SDUS31 KBGM 080959 NVWBGM 0M^,|?/0JMgM] P < p 244 55''5665EE5TT5cc5qq555555555555##5225AA5PP5__5nn5||55555 ZZZ@@gg  TIMEALT KFT  0959 0954 0950 Y0946 20942  0937 0933 0928 0923 s0918 L0914 2 3 4 5 6x 7j 8[ 9L10=11.121314151617181920212224|25m26_28P30A35240#4550  " ) , . |, n* _* P& A% 2# # " !    % & , ) 8 3 : 3 7 q 3 c9 T P  # ) - . |- n+ _* P' A$ 2# # # $    $ ' ' ( + 1 2 5 4 qO cQ T <  # * , . |- n, _+ P( A% 2$ # #  $ "  &  ( * % - 4 4 4  4 q ; cM TO g g# g+ g. g/ g|. gn- g_+ gP( gA& g2$ g## g # g  g& g, g ( g, g/ g/ g1 g 4 g6 gqG gcM gTT gEE @ @" @) @. @/ @|/ @n. @_+ @P( @A& @2% @## @% @ ! @% @ * @* @- @0 @- @3 @5 @: @q: @cA @TH @EA  ! ) . 0 |. n- _+ P) A& 2$ ## $ %  # + #  * 2 2 3 2  3 q< c A T B E :  " ( . / |/ n/ _* P) A' 2% ## ( % " (  + ( - / $  5 9 q : c< TD E=  ' + - / |/ n- _* P) A' 2$ #$ # $ % ' + ( ( / -  .  5 q9 c ; TA E?  # ( - 0 |/ n- _+ P' A% 2" #" " $ & ( ( ) ) 4  .  . 8 q? c < T< EK  " ) - , |+ n+ _( P& A& 2" #  # % $ ( (  (  )  .  -  3  5 q 9 c = T > EH Z Z" Z( Z+ Z) Z|* Zn* Z_+ ZP% ZA# Z2% Z#$ Z$ Z% Z# Z' Z) Z+ Z. Z / Z 3 Z 5 Z 7 Zq 9 Zc < ZT ; ZEPAND2ND#NDNDAND2ND#NDNDAND2ND#NDND`2ND`#ND`ND92ND9#ND9ND2ND#NDND2ND#NDND2ND#NDND2ND#NDNDz2NDz#NDzNDS2NDS#NDSNDd|?/dJMgM] P <P VAD Algorithm Output 05/08/24 09:59 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 020 5.0 10.0 NA 206 022 4.7 NA 5.67 0.5 P 020 4.9 10.1 NA 206 022 4.3 NA 5.23 0.5 P 023 7.5 12.0 NA 212 027 4.3 NA 5.67 0.9 P 026 12.0 11.0 2.3 227 032 5.8 -0.0812 16.20 0.5 P 030 12.7 12.1 NA 226 034 3.4 NA 12.41 0.9 P 034 15.6 11.3 3.6 234 037 4.6 -0.0540 16.20 0.9 P 040 18.5 9.7 NA 242 041 4.9 NA 15.41 1.3 P 042 19.7 9.6 4.3 244 043 6.0 -0.0248 16.20 1.3 P 049 21.5 6.8 4.5 252 044 3.1 -0.0038 16.20 1.8 P 050 21.5 6.8 NA 252 044 3.1 NA 16.26 1.8 P 060 23.0 4.2 NA 260 046 2.1 NA 16.14 2.4 P 060 23.0 3.9 5.3 260 045 2.3 -0.0187 16.20 2.4 P 070 22.3 3.4 NA 261 044 2.2 NA 15.58 3.1 P 072 22.7 3.0 5.5 263 044 2.4 -0.0031 16.20 3.1 P VAD Algorithm Output 05/08/24 09:59 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 080 21.3 3.5 NA 261 042 2.5 NA 14.50 4.0 P 087 21.6 3.2 5.6 262 042 2.5 0.0055 16.20 4.0 P 090 21.4 3.0 NA 262 042 2.7 NA 16.73 4.0 P 100 19.3 2.2 NA 264 038 2.7 NA 15.05 5.1 P 106 19.3 1.9 5.3 264 038 2.3 0.0105 16.20 5.1 P 110 19.0 1.9 NA 264 037 2.4 NA 16.83 5.1 P 120 18.0 2.0 NA 264 035 1.7 NA 18.60 5.1 P 128 17.6 1.5 5.6 265 034 2.1 0.0008 16.20 6.4 P 130 17.4 1.5 NA 265 034 2.2 NA 16.39 6.4 P 140 16.6 2.4 NA 262 033 2.3 NA 17.81 6.4 P 150 16.2 0.7 NA 267 032 3.4 NA 15.52 8.0 P 155 19.8 1.0 0.8 267 038 2.6 0.0652 16.20 8.0 P 160 19.2 1.0 NA 267 037 3.4 NA 16.67 8.0 P 170 19.3 4.3 NA 258 038 4.1 NA 52.28 2.4 P VAD Algorithm Output 05/08/24 09:59 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 180 22.2 5.2 NA 257 044 4.5 NA 36.19 4.0 P 190 20.5 4.3 NA 258 041 4.3 NA 47.61 3.1 P 200 27.5 8.0 NA 254 056 3.2 NA 32.45 5.1 P 210 25.6 5.2 NA 259 051 3.5 NA 34.15 5.1 P 220 29.7 4.4 NA 262 058 3.4 NA 55.04 3.1 P 240 25.7 4.3 NA 260 051 3.8 NA 39.20 5.1 P 250 28.3 -2.3 NA 275 055 3.1 NA 26.92 8.0 P 260 26.4 1.1 NA 268 051 5.0 NA 42.54 5.1 P 280 29.4 0.1 NA 270 057 3.1 NA 37.33 6.4 P 300 41.2 1.0 NA 269 080 5.0 NA 32.55 8.0 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 21000 22000 24000 25000 26000 2 28000 30000 35000 40000 45000 50000 2 2 OPTIMUM SLANT RANGE 16.2 2 2 2 2 2