----------------- FILE NUMBER 246----------------- 1. FLOW TITLE: CASE 0252; BISSONNETTE, L.R., AND MELLOR, G.L., PART-ROTATING CYLINDER EXPERIMENT. 2. REVISION DATE: NOVEMBER 6, 1981 3. EVALUATORS: HUMPHREYS, D.A., (FFA, BROMMA, SWEDEN); VAN DEN BERG, B., (NLR, EMMELOORD, HOLLAND). 4. LOCATION AND DATE OF EXPERIMENT: 0.4064 METER DIA OPEN RETURN TUNNEL, PRINCETON UNIVERSITY, 1970 5. ABSTRACT OF EXPERIMENT: THE AXISYMMETRIC (QUASI TWO-DIMENSIONAL) BOUNDARY LAYER ON A CYLINDER WHOSE AFTERBODY IS ROTATING ABOUT ITS AXIS WAS STUDIED. THE WALL PRESSURE WAS NOT DETERMINED, BUT WAS PROBABLY ROUGHLY CONSTANT. THE MOMENTUM EQUATIONS BALANCE, EXCEPT AT TWO OF THE SEVEN TEST STATIONS. THERE ARE NO REDUNDANT RESULTS TO PERMIT INTERNAL COMPATIBILITY CHECKS. 6. REFERENCES: 1. BISSONNETTE, L. R. (1970) AN EXPERIMENTAL STUDY OF THE DEVELOPMENT OF A THREE-DIMENS- IONAL TURBULENT BOUNDARY LAYER UNDER RAPIDLY CHANGING RATE OF STRAIN. DISS. PRINCETON UNIVERSITY (1970). 2. BISSONNETTE, L. R. & MELLOR, G. L. (1974) EXPERIMENTS ON THE BEHAVIOUR OF AN AXISYMMETRIC TURBULENT BOUNDARY LAYER WITH A SUDDEN CIRCUMFERENTIAL STRAIN. J. FLUID MECH., VOL. 63, P. 2 (APRIL 3, 1974), PP. 369-413. 7. INSTRUMENTATION: ROTATABLE HOT WIRES FOR MEAN VELOCITIES AND REYNOLDS STRESSES 8. EXPERIMENTAL PARAMETERS: DYNAMIC SIMILARITY; RE=31800, MI=0.06, USING SCALES GIVEN AS REFERENCE QUANTITIES; LENGTH (L) = 0.0254 (M) VELOCITY (QI) = 19.477 (M/S) QW = 18.136 (M/S) GAM = 1.40 PR = .720 9. MEASURED AND INFERRED VARIABLES: ALPHA - EXTERNAL STREAMLINE ANGLE IN DEGREES FROM K=CONST LINE BW - WALL CROSSFLOW ANGLE IN DEGREES ATAN(W/U) GAM - RATIO OF SPECIFIC HEATS CF - TOTAL SKIN FRICTION COEFFICIENT CPE - STATIC PRESSURE COEFFICIENT AT BOUNDARY LAYER EDGE CPW - STATIC PRESSURE COEFFICIENT ON TEST WALL ERR - UNCERTAINTY IN DATA IMPLIED BY INTEGER REPRESENTATION I,K - MEASURING GRID INDICES L - REFERENCE LENGTH FOR NON-DIMENSIONALIZING MAX - MAXIMUM ELEMENT IN AN ARRAY MI - MACH NUMBER PR - PRANDTL NUMBER QEQI - MEAN VELOCITY MAGNITUDE AT BOUNDARY LAYER EDGE QI - REFERENCE VELOCITY FOR NON-DIMENSIONALIZING QW - WALL VELOCITY CAUSED BY AFTERBODY ROTATION RE - REYNOLDS NUMBER TW - WALL TEMPERATURE U - LONGITUDINAL MEAN VELOCITY IN STREAMLINE COORDINATES W - CROSSFLOW MEAN VELOCITY COMPONENT UU,VV,WW - REYNOLDS NORMAL STRESSES IN STREAMLINE COORDINATES VW,WU,UV - REYNOLDS SHEAR STRESSES IN STREAMLINE COORDINATES XL,YL,ZL - CARTESIAN COORDINATES OF TEST SURFACE POINTS Y - PERPENDICULAR DISTANCE FROM TEST SURFACE 10. MEASUREMENT UNCERTAINTY: VALUES INVOLVING FLUCTUATIONS PERPENDICULAR TO THE WALL ARE LESS CERTAIN NEAR THE WALL. NOTE THAT, CF WAS NOT DETERMINED AT I=2,3 (DATA GIVEN AS 0.9999) CPW IS GIVEN AS ZERO BUT WAS NOT IN FACT MEASURED W WAS NEGLIGIBLE AT I=1 QW = + / - 1% U = + / - 2E-3 W = + / - 2E-3 RE = + / - 2E-4 11. TAPE ORGANIZATION: THE TAPE IS A 2400 FOOT, PHASE ENCODED, ODD PARITY, UNLABELLED TAPE WRITTEN AT A DENSITY OF 1600 BITS PER INCH ACCORDING TO EBCDIC CODE. THE RECORD FORMAT IS FIXED AND BLOCKED; RECORD LENGTH = 80 BYTES; 100 RECORD PER BLOCK; BLOCKSIZE = 8000 BYTES. NORMALIZED DATA ARE CREATED FROM MEASURED DATA AS FOLLOWS: XNORM = (X - XMIN)/(XMAX - XMIN) NORMALIZED VALUES ARE INTEGERIZED BY MULTIPLYING BY 10000 AND ROUNDING UP OR DOWN TO THE NEAREST INTEGER. IXNORM = XNORM * 10000. THUS EACH NORMALIZED DATUM IS WRITTEN ON TO THE TAPE AS AN INTEGER VALUE BETWEEN 0 AND 10000, HOWEVER THE MAXIMAS AND THE MINIMAS ARE WRITTEN ON TO THE TAPE AS NORMALIZED VALUES. ALL NULL DATA ARE WRITTEN AS 20000. THE EQUATION DESCRIBING THE RELATION BETWEEN ACTUAL DATA AND THE NORMALIZED DATA ON THE TAPE IS: X = XMIN + (((XMAX - XMIN) * IXNORM)/10000.) WHERE X, XMAX AND XMIN ARE REAL AND IXNORM IS AN INTEGER. FILE# NREC CONTENTS FORMAT COMMENTS 1 TEXT FILE CONTAINS ITEMS 1-11 OF THIS WRITE-UP (I) I=1.0, K= 0.0, XL=-6.0, YL=0.0, ZL=0.0, ALPHA=0.0, QEQI=1.0 CPE=0.0, CPW=0.0, BW=0.0, CF=0.0039, TW=1.0 2 57 Y,U 2E13.6 RECORD 1, MAX. VALUES Y,U 2E13.6 RECORD 2, MIN. VALUES Y,U 2I6 RECORDS 3-57, NORMALIZED VALUES 3 15 Y,UU,WW,-WU 4E13.6 RECORD 1, MAX. VALUES Y,UU,WW,-WU 4E13.6 RECORD 2, MIN. VALUES Y,UU,WW,-WU 4I6 RECORDS 3-15, NORMALIZED VALUES 4 15 Y,VV,-VW,-UV 4E13.6 RECORD 1, MAX. VALUES Y,VV,-VW,-UV 4E13.6 RECORD 2, MIN. VALUES Y,VV,-VW,-UV 4I6 RECORDS 3-15, NORMALIZED VALUES (II) I=2.0, K= 0.0, XL=1.0, YL=2.5, ZL=0.0, ALPHA=0.0, QEQI=1.0007 CPE=-0.014, CPW=0.0, BW=90, CF=0.9999, TW=1.0 5 42 Y,U,W 3E13.6 RECORD 1, MAX. VALUES Y,U,W 3E13.6 RECORD 2, MIN. VALUES Y,U,W 3I6 RECORDS 3-42, NORMALIZED VALUES 6 15 Y,UU,WW,-WU 4E13.6 RECORD 1, MAX. VALUES Y,UU,WW,-WU 4E13.6 RECORD 2, MIN. VALUES Y,UU,WW,-WU 4I6 RECORDS 3-15, NORMALIZED VALUES 7 16 Y,VV,-VW,-UV 4E13.6 RECORD 1, MAX. VALUES Y,VV,-VW,-UV 4E13.6 RECORD 2, MIN. VALUES Y,VV,-VW,-UV 4I6 RECORDS 3-16, NORMALIZED VALUES (III) I=3.0, K= 0.0, XL=4.0, YL=2.5, ZL=0.0, ALPHA=0.0, QEQI=1.01 CPE=-0.02, CPW=0.0, BW=90, CF=0.9999, TW=1.0 8 48 Y,U,W 3E13.6 RECORD 1, MAX. VALUES Y,U,W 3E13.6 RECORD 2, MIN. VALUES Y,U,W 3I6 RECORDS 3-48, NORMALIZED VALUES 9 15 Y,UU,WW,-WU 4E13.6 RECORD 1, MAX. VALUES Y,UU,WW,-WU 4E13.6 RECORD 2, MIN. VALUES Y,UU,WW,-WU 4I6 RECORDS 3-15, NORMALIZED VALUES 10 16 Y,VV,-VW,-UV 4E13.6 RECORD 1, MAX. VALUES Y,VV,-VW,-UV 4E13.6 RECORD 2, MIN. VALUES Y,VV,-VW,-UV 4I6 RECORDS 3-16, NORMALIZED VALUES (IV) I=4.0, K= 0.0, XL=8.0, YL=2.5, ZL=0.0, ALPHA=0.0, QEQI=1.014 CPE=-0.028, CPW=0.0, BW=90, CF=0.0068, TW=1.0 11 47 Y,U,W 3E13.6 RECORD 1, MAX. VALUES Y,U,W 3E13.6 RECORD 2, MIN. VALUES Y,U,W 3I6 RECORDS 3-47, NORMALIZED VALUES 12 15 Y,UU,WW,-WU 4E13.6 RECORD 1, MAX. VALUES Y,UU,WW,-WU 4E13.6 RECORD 2, MIN. VALUES Y,UU,WW,-WU 4I6 RECORDS 3-15, NORMALIZED VALUES 13 16 Y,VV,-VW,-UV 4E13.6 RECORD 1, MAX. VALUES Y,VV,-VW,-UV 4E13.6 RECORD 2, MIN. VALUES Y,VV,-VW,-UV 4I6 RECORDS 3-16, NORMALIZED VALUES (V) I=5.0, K= 0.0, XL=13.0, YL=2.5, ZL=0.0, ALPHA=0.0, QEQI=1.019 CPE=-0.038, CPW=0.0, BW=90, CF=0.007, TW=1.0 14 51 Y,U,W 3E13.6 RECORD 1, MAX. VALUES Y,U,W 3E13.6 RECORD 2, MIN. VALUES Y,U,W 3I6 RECORDS 3-51, NORMALIZED VALUES 15 15 Y,UU,WW,-WU 4E13.6 RECORD 1, MAX. VALUES Y,UU,WW,-WU 4E13.6 RECORD 2, MIN. VALUES Y,UU,WW,-WU 4I6 RECORDS 3-15, NORMALIZED VALUES 16 16 Y,VV,-VW,-UV 4E13.6 RECORD 1, MAX. VALUES Y,VV,-VW,-UV 4E13.6 RECORD 2, MIN. VALUES Y,VV,-VW,-UV 4I6 RECORDS 3-16, NORMALIZED VALUES (VI) I=6.0, K= 0.0, XL=18.0, YL=2.5, ZL=0.0, ALPHA=0.0, QEQI=1.024 CPE=-0.048, CPW=0.0, BW=90, CF=0.0065, TW=1.0 17 51 Y,U,W 3E13.6 RECORD 1, MAX. VALUES Y,U,W 3E13.6 RECORD 2, MIN. VALUES Y,U,W 3I6 RECORDS 3-51, NORMALIZED VALUES 18 15 Y,UU,WW,-WU 4E13.6 RECORD 1, MAX. VALUES Y,UU,WW,-WU 4E13.6 RECORD 2, MIN. VALUES Y,UU,WW,-WU 4I6 RECORDS 3-15, NORMALIZED VALUES 19 16 Y,VV,-VW,-UV 4E13.6 RECORD 1, MAX. VALUES Y,VV,-VW,-UV 4E13.6 RECORD 2, MIN. VALUES Y,VV,-VW,-UV 4I6 RECORDS 3-16, NORMALIZED VALUES (VII) I=7.0, K= 0.0, XL=23.0, YL=2.5, ZL=0.0, ALPHA=0.0, QEQI=1.029 CPE=-0.057, CPW=0.0, BW=90, CF=0.0061, TW=1.0 20 47 Y,U,W 3E13.6 RECORD 1, MAX. VALUES Y,U,W 3E13.6 RECORD 2, MIN. VALUES Y,U,W 3I6 RECORDS 3-47, NORMALIZED VALUES 21 15 Y,UU,WW,-WU 4E13.6 RECORD 1, MAX. VALUES Y,UU,WW,-WU 4E13.6 RECORD 2, MIN. VALUES Y,UU,WW,-WU 4I6 RECORDS 3-15, NORMALIZED VALUES 22 15 Y,VV,-VW,-UV 4E13.6 RECORD 1, MAX. VALUES Y,VV,-VW,-UV 4E13.6 RECORD 2, MIN. VALUES Y,VV,-VW,-UV 4I6 RECORDS 3-15, NORMALIZED VALUES A SAMPLE PROGRAM FOR READING FILE 2 AND PRINTING IT IS SHOWN BELOW. THE JCL IS FOR THE STANFORD CIT FACILITY. CHECK WITH YOUR OWN COMPUTER FACILITY FOR THE EXACT JCL NEEDED. //TAPE JOB BRC$NJ /*SETUP TAPE=1,INPUT=(LIBRARY NUMBER ASSIGNED TO TAPE) // EXEC FORTCG //FORT.SYSIN DD * C TO READ FILE 2 FROM TAPE AND PRINT THE C MAXIMAS AND MINIMAS FOR ALL THE VARIABLES AND C PRINT THE NORMALIZED VALUES OF ALL THE VARIABLES. REAL Y(100), U(100) READ (23,30) YMAX, UMAX READ (23,30) YMIN, UMIN C SET N = THE NUMBER OF RECORDS IN THE FILE MINUS 2 N = 57 - 2 DO 10 I = 1,N 10 READ (23,40) Y(I), U(I) WRITE (6,50) YMAX, UMAX WRITE (6,50) YMIN, UMIN DO 20 I = 1,N 20 WRITE (6,60) Y(I), U(I) 30 FORMAT(2E13.6) 40 FORMAT(2I6) 50 FORMAT(2E13.6) 60 FORMAT(2F13.6) STOP END //GO.FT23F001 DD UNIT=T1600,VOL=SER=(TAPE LIBRARY NUMBER) // DISP=(OLD,KEEP),DCB=(RECFM=FB,LREC=80,BLKSIZE=8000,DEN=3), // LABEL=(2,NL) // -------------- END OF FILE NUMBER 246------------- ----------------- FILE NUMBER 247----------------- 0.140000E 01 0.100000E 01 0.150000E-01 0.436000E 00 0 0 7 496 14 869 22 1348 29 1755 36 2039 51 2500 65 2819 79 3085 94 3245 108 3457 123 3546 144 3741 181 3954 217 4184 253 4362 289 4557 325 4752 361 4840 397 5018 433 5124 469 5230 505 5337 542 5479 614 5656 686 5887 758 6046 830 6259 903 6418 975 6596 1047 6649 1119 6826 1227 7039 1336 7270 1480 7571 1625 7748 1805 8050 1986 8333 2202 8582 2419 8848 2671 9096 2924 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