LOADRDI: Loading data loading down-data ../dn/wh_dn000.000 read 2926 ensemble and 20 bins using RDI bottom track removed 41053 values because of low percent good loading up-data ../up/wh_up000.000 read 3030 ensemble and 20 bins removed 43502 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 :3.6711 loadrdi: warning instruments have no fixed ping rate down dt for common ping number:2.8311 up dt :2.8438 hours up instrument is different by 0 ensembles WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING shifted timeseries by lag: -2 correlation: 0.8814 shift ADCP timeseries by -2 ensembles number of joint ensembles is : 2911 found 2 bad bottom error velocities and discarded them removed 112 values because of high error velocity removed 0 bottom values because of high error velocity extracting 2192 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 935 bins down looking Outlier discarded 1225 bins up looking ==> load data took 45 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: 12 end depth correction from surface return: 2 last depth from int W is :-30.6002 should be :2 maximum depth from int W is :2534.3828 should be :2503.1 bottom found at 2520 +/- 1 m starting run 2 to find bottom depth start depth correction from surface return: -1 end depth correction from surface return: -2 last depth from int W is :-30.6002 should be :2 maximum depth from int W is :2504.6091 should be :2503.1 bottom found at 2520 +/- 1 m removing 1427 values below recognized bottom make soundspeed based on pressure and ADCP temp correct velocities for sound speed remove data at begining and end of cast ==> get depth took 6 seconds PREPINV: prepare data for inversion, form Super-Ensembles average profiles over (p.avdz) 20 meter discarded 1843 bottom tracks velocities because of dist > 300 mean compass offset is -87.0922 deg will not correct for sound speed twice remove reference velocity and average ensembles Outlier discarded 150 bins down looking Outlier discarded 164 bins up looking reduced ensemble size is 232 GETINV: compute best velocity profile vertical resolution (ps.dz) is 20 [m] smooth Ocean velocity profile smooth CTD velocity profile bottom inversion weight for bottom track is (ps.botfac) 1 add barotropic constrain ready for inversion length of d : 3614 (CTD vel) length of A1:232 (ocean vel) length of A2:125 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 : 3581 (CTD vel) length of A1:231 (ocean vel) length of A2:125 Moore-Penrose inverse solve only down trace smooth Ocean velocity profile found 2 ill constrained elements smooth CTD velocity profile found 1 ill constrained elements Cholesky transform solve only up trace smooth Ocean velocity profile found 1 ill constrained elements smooth CTD velocity profile found 1 ill constrained elements Cholesky transform ==> inversion took 5 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 2926 ensemble and 20 bins using RDI bottom track removed 41053 values because of low percent good loading up-data ../up/wh_up000.000 read 3030 ensemble and 20 bins removed 43502 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 :3.6711 loadrdi: warning instruments have no fixed ping rate down dt for common ping number:2.8311 up dt :2.8438 hours up instrument is different by 0 ensembles WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING shifted timeseries by lag: -2 correlation: 0.8814 shift ADCP timeseries by -2 ensembles number of joint ensembles is : 2911 found 2 bad bottom error velocities and discarded them removed 112 values because of high error velocity removed 0 bottom values because of high error velocity extracting 821 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 360 bins down looking Outlier discarded 431 bins up looking ==> load data took 28 seconds GETDEPTH: Integrating depth from vertical velocity starting run 1 to find bottom depth make soundspeed based on pressure and ADCP temp last depth from int W is :2530.7327 should be :2 maximum depth from int W is :116.8581 should be :2503.1 bottom found at 2578 +/- 19 m starting run 2 to find bottom depth last depth from int W is :2530.7327 should be :2 maximum depth from int W is :2462.26 should be :2503.1 bottom found at 2577 +/- 20 m removing 6743 values below recognized bottom make soundspeed based on pressure and ADCP temp correct velocities for sound speed remove data at begining and end of cast ==> get depth took 2 seconds PREPINV: prepare data for inversion, form Super-Ensembles average profiles over (p.avdz) 20 meter discarded 329 bottom tracks velocities because of dist > 300 mean compass offset is -90.5772 deg will not correct for sound speed twice remove reference velocity and average ensembles Outlier discarded 64 bins down looking Outlier discarded 53 bins up looking reduced ensemble size is 156 GETINV: compute best velocity profile vertical resolution (ps.dz) is 20 [m] smooth Ocean velocity profile 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 : 1982 (CTD vel) length of A1:156 (ocean vel) length of A2:127 Cholesky transform give low weight to 1% of data scan#:1 ==> prep inversion took 9 seconds GETINV: compute best velocity profile vertical resolution (ps.dz) is 20 [m] smooth Ocean velocity profile 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 : 1967 (CTD vel) length of A1:156 (ocean vel) length of A2:127 Moore-Penrose inverse solve only down trace smooth Ocean velocity profile smooth CTD velocity profile Cholesky transform solve only up trace smooth Ocean velocity profile found 8 ill constrained elements smooth CTD velocity profile found 1 ill constrained elements Cholesky transform ==> inversion took 2 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 2926 ensemble and 20 bins using RDI bottom track removed 41053 values because of low percent good loading up-data ../up/wh_up000.000 read 3030 ensemble and 20 bins removed 43502 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 :3.6711 loadrdi: warning instruments have no fixed ping rate down dt for common ping number:2.8311 up dt :2.8438 hours up instrument is different by 0 ensembles WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING shifted timeseries by lag: -2 correlation: 0.8814 shift ADCP timeseries by -2 ensembles number of joint ensembles is : 2911 found 2 bad bottom error velocities and discarded them removed 112 values because of high error velocity removed 0 bottom values because of high error velocity extracting 1178 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 353 bins down looking Outlier discarded 395 bins up looking ==> load data took 33 seconds GETDEPTH: Integrating depth from vertical velocity starting run 1 to find bottom depth make soundspeed based on pressure and ADCP temp last depth from int W is :2520.1557 should be :2 maximum depth from int W is :51.6083 should be :2503.1 no bottom found given maximum profile depth : 2503 extracted bottom depth : 2533 bottom depth error : 37 starting run 2 to find bottom depth last depth from int W is :2520.1557 should be :2 maximum depth from int W is :2408.0962 should be :2503.1 no bottom found given maximum profile depth : 2503 extracted bottom depth : 2531 bottom depth error : 39 removing 10407 values below recognized bottom make soundspeed based on pressure and ADCP temp correct velocities for sound speed remove data at begining and end of cast ==> get depth took 2 seconds PREPINV: prepare data for inversion, form Super-Ensembles average profiles over (p.avdz) 20 meter mean compass offset is -92.0098 deg will not correct for sound speed twice remove reference velocity and average ensembles Outlier discarded 35 bins down looking Outlier discarded 27 bins up looking reduced ensemble size is 105 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 no bottom track data add barotropic constrain ready for inversion length of d : 1200 (CTD vel) length of A1:105 (ocean vel) length of A2:129 Cholesky transform give low weight to 1% of data scan#:1 ==> prep inversion took 7 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 no bottom track data add barotropic constrain ready for inversion length of d : 1193 (CTD vel) length of A1:105 (ocean vel) length of A2:129 Moore-Penrose inverse solve only down trace smooth Ocean velocity profile found 4 ill constrained elements smooth CTD velocity profile Cholesky transform solve only up trace smooth Ocean velocity profile found 11 ill constrained elements smooth CTD velocity profile found 1 ill constrained elements Cholesky transform ==> inversion took 2 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 2926 ensemble and 20 bins using RDI bottom track removed 41053 values because of low percent good loading up-data ../up/wh_up000.000 read 3030 ensemble and 20 bins removed 43502 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 :3.6711 loadrdi: warning instruments have no fixed ping rate down dt for common ping number:2.8311 up dt :2.8438 hours up instrument is different by 0 ensembles WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING shifted timeseries by lag: -2 correlation: 0.8814 shift ADCP timeseries by -2 ensembles number of joint ensembles is : 2911 found 2 bad bottom error velocities and discarded them removed 112 values because of high error velocity removed 0 bottom values because of high error velocity extracting 1178 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 353 bins down looking Outlier discarded 395 bins up looking ==> load data took 32 seconds GETDEPTH: Integrating depth from vertical velocity starting run 1 to find bottom depth make soundspeed based on pressure and ADCP temp last depth from int W is :2520.1557 should be :2 maximum depth from int W is :51.6083 should be :2503.1 no bottom found given maximum profile depth : 2503 extracted bottom depth : 2533 bottom depth error : 37 starting run 2 to find bottom depth last depth from int W is :2520.1557 should be :2 maximum depth from int W is :2408.0962 should be :2503.1 no bottom found given maximum profile depth : 2503 extracted bottom depth : 2531 bottom depth error : 39 removing 10407 values below recognized bottom make soundspeed based on pressure and ADCP temp correct velocities for sound speed remove data at begining and end of cast ==> get depth took 2 seconds PREPINV: prepare data for inversion, form Super-Ensembles average profiles over (p.avdz) 20 meter mean compass offset is -92.0098 deg will not correct for sound speed twice remove reference velocity and average ensembles Outlier discarded 35 bins down looking Outlier discarded 27 bins up looking reduced ensemble size is 105 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 no bottom track data add barotropic constrain ready for inversion length of d : 1200 (CTD vel) length of A1:105 (ocean vel) length of A2:129 Cholesky transform give low weight to 1% of data scan#:1 ==> prep inversion took 6 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 no bottom track data add barotropic constrain ready for inversion length of d : 1193 (CTD vel) length of A1:105 (ocean vel) length of A2:129 Moore-Penrose inverse solve only down trace smooth Ocean velocity profile found 4 ill constrained elements smooth CTD velocity profile Cholesky transform solve only up trace smooth Ocean velocity profile found 11 ill constrained elements smooth CTD velocity profile found 1 ill constrained elements Cholesky transform ==> inversion took 2 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 2926 ensemble and 20 bins using RDI bottom track removed 41053 values because of low percent good loading up-data ../up/wh_up000.000 read 3030 ensemble and 20 bins removed 43502 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 :3.6711 loadrdi: warning instruments have no fixed ping rate down dt for common ping number:2.8311 up dt :2.8438 hours up instrument is different by 0 ensembles WARNING WARNING WARNING WARNING WARNING WARNING WARNING WARNING shifted timeseries by lag: -2 correlation: 0.8814 shift ADCP timeseries by -2 ensembles number of joint ensembles is : 2911 found 2 bad bottom error velocities and discarded them removed 112 values because of high error velocity removed 0 bottom values because of high error velocity extracting 2549 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 968 bins down looking Outlier discarded 1112 bins up looking ==> load data took 48 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: 6 end depth correction from surface return: 1 last depth from int W is :-40.7794 should be :2 maximum depth from int W is :2534.9171 should be :2503.1 bottom found at 2520 +/- 1 m starting run 2 to find bottom depth start depth correction from surface return: -1 end depth correction from surface return: -2 last depth from int W is :-40.7794 should be :2 maximum depth from int W is :2504.2516 should be :2503.1 bottom found at 2520 +/- 1 m removing 1802 values below recognized bottom make soundspeed based on pressure and ADCP temp correct velocities for sound speed remove data at begining and end of cast ==> get depth took 7 seconds PREPINV: prepare data for inversion, form Super-Ensembles average profiles over (p.avdz) 20 meter discarded 1844 bottom tracks velocities because of dist > 300 mean compass offset is -87.09 deg will not correct for sound speed twice remove reference velocity and average ensembles Outlier discarded 151 bins down looking Outlier discarded 163 bins up looking reduced ensemble size is 232 GETINV: compute best velocity profile vertical resolution (ps.dz) is 20 [m] smooth Ocean velocity profile smooth CTD velocity profile bottom inversion weight for bottom track is (ps.botfac) 1 add barotropic constrain ready for inversion length of d : 3618 (CTD vel) length of A1:232 (ocean vel) length of A2:125 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 bottom inversion weight for bottom track is (ps.botfac) 1 add barotropic constrain ready for inversion length of d : 3585 (CTD vel) length of A1:231 (ocean vel) length of A2:125 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 5 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