SDUS38 PAFC 010427 NVWODN 0Ls@&f0p@Ls>Ls@ l:l<  244 55''5665EE5TT5cc5qq555555555555##5225AA5PP5__5nn5||55555 ZZZ@@gg  TIMEALT KFT  0427 0421 0415 Y0408 20402  0355 0348 0342 0335 s0329 L0322 1 2 3 4 5x 6j 7[ 8L 9=10.111213141516171819202224|25m26_28P30A35240#4550 CD GJ JK ML |QU nOR _LE PKE APA 2R@ #EH M@ J= Fg S9 @d :l C! B> GK HK LL |IF nJG _HA PLA AM@ 2NA #G3 SA G7 <a @2 @7 @M @N @9 GH HJ IL |JJ nKG _IF PI> AC3 2A5 #D6 G; J; J; @5 >: A> @? >9 :w T6t g66 g@? gCE gFL gJK g|MH gnKC g_KA gPG: gAJ; g2E= g#H= gF@ g@8 gA8 gB> gB< gAA gCI gA: g:p gW gc9{ gT:x gE:a @76 @;B @BC @FH @HI @|JH @nG@ @_G> @PH? @AF< @2G> @#H? @D< @D> @C= @C? @A= @Q! @Q @<u @/ @q<n @E>_ @6EC ;? @E DF GF |GF nJE _IA PG@ AG= 2F@ #J= GB E@ E< E< D> D8 G2 ?r  q=| :. ;? @E EH CF |FE nID _LE PKA AIB 2LC #Q> RJ J> A; F@ ID KH MI  @d <h  6<G ;@ @G DI GG |IG nKE _LE PLC AMC 2K> #Q= L> N? B> D? IF C? 9E E^ := AF EH GH |JI nKF _PD PLD AQ@ 2JA #R? I> H< E: A? ;F =C ;@ S. HP 50 ;? ?C DG FI |IG nJF _KD PID AHD 2LC #J@ N> G; CB <1 L3 7B V, KC  qD= Z;A Z@C ZCK ZGH Z|FF ZnJF Z_KB ZPME ZAJB Z2FC Z#KA ZF8 ZH> Z=: Z=C Z<D ZC5 Z@< Z<< ZIZ ZNDNDNDNDND|NDmND_NDPNDAND2ND#NDNDNDNDND|NDmND_NDPNDAND2ND#NDNDNDND|NDmND_NDAND2ND#NDND`ND`mND`2ND`#ND`ND9ND9ND9_ND9PND9#ND9NDNDNDND_NDPNDAND2ND#NDNDmND_NDPNDAND#NDNDNDNDND|NDmND_NDPNDAND2ND#NDNDNDND|NDmND_NDPNDAND2ND#NDNDzNDzNDz_NDzPNDzANDz2NDz#NDzNDSNDSNDSmNDS_NDSPNDSANDS2NDS#NDSNDbdZfdp@Ls>Ls@ l:l<P VAD Algorithm Output 08/01/23 04:27 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 007 -6.3 -3.0 NA 065 014 9.1 NA 5.67 0.5 P 014 -22.0 -13.5 -6.5 058 050 8.7 0.2255 16.20 0.5 P 020 -31.9 -13.8 NA 067 068 5.9 NA 10.89 1.3 P 028 -34.1 -12.0 -7.3 071 070 5.8 0.0113 16.20 1.3 P 030 -36.1 -12.7 NA 071 074 7.1 NA 6.04 4.0 P 036 -37.7 -11.1 -7.3 074 076 6.5 -0.0085 16.20 1.8 P 040 -37.1 -10.6 NA 074 075 5.6 NA 17.61 1.8 P 047 -40.1 -9.7 -10.4 076 080 4.1 0.0900 16.20 2.4 P 050 -38.3 -8.7 NA 077 076 6.4 NA 17.18 2.4 P 059 -42.5 -6.4 -17.2 081 084 6.0 0.1770 16.20 3.1 P 060 -43.1 -6.6 NA 081 085 4.8 NA 16.41 3.1 P 070 -41.3 -8.2 NA 079 082 7.4 NA 15.15 4.0 P 074 -39.7 -7.9 -27.7 079 079 3.5 0.2096 16.20 4.0 P 080 -34.6 -8.9 NA 076 069 6.6 NA 27.63 2.4 P VAD Algorithm Output 08/01/23 04:27 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 -34.0 -9.4 NA 075 069 5.3 NA 24.77 3.1 P 093 -32.2 -8.0 -31.7 076 064 3.5 0.0427 16.20 5.1 P 100 -32.7 -6.0 NA 080 065 8.8 NA 34.31 2.4 P 110 -32.8 -4.5 NA 082 064 4.1 NA 23.99 4.0 P 120 -34.7 -13.6 NA 069 072 9.1 NA 32.87 3.1 P 130 -32.2 -7.6 NA 077 064 4.3 NA 28.32 4.0 P 140 -30.3 -8.7 NA 074 061 5.9 NA 30.46 4.0 P 150 -49.7 -17.7 NA 070 103 4.5 NA 40.71 3.1 P 160 -29.0 -3.4 NA 083 057 3.4 NA 34.70 4.0 P 170 -46.3 -22.6 NA 064 100 2.8 NA 45.82 3.1 P 190 -46.8 -29.7 NA 058 108 4.1 NA 50.83 3.1 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