SAE J 2071-1994 Aerodynamic Testing of Road Vehicles - Open Throat Wind Tunnel Adjustment Information Report《公路车辆的空气动力学测试 开式风洞调整》.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 1994 Society of Automotive Engineers, Inc.All rights reserved. Printed in U.S.A.SURFACEVEHICLE400 Commonwealth Drive, Warrendale, PA 15096-0001INFORMATIONREPORTAn American National StandardJ2071REV.JUN94Issued 1990-
4、03Revised 1994-06Superseding J2071 MAR90AERODYNAMIC TESTING OF ROAD VEHICLES - OPEN THROAT WIND TUNNEL ADJUSTMENTForewordThis document has also changed to comply with the new SAE Technical Standards Board format. Thedocument title has also changed.1. ScopeAs a simulation of road driving, wind tunnel
5、 testing of full-size vehicles produces certain errors in theaerodynamic forces, aerodynamic moments, and surface pressures. The magnitude of these errors, ingeneral, depends on the following:a. Flow qualityb. Determination of the reference dynamic pressurec. Wind tunnel floor boundary layerd. Test
6、section geometry and position of the car within that geometrye. Shape of the vehiclef. Blockage ratio: The ratio of the cross-sectional area of the vehicle to the cross-sectional area of thewind tunnel nozzleg. Wheel rotationh. Internal flow in the modelThe SAE Standards Committee, Open Throat Wind
7、Tunnel Adjustments had as a goal to document theknowledge of the influence of model interference on wind tunnel test results for automotive open jet windtunnels. This document contains the following information related to this subject:a. Design data of open throat wind tunnelsb. A summary of publish
8、ed and unpublished test datac. Documentation and theoretical explanation of various blockage correction procedures for automotivetestsd. Critical evaluation of blockage correction procedures, especially in relation to other influences, such astest section geometry, position of the car, floor boundar
9、y layer, etc.e. Recommendation of a calibration procedure to determine the effect of blockage and other influencesin each individual wind tunnelAn initial goal of the committee, to recommend a well proven correction procedure for automotive open jet windtunnels based on blockage theory (Figure 1), c
10、ould not be established at this time. The reason is that, besidesblockage, other factors, such as test section geometry, are at least as influential as pure blockage. As theseinfluential parameters are wind tunnel specific, a general valid adjustment procedure is presently not available.SAE J2071 Re
11、vised JUN94-2-FIGURE 1PURE MODEL SIZE INFLUENCE2. References2.1 Applicable PublicationsThe following publications form a part of the specification to the extent specifiedherein. Unless otherwise indicated the lastest revision of SAE publications shall apply.2.1.1 SAE PUBLICATIONSAvailable from SAE,
12、400 Commonwealth Drive, Warrendale, PA 15096-0001.1. Ludvigsen, K.E.Automotive Aerodynamic Research Over Past 50 Years in Germany, Great Britain, Italy, United States,and Other CountriesSAE Paper 700035, 19702. Buchheim, R. et al.Comparison Tests Between Major European Automotive Wind Tunnels.SAE Pa
13、per 800140, Detroit, 19803. Buchheim, R. et al.Comparison Tests Between Major European and North American Automotive Wind TunnelsSAE Paper 830301, Detroit, 1983SAE J2071 Revised JUN94-3-4. Cogotti, A. et al.Comparison Test Between Some Full-Scale European Automotive Wind Tunnels - PininfarinaReferen
14、ce CarSAE Paper 800139, Detroit, 19805. Costelli, A. et al.FIAT Research Center Reference Car: Correlation Tests Between Four Full Scale European WindTunnels and RoadSAE Paper 810187, Detroit, 19816. Carr, G.W., Stapleford, W.R.Blockage Effects in Automotive Wind-Tunnel TestingSAE Paper 860093/19867
15、. Mercker, E.General Consideration About Blockage Correction in Open Jet Wind TunnelsSAE Subcommittee No. 9 - Communication (1987)8. Janssen, L.J., Domeland, P., Lindener, N.The New BMW Acoustic Wind TunnelPaper planned for SAE Congress, Detroit, February 19909. Janssen, L.J., Lindener, N., Mullenba
16、ch, P., VAGT, J.-D.Measurement of Tunnel Speed and Static Reference Pressure in Open Jet Automotive Wind TunnelsPaper planned for SAE Congress, Detroit, February 19902.1.2 OTHER PUBLICATIONS1. Konig-Fachsenfeld, R.Aerodynamik des Kraftfahrzeugs Umschau-Verlag, Frankfurt a.M.2. Kramer, C. et al.Wind
17、Tunnels for Industrial AerodynamicsJ. Wind Engineering and Industrial Aerodynamics 16 (1984), pp 2252643. Lock, C.N.H.The Interference of a Wind Tunnel on a Symmetrical BodyARC, R therefore, the space between the rear end of the model and the collector intakearea is decreased. This will be discussed
18、 later in more detail.In a comparison paper by Cooper (see 2.1.2 (15) , 1:10 scale trucks were tested in closed and open windtunnels. The two trucks used in the tests were well detailed, each having both a high and a low dragconfiguration. For the open tunnel, the following correction was applied to
19、 the data:(Eq. 15)whereas the data of the closed tunnels were corrected by the formula:(Eq. 16)where:CD = Drag coefficient in body axis coordinatesCDu = Uncorrected drag coefficientCDb = Drag increment due to wake buoyancy = Yaw angleA = Model frontal areaA2 = Part of nozzle area above ground planeC
20、D C( Du0.25 CDb)cos (1 0.5 AA2)+=CD C( Du CDb)cos (1 2 AA2)+=SAE J2071 Revised JUN94-22-FIGURE 11CORRECTION OF WAKE PRESSURE OF A 60 DEGREE ANGLED PLATE IN AN OPEN JET TEST SECTION AFTER REFERENCE 2.1.2 (14)SAE J2071 Revised JUN94-23-FIGURE 12BLOCKAGE CORRECTION METHODS VERSUS BLOCKAGE AREA RATIO AF
21、TER REFERENCE 2.1.1 (3)This correction was obtained from References 2.1.2 (11) and 2.1.2 (16). The results of the measurements withtwo models are shown in Figure 13. In almost all the configurations tested, the open jet showed the lowestvalues. Even when the values are adjusted for blockage and buoy
22、ancy, using the equations, the data spreadreduces to only 15% of the mean values.In experiments by Frimberger and Pucher (see 2.1.2 (17) a set of sharp edged cubes was tested in eight openthroat wind tunnels to investigate the influence of blockage. Only pressures in specific cross sections weremeas
23、ured. The main results were:a. The front faces of the cubes were almost unaffected by blockage.b. On all other faces the pressures measured were too low.c. The tendency of pressure change with increasing blockage is different for each wind tunnel.d. The tendency of pressure change with increasing bl
24、ockage is different for each face of the cubes.e. Correction factors for pressure and drag coefficients derived from the measurements are different(Figure 14).f. The number of parameters, which varied in the wind tunnels, was too large to assign single influencesto specified parameters.The results o
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