SDUS31 KLWX 240730 NVWDCA 0M~k ) g^Y0Z CM~iM~k  A < XH 244 55''5665EE5TT5cc5qq555555555555##5225AA5PP5__5nn5||55555 ZZZ@@gg  TIMEALT KFT  0730 0724 0718 Y0712 20706  0700 0654 0648 0642 s0636 L0630 1 2 3 4 5x 6j 7[ 8L 9=10.111213141516171819202224|25m26_28P30A35240#4550   % & ! ! |  n _ P  A  2 # & + /  0 / 1 5 8 < > ? A qA   % ' # " |  n _ P A 2  # %  * /  0 / / 3 9 < > ? ? q> c= ! ' ' # " | n _ P  A  2  # &  *  .  0 / / 3 7 < = ? @ q@ c> g" g( g( g# g# g| gn g_ gP gA g2  g#& g * g . g0 g/ g/ g4 g7 g; g= g> g> gq? @# @( @) @ $ @# @| @n @_  @P  @A  @2" @#+ @ * @ - @0 @/ @/ @3 @7 @: @= @? @? @q< @cB # ) *  % $ | n  _ P A 2# #&  ) . 0 0 0 3 6 ; = @ = q= c> # * *  & $ | n _  P A  2$ #&  ( , 0 / 0 4 7 : = ? ? q> c> T4 " ) +  ' $ |  n _ P A  2$ #(  ) + 1 0 1 4 7 : > ? ? q< c> T; # * ,  ( % |! n _ P  A  2# #)  ) + / 0 2 6 8 : = @ ? q= $ + ,  ( % |! n _ P A" 2& # ) * * / 0 3 7 8 : = A ? q< c: Z$ Z+ Z. Z ( Z% Z|" Zn  Z_ ZP ZA% Z2% Z# ) Z * Z* Z. Z2 Z4 Z6 Z9 Z: Z= Z? Z= Zq< Zc=_NDPNDAND2ND#NDNDPNDAND2ND#NDNDPNDAND2ND#NDND`_ND`PND`AND`2ND`#ND`ND9PND9AND92ND9#ND9NDPNDAND2ND#NDNDAND2ND#NDNDAND2ND#NDND_NDPNDAND2ND#NDNDzPNDzANDz2NDz#NDzNDSPNDSANDS2NDS#NDSNDd g^YdZCM~iM~k  A <P VAD Algorithm Output 04/24/24 07:30 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 005 -0.9 31.0 NA 178 060 5.0 NA 5.67 0.3 P 010 5.4 15.0 -0.8 200 031 4.5 0.0404 16.20 0.3 P 010 3.2 16.2 NA 191 032 3.5 NA 5.93 1.0 P 020 13.7 13.2 NA 226 037 3.7 NA 5.91 2.6 P 022 17.3 12.1 -5.2 235 041 4.0 0.1182 16.20 1.0 P 030 18.5 6.2 NA 252 038 2.7 NA 9.40 2.6 P 040 17.0 -0.3 NA 271 033 2.6 NA 5.72 6.0 P 050 14.8 -0.9 -5.2 273 029 3.0 -0.0049 16.20 2.6 P 050 16.2 -4.5 NA 286 033 2.8 NA 7.27 6.0 P 060 13.2 0.6 NA 267 026 2.0 NA 19.51 2.6 P 070 12.1 1.6 NA 262 024 2.1 NA 22.77 2.6 P 080 12.6 2.1 NA 260 025 2.2 NA 25.98 2.6 P 090 13.4 1.0 NA 266 026 2.3 NA 29.15 2.6 P 100 13.9 0.4 NA 268 027 1.5 NA 6.12 15.0 P VAD Algorithm Output 04/24/24 07:30 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 108 16.0 -1.4 -20.2 275 031 1.9 0.0805 16.20 6.0 P 110 15.9 -0.7 NA 273 031 1.7 NA 10.03 10.0 P 120 19.3 1.5 NA 266 038 1.6 NA 10.96 10.0 P 130 22.0 0.0 NA 270 043 2.2 NA 8.02 15.0 P 140 24.2 -1.4 NA 273 047 2.5 NA 12.83 10.0 P 150 24.5 0.6 NA 269 048 1.9 NA 13.76 10.0 P 160 23.7 5.0 NA 258 047 1.8 NA 14.69 10.0 P 170 23.9 8.1 NA 251 049 1.7 NA 10.54 15.0 P 176 24.7 8.6 -26.4 251 051 1.9 0.0091 16.20 10.0 P 180 25.4 9.4 NA 250 053 1.5 NA 16.54 10.0 P 190 27.2 9.8 NA 250 056 1.7 NA 7.25 25.0 P 200 29.4 10.0 NA 251 060 1.4 NA 7.64 25.0 P 220 30.0 10.7 NA 250 062 1.0 NA 6.21 35.0 P 240 30.5 11.3 NA 250 063 0.9 NA 6.05 40.0 P VAD Algorithm Output 04/24/24 07:30 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 250 31.1 11.8 NA 249 065 1.3 NA 8.10 30.0 P 260 31.1 11.7 NA 249 065 1.7 NA 7.35 35.0 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 1000 2000 3000 4000 5000 6000 2 7000 8000 9000 10000 11000 12000 2 13000 14000 15000 16000 17000 18000 2 19000 20000 22000 24000 25000 26000 2 28000 30000 35000 40000 45000 50000 2 2 OPTIMUM SLANT RANGE 16.2 2 2 2 2 2