LOADRDI: Loading data loading down-data ../dn/wh_dn000.000 read 2190 ensemble and 20 bins using RDI bottom track removed 28904 values because of low percent good loading up-data ../up/wh_up000.000 read 2197 ensemble and 20 bins removed 28757 values because of low percent good WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING loadrdi: warning mean ping rate not equal between both instruments mean down ping rate :3.5 mean up ping rate :3.7343 loadrdi: warning instruments have no fixed ping rate down dt for common ping number:2.1156 up dt :2.1418 hours up instrument is different by 0 ensembles WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING shifted timeseries by lag: -2 correlation: 0.89089 shift ADCP timeseries by -2 ensembles number of joint ensembles is : 2175 found 1 bad bottom error velocities and discarded them removed 149 values because of high error velocity removed 0 bottom values because of high error velocity extracting 1933 ensembles as profile removed 0 profiles due to larger tilt than 22 removed 0 profiles due to larger tilt difference than 4 multiply weight of bin 1 by 0.5 Outlier discarded 921 bins down looking Outlier discarded 1112 bins up looking ==> load data took 27 seconds LOADCTD: load CTD time series e:\cbl\ladcp\ctd4ladcp\lctd023.01 number of CTD scans: 13933 delta t : 0.86397 seconds max CTD pressure 2322 at 30-Aug-2002 08:45:14 max LADCP depth 2330 at 30-Aug-2002 08:44:51 Changed Start Time : 30-Aug-2002 08:03:16 to 30-Aug-2002 08:04:15 Changed End Time : 30-Aug-2002 09:55:58 to 30-Aug-2002 09:54:16 CTD max depth : 2285 best lag : 4 pings ~ 14 seconds GETDEPTH: Integrating depth from vertical velocity starting run 1 to find bottom depth make soundspeed based on pressure and ADCP temp start depth correction from surface return: -5 end depth correction from surface return: -3 last depth from int W is :-28.7294 should be :0 maximum depth from int W is :2328.3838 should be :2284.7576 LADCP minus CTD depth mean: 0.145 std: 9.7566 bottom found at 2295 +/- 2 m starting run 2 to find bottom depth start depth correction from surface return: -3 end depth correction from surface return: 3 last depth from int W is :-28.7294 should be :0 maximum depth from int W is :2285.1941 should be :2284.7576 LADCP minus CTD depth mean: 0.53673 std: 1.707 bottom found at 2294 +/- 1 m removing 705 values below recognized bottom make soundspeed based on pressure and ADCP temp correct velocities for sound speed ==> get depth took 207 seconds PREPINV: prepare data for inversion, form Super-Ensembles average profiles over (p.avdz) 20 meter discarded 1627 bottom tracks velocities because of dist > 300 mean compass offset is -86.7208 deg will not correct for sound speed twice remove reference velocity and average ensembles Outlier discarded 131 bins down looking Outlier discarded 181 bins up looking reduced ensemble size is 215 GETINV: compute best velocity profile vertical resolution (ps.dz) is 20 [m] smooth Ocean velocity profile found 1 ill constrained elements smooth CTD velocity profile bottom inversion weight for bottom track is (ps.botfac) 1 add barotropic constrain ready for inversion length of d : 3498 (CTD vel) length of A1:215 (ocean vel) length of A2:114 Cholesky transform give low weight to 1% of data scan#:1 ==> prep inversion took 15 seconds GETINV: compute best velocity profile vertical resolution (ps.dz) is 20 [m] smooth Ocean velocity profile found 2 ill constrained elements smooth CTD velocity profile found 1 ill constrained elements bottom inversion weight for bottom track is (ps.botfac) 1 add barotropic constrain ready for inversion length of d : 3466 (CTD vel) length of A1:215 (ocean vel) length of A2:114 Moore-Penrose inverse solve only down trace smooth Ocean velocity profile found 2 ill constrained elements smooth CTD velocity profile Cholesky transform solve only up trace smooth Ocean velocity profile found 2 ill constrained elements smooth CTD velocity profile found 1 ill constrained elements Cholesky transform ==> inversion took 4 seconds GETSHEAR2: average shear profile over (ps.dz) 20 [m] maximum std (stdf) 2 of data minimum weight 0.6 of data increased error because of shear - inverse difference save results install NETCDF libary to get the netcdf LADC archive output LOADRDI: Loading data loading down-data ../dn/wh_dn000.000 read 2190 ensemble and 20 bins using RDI bottom track removed 28904 values because of low percent good loading up-data ../up/wh_up000.000 read 2197 ensemble and 20 bins removed 28757 values because of low percent good WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING loadrdi: warning mean ping rate not equal between both instruments mean down ping rate :3.5 mean up ping rate :3.7343 loadrdi: warning instruments have no fixed ping rate down dt for common ping number:2.1156 up dt :2.1418 hours up instrument is different by 0 ensembles WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING shifted timeseries by lag: -2 correlation: 0.89089 shift ADCP timeseries by -2 ensembles number of joint ensembles is : 2175 found 1 bad bottom error velocities and discarded them removed 149 values because of high error velocity removed 0 bottom values because of high error velocity extracting 1933 ensembles as profile removed 0 profiles due to larger tilt than 22 removed 0 profiles due to larger tilt difference than 4 multiply weight of bin 1 by 0.5 Outlier discarded 921 bins down looking Outlier discarded 1112 bins up looking ==> load data took 27 seconds LOADCTD: load CTD time series e:\cbl\ladcp\ctd4ladcp\lctd023.01 Warning: COLON arguments must be real scalars. > In e:\matlab\wh\m\loadctdcbl.m at line 32 In e:\matlab\wh\m\laproccbl.m at line 37 In e:\cbl\ladcp\cb23\pro\cb23ctd.m at line 95 number of CTD scans: 13933 delta t : 0.86397 seconds max CTD pressure 2322 at 30-Aug-2002 08:45:14 max LADCP depth 2330 at 30-Aug-2002 08:44:51 Changed Start Time : 30-Aug-2002 08:03:16 to 30-Aug-2002 08:04:15 Changed End Time : 30-Aug-2002 09:55:58 to 30-Aug-2002 09:54:16 CTD max depth : 2285 best lag : 4 pings ~ 14 seconds GETDEPTH: Integrating depth from vertical velocity starting run 1 to find bottom depth make soundspeed based on pressure and ADCP temp start depth correction from surface return: -5 end depth correction from surface return: -3 last depth from int W is :-28.7294 should be :0 maximum depth from int W is :2328.3838 should be :2284.7576 LADCP minus CTD depth mean: 0.145 std: 9.7566 bottom found at 2295 +/- 2 m starting run 2 to find bottom depth start depth correction from surface return: -3 end depth correction from surface return: 3 last depth from int W is :-28.7294 should be :0 maximum depth from int W is :2285.1941 should be :2284.7576 LADCP minus CTD depth mean: 0.53673 std: 1.707 bottom found at 2294 +/- 1 m removing 705 values below recognized bottom make soundspeed based on pressure and ADCP temp correct velocities for sound speed ==> get depth took 209 seconds PREPINV: prepare data for inversion, form Super-Ensembles average profiles over (p.avdz) 20 meter discarded 1627 bottom tracks velocities because of dist > 300 mean compass offset is -86.7208 deg will not correct for sound speed twice remove reference velocity and average ensembles Outlier discarded 131 bins down looking Outlier discarded 181 bins up looking reduced ensemble size is 215 GETINV: compute best velocity profile vertical resolution (ps.dz) is 20 [m] smooth Ocean velocity profile found 1 ill constrained elements smooth CTD velocity profile bottom inversion weight for bottom track is (ps.botfac) 1 add barotropic constrain ready for inversion length of d : 3498 (CTD vel) length of A1:215 (ocean vel) length of A2:114 Cholesky transform give low weight to 1% of data scan#:1 ==> prep inversion took 14 seconds GETINV: compute best velocity profile vertical resolution (ps.dz) is 20 [m] smooth Ocean velocity profile found 2 ill constrained elements smooth CTD velocity profile found 1 ill constrained elements bottom inversion weight for bottom track is (ps.botfac) 1 add barotropic constrain ready for inversion length of d : 3466 (CTD vel) length of A1:215 (ocean vel) length of A2:114 Moore-Penrose inverse solve only down trace smooth Ocean velocity profile found 2 ill constrained elements smooth CTD velocity profile Cholesky transform solve only up trace smooth Ocean velocity profile found 2 ill constrained elements smooth CTD velocity profile found 1 ill constrained elements Cholesky transform ==> inversion took 4 seconds GETSHEAR2: average shear profile over (ps.dz) 20 [m] maximum std (stdf) 2 of data minimum weight 0.6 of data increased error because of shear - inverse difference save results install NETCDF libary to get the netcdf LADC archive output