SDUS33 KEAX 041001 NVWMCI 0MZ+ KB0P MMZ 8 <  244 55((5885GG5VV5ff5uu555555555555--5<<5LL5[[5jj5zz55555 ZZZ@@gg  TIMEALT KFT  1001 0955 0949 Y0943 20937  0931 0925 0919 0913 s0907 L0901 2 3 4 5 6v 7f 8W 9H10811)1213 14151617181920222425q26b28R30C35440$4550 * & # z$ j  [  L  <# -  "   % ! " # % ) * , , u0 f5 V8 G4 8* * ) % z( j* [' L' <& -! % % $ $ ' # % # ' ' + u- f2 V6 G5 84  & + * ) z) j* [, L, <) -" ( ' & "  $    ) & ( u) f1 V5 G5 85 g  g' g+ g' g, gz+ gj+ g[, gL( g<' g-% g+ g$ g g g g g g g' g* g* gu, gf, gV1 gG7 g89 @# @, @) @& @) @z+ @j+ @[) @L  @<& @-  @" @$ @! @$ @  @ @ @ @' @, @- @u. @f+ @V- @G7 @8H " - * + ' z) j, [( L  <" -& ! %         ' , . u/ f- V. G: 8N $ , ( ) ( z) j* [) L# <" -* "  !        ) . / u/ f. V0 G: 8G ' + ) ( ( z) j+ [) L <$ -  $   ! &    " ' . 0 u0 f. V- G9 8@ & , ( ' * z( j+ [) L! <# -  ! !   ) "  ! ! ) - / u/ f+ V- G8 8? ) * ( ' ) z( j+ [, L& < -' #  " ! (  # & ( . . u- f) V- G7 85 Z) Z* Z( Z' Z( Zz( Zj+ Z[+ ZL% Z<' Z- Z# Z( Z Z Z' Z. Z* Z/ Z- Zu- Zf) ZV- ZG< Z89NDND$NDNDNDND$NDND$NDND`$ND`ND9$ND9ND$NDND$NDND$NDND$NDNDz$NDzNDSNDS NDS$NDSND2d* KBdP MMZ 8 <P VAD Algorithm Output 05/04/24 10:01 P ALT U V W DIR SPD RMS DIV SRNG ELEV P 100ft m/s m/s cm/s deg kts kts E-3/s nm deg P 040 15.4 15.2 NA 226 042 9.1 NA 7.32 3.7 P 050 14.1 13.9 NA 225 038 8.7 NA 9.79 3.7 P 060 14.5 10.4 NA 234 035 7.7 NA 12.24 3.7 P 070 13.7 12.4 NA 228 036 4.0 NA 6.62 8.4 P 076 14.2 10.3 13.6 234 034 9.5 -0.0689 16.20 3.7 P 080 10.7 12.3 NA 221 032 6.1 NA 11.49 5.6 P 090 8.7 14.2 NA 211 032 5.1 NA 13.13 5.6 P 100 7.7 14.4 NA 208 032 4.8 NA 14.76 5.6 P 109 3.4 12.3 24.2 195 025 6.8 -0.0939 16.20 5.6 P 110 8.6 16.1 NA 208 035 3.8 NA 8.35 11.2 P 120 5.9 15.3 NA 201 032 4.5 NA 18.00 5.6 P 130 2.9 17.0 NA 190 034 5.3 NA 13.27 8.4 P 140 4.4 15.9 NA 195 032 3.9 NA 6.17 20.1 P 150 7.4 17.7 NA 203 037 5.2 NA 15.47 8.4 P VAD Algorithm Output 05/04/24 10:01 P ALT U V W DIR SPD RMS DIV SRNG ELEV P 100ft m/s m/s cm/s deg kts kts E-3/s nm deg P 156 10.7 19.2 -30.2 209 043 4.8 0.4034 16.20 8.4 P 160 5.3 15.9 NA 199 033 4.0 NA 24.41 5.6 P 170 6.1 16.3 NA 201 034 2.8 NA 26.00 5.6 P 180 7.1 16.5 NA 203 035 3.9 NA 27.58 5.6 P 190 8.1 17.1 NA 205 037 3.4 NA 29.16 5.6 P 200 11.2 17.9 NA 212 041 4.5 NA 15.87 11.2 P 203 9.3 17.1 -53.4 208 038 5.0 0.1319 16.20 11.2 P 220 9.3 19.7 NA 205 042 4.1 NA 23.12 8.4 P 240 12.6 19.1 NA 213 044 4.9 NA 19.18 11.2 P 250 14.4 17.3 NA 220 044 6.8 NA 20.01 11.2 P 260 16.4 18.4 NA 222 048 6.6 NA 20.84 11.2 P 267 17.7 17.1 -119.4 226 048 8.6 0.2875 16.20 15.0 P 280 20.9 17.3 NA 230 053 7.1 NA 16.98 15.0 P 300 22.8 17.4 NA 233 056 6.6 NA 18.23 15.0 P VAD Algorithm Output 05/04/24 10:01 P ALT U V W DIR SPD RMS DIV SRNG ELEV P 100ft m/s m/s cm/s deg kts kts E-3/s nm deg P 350 21.9 15.0 NA 236 052 7.3 NA 16.15 20.1 P 351 22.0 15.0 -243.5 236 052 7.3 0.3695 16.20 20.1 P 076 11.5 13.0 -67.0 222 034 7.2 -0.0428 16.20 3.7 P 109 4.7 13.8 -70.1 199 028 6.4 -0.0380 16.20 5.6 P 156 6.7 16.4 -111.8 202 034 4.8 0.2141 16.20 8.4 P 203 9.0 17.2 -143.3 208 038 6.5 0.1002 16.20 11.2 P 267 17.6 17.1 -212.2 226 048 8.9 0.1977 16.20 15.0 P 351 22.8 15.4 -368.0 236 053 7.4 0.3852 16.20 20.1 P 400 11.1 18.6 NA 211 042 5.5 NA 24.46 15.0 2 ADAPTABLE PARAMETERS - WIND PROFILE 2 2 2 VAD ANALYSIS SLANT RANGE 16.2 NMI 2 2 BEGINNING AZIMUTH ANGLE 0.0 DEGREE 2 2 ENDING AZIMUTH ANGLE 0.0 DEGREE 2 2 NUMBER OF PASSES 2 2 2 RMS THRESHOLD 9.7 KNOTS 2 2 SYMMETRY THRESHOLD 13.6 KNOTS 2 2 DATA POINTS THRESHOLD 25 2 2 2 2 2 2 ALTITUDES SELECTED 2 2000 3000 4000 5000 6000 7000 2 8000 9000 10000 11000 12000 13000 2 14000 15000 16000 17000 18000 19000 2 20000 22000 24000 25000 26000 28000 2 30000 35000 40000 45000 50000 -666 2 2 OPTIMUM SLANT RANGE 16.2 2 2 2 2 2