SDUS35 KGGW 180308 NVWGGW 0M-p)mN_ P0(KM,(M-p J< ( 244 55''5665EE5TT5cc5qq555555555555##5225AA5PP5__5nn5||55555 ZZZ@@gg  TIMEALT KFT  0308 0303 0257 Y0251 20245  0239 0233 0226 0220 s0214 L0208 3 4 5 6 7x 8j 9[10L11=12.131415161718192022232425|26m27_28P30A35240#4550  ! ' )  | n _  P  A 2% #- 8 B B B D D J    %  | n _ P  A " 2) #0 9 = B D C E G    8 ?   | n _% P% A  2( #0 5 < B F E F G I K N W g' g8 g" g& g" g| gn  g_  gP gA" g2* g#/ g7 g= gB gB gA gB gG gK gM gM gL @% @' @' @' @ @| @n @_ @P @A& @2) @#1 @: @? @A @? @B @@ @H @J @N @K @A ) . / % & | n _ P " A 2' #- 4 : = = > B I L M M E qH 5 1 - * " | n4 _  P  A" 2( #, 6 : ; = ? H N N O L E q< 1 / , ) % | n _ P A 2 ' #/ 7 : ; : > G N M N K H qP cG / 4 . . * |$ n _ P A 2* #/ 4 5 8 : ; B N L M I H qM 9 5 1 1 1 |* n+ _ P A  2! #0 4 7 : 9 8 9 H N R N M qM Z< Z0 Z0 Z1 Z. Z|7 Zn& Z_ ZP  ZA Z2' Z#, Z3 Z5 Z4 Z9 Z@ ZB ZP ZR ZR ZTNDNDND|NDmND_NDPNDAND2ND#NDNDNDNDND|NDmND_NDPNDAND2ND#NDNDmND_NDPNDAND2ND#NDND`mND`_ND`PND`AND`2ND`#ND`ND9mND9_ND9PND9AND92ND9#ND9ND_NDPNDAND2ND#NDND_NDPNDAND2ND#NDNDPNDAND2ND#NDND_NDPNDAND2ND#NDNDz_NDzPNDzANDz2NDz#NDzNDS|NDSmNDS_NDSPNDSANDS2NDS#NDSNDdmN_ PdKM,(M-p J<P VAD Algorithm Output 05/18/24 03:08 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 027 13.0 -3.0 NA 283 026 4.8 NA 5.67 0.5 P 029 13.7 -3.9 NA 286 028 2.9 NA 5.67 0.9 P 030 13.4 -4.0 NA 286 027 3.0 NA 6.16 0.9 P 034 12.1 -5.6 2.3 295 026 8.3 -0.0724 16.20 0.5 P 040 10.3 -3.6 NA 289 021 4.2 NA 6.24 2.4 P 040 4.2 -4.9 -3.0 319 013 6.2 0.2871 16.20 0.9 P 048 2.1 -5.1 -9.5 338 011 2.1 0.2792 16.20 1.3 P 050 8.8 -4.1 NA 295 019 2.3 NA 9.99 2.4 P 057 4.0 -4.8 -17.0 320 012 1.0 0.2607 16.20 1.8 P 060 8.4 -4.3 NA 297 018 2.8 NA 6.64 5.1 P 067 2.6 -4.5 -26.7 330 010 1.2 0.2868 16.20 2.4 P 070 11.3 -3.0 NA 285 023 2.5 NA 8.45 5.1 P 079 11.4 -2.2 -29.9 281 023 2.1 0.0603 16.20 3.1 P 080 11.0 -0.5 NA 273 021 3.3 NA 8.22 6.4 P VAD Algorithm Output 05/18/24 03:08 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 090 11.1 -0.3 NA 272 022 2.0 NA 12.05 5.1 P 095 7.0 0.6 -41.9 265 014 2.5 0.2198 16.20 4.0 P 100 12.9 0.7 NA 267 025 1.9 NA 11.11 6.4 P 110 14.8 0.7 NA 267 029 2.7 NA 39.25 1.8 P 113 6.7 1.0 -59.0 261 013 3.0 0.2663 16.20 5.1 P 120 14.8 3.3 NA 257 030 2.7 NA 17.39 5.1 P 130 18.7 2.7 NA 262 037 2.9 NA 15.42 6.4 P 135 21.1 3.5 -57.6 261 042 2.8 -0.0830 16.20 6.4 P 140 22.6 4.4 NA 259 045 2.7 NA 16.84 6.4 P 150 27.2 10.0 NA 250 056 2.6 NA 18.27 6.4 P 160 29.6 16.7 NA 241 066 2.6 NA 19.69 6.4 P 170 26.8 21.0 NA 232 066 2.4 NA 21.10 6.4 P 180 23.8 24.3 NA 224 066 3.2 NA 22.51 6.4 P 190 22.2 26.9 NA 220 068 2.3 NA 23.92 6.4 P VAD Algorithm Output 05/18/24 03:08 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 200 22.0 27.2 NA 219 068 3.0 NA 31.29 5.1 P 220 21.5 31.6 NA 214 074 2.6 NA 28.11 6.4 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 3000 4000 5000 6000 7000 8000 2 9000 10000 11000 12000 13000 14000 2 15000 16000 17000 18000 19000 20000 2 22000 23000 24000 25000 26000 27000 2 28000 30000 35000 40000 45000 50000 2 2 OPTIMUM SLANT RANGE 16.2 2 2 2 2 2