SAE J 2084-1993 Aerodynamic Testing of Road Vehicles-Testing Methods and Procedures Information Report《道路交通工具航空动力学测试的测试方法及程序》.pdf
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1、SAE Technical Standards Board Rules provide that: “This report is published by SAE to advance the state of technical and engineering sciences. The use of this report is entirelyvoluntary, and its applicability and suitability for any particular use, including any patent infringement arising therefro
2、m, is the sole responsibility of the user.”SAE reviews each technical report at least every five years at which time it may be reaffirmed, revised, or cancelled. SAE invites your written comments and suggestions.QUESTIONS REGARDING THIS DOCUMENT: (724) 772-8512 FAX: (724) 776-0243TO PLACE A DOCUMENT
3、 ORDER; (724) 776-4970 FAX: (724) 776-0790SAE WEB ADDRESS http:/www.sae.orgCopyright 1993 Society of Automotive Engineers, Inc.All rights reserved. Printed in U.S.A.SURFACEVEHICLE400 Commonwealth Drive, Warrendale, PA 15096-0001INFORMATIONREPORTJ2084ISSUEDJAN93Issued 1993-01AERODYNAMIC TESTING OF RO
4、AD VEHICLESTESTING METHODS AND PROCEDURESForewordThis Document has not been changed other than to put it into the new SAE Technical Standards BoardFormat.This report is part of a series of SAE Technical Reports dealing with Aerodynamic Testing of Road Vehicles, whichto date comprises:SAE HS J1566Aer
5、odynamic Flow Visualization Techniques and ProceduresSAE J1594Vehicle Aerodynamics TerminologySAE J2071Open-Jet Wind-Tunnel Boundary InterferenceSAE J2085Solid-Wall Wind-Tunnel Boundary InterferenceSAE J2082Cooling Flow Measurement TechniquesThis SAE Information Report has been developed from an ear
6、lier SAE Recommended Practice (1) 1 which set outtest procedures for measuring the aerodynamic characteristics of heavy-duty trucks and buses using establishedwind-tunnel model testing techniques. The Information Report provides the rationale and the background behindthe recommended test techniques
7、in that Recommended Practice. It also outlines additional techniques that areuseful in wind-tunnel testing, but which have not yet gained the level of acceptance needed for an SAErecommended practice.The objective of both the Recommended Practice and the Information Report is to provide guidance for
8、 theengineer tasked with carrying out wind-tunnel testing on a road vehicle, for whatever purpose. Use of theprocedures described should improve the comparability of aerodynamic data taken in different wind-tunnels andshould ensure that good quality data are obtained.The present Information Report c
9、overs a broader range of vehicles than the Recommended Practice (1). Inaddition to trucks and buses, which are mostly tested at reduced scale in order to match the sizes of wind-tunnelscommonly available, this report deals with tests on smaller vehicles, such as automobiles, motorcycles, and racingc
10、ars, which are very often tested at full scale.1. Numbers in parentheses denote references in Section 2.COPYRIGHT Society of Automotive Engineers, Inc.Licensed by Information Handling ServicesSAE J2084 Issued JAN93-2-TABLE OF CONTENTS1. Scope32. References33. Objectives of Wind-Tunnel Testing 54. Ae
11、rodynamic Requirements of Test Facilities . 64.1 Types of Test Section 64.2 Ground Simulation 94.3 Flow Quality 144.4 Reynolds Number Requirements175. Facility Equipment Requirements .235.1 Model/Vehicle Installation .235.2 Instrumentation .265.3 Data Acquisition296. Model/Vehicle Requirements 316.1
12、 Full-Scale Testing316.2 Small-Scale Testing 357. Test Methods and Procedures 387.1 Force Measurements 387.2 Surface Pressure Measurements .417.3 Flow-field Measurements437.4 Flow Visualization .478. Data Reduction, Analysis, and Presentation.488.1 Notation and Presentation 488.2 Corrections .508.3
13、Validity/Applicability.53APPENDIX A55APPENDIX B56COPYRIGHT Society of Automotive Engineers, Inc.Licensed by Information Handling ServicesSAE J2084 Issued JAN93-3-1. ScopeThe scope of this SAE Information Report is confined to wind-tunnel testing, although it is recognizedthat many aspects of the aer
14、odynamic characteristics of road vehicles can be investigated in other test facilities(such as water-tanks) or, especially, on the road. For example, coastdown testing is often used to determineaerodynamic drag (either in isolation or as part of the total resistance), and artificial gust generators
15、are usedto investigate the sensitivity of vehicles to cross-wind gusts.Also excluded from the present Report are climatic wind-tunnel tests of road vehicles, which are defined inmore detail in Section 3.The Report covers the aerodynamic requirements of a wind-tunnel for automotive testing, together
16、with thefacility equipment needed and the requirements affecting the test vehicle or model. The test methods andprocedures described here include those for six-component force measurements and measurements ofpressures and velocities both on the vehicle/model surface and in the surrounding flow-field
17、.Flow visualization techniques are outlined, with reference to the detailed coverage in a related SAE InformationReport (2). In addition, the reduction, analysis, and presentation of wind-tunnel data are considered, withfurther references to associated SAE Information Reports (3,4) on corrections to
18、 be applied for wind-tunnelblockage effects. Finally, methods are discussed for the validation of the wind-tunnel data, e.g., by tunnel-to-road correlation studies.As already indicated, this document has been prepared in conjunction with a number of other SAE InformationReports and Recommended Pract
19、ices (15), each of which provides greater detail than is given here on itsparticular aspect of automotive aerodynamic testing.2. References2.1 Applicable PublicationsThe following publications form a part of this specification to the extent specifiedherein. The latest issue of SAE publications shall
20、 apply.1. SAE J1252SAE Wind-Tunnel Test Procedure for Trucks and Buses2. HS J1566Aerodynamic Flow Visualization Techniques and Procedures3. SAE J2071Aerodynamic Testing of Road Vehicles: Open-Jet Wind-Tunnel Boundary Interference4. SAE J2085Aerodynamic Testing of Road Vehicles: Solid-Wall Wind-Tunne
21、l Boundary Interference5. SAE J1594Vehicle Aerodynamics Terminology6. SCHLICHTING, H., Boundary-Layer Theory. McGraw-Hill, New York, (1979)7. VAN DYKE, M., Higher Order Boundary Layer Theory. Annual Review of Fluid Mech. I, pp 265292(1969)8. WIEDEMANN, J., Some Basic Investigations into the Principl
22、es of Ground Simulation Techniques inAutomotive Wind-Tunnels, SAE Paper 890369, Detroit, (1989)9. BEESE, E., Untersuchungen zum Einflusse der Reynolds-Zahl auf die Aerodynamischen Beiwerte vonTragflgelprofilen in Bodennhe, Dissertation, Fakultt fr Maschinenbau, Ruhr- Universitt Bochum,(1982)10. BERN
23、DTSSON, A., ECKERT, W.T. AND MERCKER, E., The Effect of Groundplane Boundary LayerControl on Automotive Testing in a Wind Tunnel, SAE Paper 880248, Detroit (1988)11. CARR, G.W., A Comparison of the Ground-Plane-Suction and Moving-Belt Ground-RepresentationTechniques, SAE Paper 880249, Detroit (1988)
24、12. HACKETT, J.E. and BOLES, R.A., Moving-Ground Simulation by Targential Blowing, J. Aircraft, Vol.16, No. 12, Article No. 78-814R, December (1979)13. MERCKER, E., and WIEDEMANN, J., Comparison of Different Ground-Simulation Techniques for Usein Automotive Wind-Tunnels, SAE Paper 900321, Detroit (1
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