SDUS34 KBMX 101207 NVWMXX 0Mtb003&7MMl J# (< j\L 244 55''5665EE5TT5cc5qq555555555555##5225AA5PP5__5nn5||55555 ZZZ@@gg  TIMEALT KFT  1207 1203 1159 Y1155 21151  1146 1141 1136 1131 s1126 L1120 1 2 3 4 5x 6j 7[ 8L 9=10.111213141516171819202224|25m26_28P30A35240#4550 &  "A q#J  6? > !F q> E7 >D C A !I g% g: gI g R gL gqE gE. @ @/F @"F @D @L @= @F @qC @T 4 @E1 AC5 A: :B J G qA c9 T 8 E5  P: AK! 0H #; N R J H qD c= T@ E2   P/ A@  2B- #, 21 33 -+ #1 + B = P N I qB c< T@ E5    n  _ P8 A5" 2.7 #7/ 7; ;/ =$ 46 // $E 7 7 M K D q< c8 T? E5     |  n$ _  P/* A3- 2)' #8. 4. 3, /6 + +8 (@ ; A P G < q8 c= T ? E4 Z Z Z Z) Z|' Zn% Z_  ZP,, ZA/% Z21$ Z#2- Z01 Z5- Z/2 Z.3 Z*8 Z @ ZA ZC Z= Z1 Z4 Zq4 Zc> ZT > ZE4NDNDNDxNDjND[NDLND=ND.NDNDNDNDNDNDNDNDNDNDNDND_NDPNDAND2ND#NDNDNDNDNDNDxNDjND[NDLND=ND.NDNDNDNDNDNDNDNDND|ND_NDPND2ND#NDNDNDNDNDNDNDxNDjND[NDLND=ND.NDNDNDNDNDNDNDNDNDmND_NDPNDAND2ND#NDND`ND`ND`ND`ND`xND`jND`[ND`LND`=ND`.ND`ND`ND`ND`ND`ND`ND`ND`ND`_ND`PND`2ND`#ND`ND9ND9ND9ND9ND9xND9jND9[ND9LND9=ND9.ND9ND9ND9ND9ND9ND9ND9_ND92ND9#ND9NDNDNDNDNDNDxNDjND[NDLND.NDNDNDNDNDNDNDNDND2ND#NDNDNDNDNDNDxNDjND[ND.NDNDNDNDNDNDND2ND#NDNDNDNDNDxNDjND[NDND2ND#NDNDNDNDxND2ND#NDNDzNDzNDz2NDz#NDzNDSNDS2NDS#NDSND d b0d7MMl J# (<P VAD Algorithm Output 05/10/24 12:07 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 9.6 -4.3 NA 294 021 6.5 NA 5.57 2.4 P 030 10.7 -2.3 NA 282 021 4.6 NA 5.70 4.0 P 250 31.7 -11.3 NA 290 065 1.7 NA 42.78 5.1 P 260 35.4 -13.5 NA 291 074 1.1 NA 36.15 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 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