana
11、ger was Mr. Albert Juhasz of theAirbreathing Engines Division, NASA-Lewis Research Center.i iProvided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-TABLE OF CONTENTSSection PageFOREWORD i i iTABLE OF CONTENTS ivSUMMARY 1I INTRODUCTION 31 . 1 Background 41.2
12、 Objectives1.3 ScopeI I SYMBOLS 6III ANALYSIS AND DESIGN 93.1 Two-Dimensional Griffith Diffuser 93.1.1 Design Concept 93.1.2 Analysis 113-1.3 Incorporation of Suction Slot in the Design. . 153.1.4 Computer Design Program 173-1.5 Computer Analysis Program.- 73.2 Cusp Diffuser 183.2.1 Background 83.2.
13、2 Contour Generation 19IV APPARATUS AND INSTRUMENTATION 224.1 Test Facility 224.2 Griffith Diffuser 24.3 Dump Diffuser 3i vProvided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Section Page4.4 Cusp Diffuser 234.5 Instrumentation and Measurements 24V TEST C
14、ONDITIONS, PROCEDURE AND DATA REDUCTION 325.1 Test Conditions 325.2 Test Procedure and Data Reduction 33VI DISCUSSION OF RESULTS 366.1 Griffith Diffuser 66.2 Dump Diffuser 446.3 Cusp Diffuser 52VII CONCLUSIONS 47.1 Griffith Diffuser 547.2 Dump Diffuser 47.3 Cusp Diffuser 4VIM REFERENCES 55APPENDIX A
15、 - Outline of Surface - Source - DistributionMethod in Solving Channel Flow Problems UsingCascade Theory 56APPENDIX B - Derivation of the Expressrion for theDiffuser Effectiveness 64DISTRIBUTION LIST 65Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-
16、SUMMARYThis report presents the results of an investigation concerningthe design and testing of two-dimensional subsonic short diffusersemploying boundary layer control using suction slots. The main goalwas to design and test a two-dimensional Griffith diffuser using animproved computer design progr
17、am. This program incorporates the suctionslots in the potential flow solution. The diffuser contour was arrivedat by prescribing the potential flow velocity along the diffuser wallto have a region of constant high velocity at the inlet, a region ofconstant low velocity at the exit, and a region of c
18、oncentrateddeceleration connecting the inlet and exit regions. The suction slotwas located at the deceleration zone to control flow separation withinthis region. Side-wall suction was applied through porous side wallsin order to maintain two-dimensional flow. Two diffusers, with arearatios, AR, of 3
19、 and k, were tested. The inlet and diffuser lengths were1.0 in (2.5* cm) and 6.2 in (15-7 cm) respectively. Slot suction ratesaround 8% of the inlet flow rate were required for the diffuser withAR = 4 under metastable operating conditions, provided enough side-wallsuction was applied. Slot suction r
20、equirements for the diffuser withAR = 3 were about 25% lower when a constant side-wall suction of 15% ofthe inlet flow was applied. For stable operation the required slot suctionranged from 28 to 30 percent for the diffuser with AR = 3 and 30 to 34percent for the diffuser with AR = A. The values of
21、the diffuser effective-ness n for the unseparated flow were very close to 100%. The flow emergingfrom the exit plane was uniform throughout most of the exit area. Goodcorrelation was obtained between predicted and experimental values of wallpressure distribution and center line velocity distribution
22、.Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-The secondary goal was to compare the performance of a dump (a dumpdiffuser is a sudden enlargement) and a cusp diffuser having variable arearatios between approximately 3 and k and having the same inl
23、et and diffuserlengths as the Griffith diffuser. These diffusers were each fabricatedwith two different suction slot locations. For the dump diffuser, slotswere provided at the inlet and exit corners; for the cusp diffuser theslots were located downstream of the cusp.For the dump diffuser (AR = 3 an
24、d k), the location of the suctionslot proved to be critical regarding the diffuser effectiveness. Withthe suction slot located at the inlet corner, much higher values ofeffectiveness n were obtained than with the slot located at the exitcorner. However, flow separation occurred in all the test runs.
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