*2026/08/06 14:23:51.98 *IOS HEADER VERSION 2.0 2016/04/28 2016/06/13 IVF16 *FILE START TIME : UTC 2024/09/15 03:46:00.000 END TIME : UTC 2024/09/26 22:28:00.000 TIME INCREMENT : n/a ! (day hr min sec ms) TIME ZERO : UTC 1980/01/01 00:00:00.000 NUMBER OF RECORDS : 155 DATA DESCRIPTION : Loop + Rosette FILE TYPE : ASCII DATA TYPE : n/a NUMBER OF CHANNELS : 40 $TABLE: CHANNELS ! No Name Units Minimum Maximum !--- -------------------------------------------------- --------------- -------------- -------------- 1 Event_Number n/a 3 119 2 Station_Name n/a 3 Sample_Method n/a 4 Sample_Number n/a 10 9291 5 Date n/a 16329 16340 6 TIME:UTC n/a 0.7638889E-02 0.9958333 7 Latitude degrees 48.08 51.8 8 Longitude degrees -145 -123.25 9 INS:LOCATION n/a 10 Pressure:CTD decibar 2.5 7.8 11 Temperature:CTD 'deg C (ITS90)' 9.6192 17.2063 12 Salinity:CTD PSS-78 3.0012 32.4103 13 Sigma-t:CTD Kg/m^3 1.6621 24.4426 14 Transmissivity:CTD %/metre 33 85.5 15 Transmissivity:CTD:Green %/metre 26.3 96.2 16 Oxygen:Dissolved:Volume:CTD mL/L 3.65 7.2 17 Oxygen:Dissolved:Mass:CTD umol/kg 159.3 321 18 Fluorescence:URU:Wetlabs mg/m^3 0.249 16.135 19 PAR:CTD uE/m^2/sec 0 295.9 20 Salinity:Bottle PSS-78 29.905 32.4161 21 Flag:Salinity:Bottle n/a 22 Oxygen:Dissolved:Bottle:Volume mL/L 3.678 6.971 23 Oxygen:Dissolved:Bottle:Mass umol/kg 160.6 304.1 24 Flag:Oxygen:Dissolved:Bottle:Volume n/a 25 Temperature:Draw 'deg C (ITS90)' 10.9 18.4 26 Nitrate_plus_Nitrite umol/L 0 22.96 27 Flag:Nitrate_plus_Nitrite n/a 28 Silicate umol/L 0 40.47 29 Flag:Silicate n/a 30 Phosphate umol/L 0.224 2.081 31 Flag:Phosphate n/a 32 Chlorophyll:Extracted mg/m^3 0.12 27.23 33 Flag:Chlorophyll:Extracted n/a 34 Phaeo-Pigment:Extracted:Bottle mg/m^3 0.5E-01 3.6 35 Dimethyl_Sulphide:Bottle nmol/l 0 12 36 Flag:Dimethyl_Sulphide:Bottle n/a 37 Dimethylsulfoniopropionate_Dissolved:Bottle nmol/l 0.93 14 38 Flag:Dimethylsulfoniopropionate_Dissolved:Bottle n/a 39 Dimethylsulfoniopropionate_Total:Bottle nmol/l 23 94 40 Flag:Dimethylsulfoniopropionate_Total:Bottle n/a $END $TABLE: CHANNEL DETAIL ! No Pad Start Width Format Type Decimal_Places !--- ---- ----- ----- ---------- ---- -------------- 1 -99 ' ' ' ' I4 I ' ' 2 ' ' ' ' 9 NQ C ' ' 3 ' ' ' ' 7 NQ C ' ' 4 -99 ' ' ' ' I5 I ' ' 5 ' ' ' ' ' ' YYYY/mm/dd D ' ' 6 ' ' ' ' ' ' HH:MM T ' ' 7 -99 ' ' ' ' F8.2 R4 ' ' 8 -99 ' ' ' ' F8.2 R4 ' ' 9 ' ' ' ' 11 NQ C ' ' 10 -99 ' ' ' ' F7.1 R4 ' ' 11 -99 ' ' ' ' F9.4 R4 ' ' 12 -99 ' ' ' ' F9.4 R4 ' ' 13 -99 ' ' ' ' F9.4 R4 ' ' 14 -99 ' ' ' ' F9.4 R4 ' ' 15 -99 ' ' ' ' F9.4 R4 ' ' 16 -99 ' ' ' ' F7.2 R4 ' ' 17 -99 ' ' ' ' F6.1 R4 ' ' 18 -99 ' ' 8 F R4 3 19 -99 ' ' ' ' F7.1 R4 ' ' 20 -99 ' ' ' ' F9.4 R4 ' ' 21 ' ' ' ' 3 NQ C ' ' 22 -99 ' ' ' ' F8.3 R4 ' ' 23 -99 ' ' ' ' F6.1 R4 ' ' 24 ' ' ' ' 3 NQ C ' ' 25 -99 ' ' ' ' F6.1 R4 ' ' 26 -99 ' ' ' ' F7.2 R4 ' ' 27 ' ' ' ' 3 NQ C ' ' 28 -99 ' ' ' ' F7.2 R4 ' ' 29 ' ' ' ' 3 NQ C ' ' 30 -99 ' ' ' ' F8.3 R4 ' ' 31 ' ' ' ' 3 NQ C ' ' 32 -99 ' ' ' ' F7.2 R4 ' ' 33 ' ' ' ' 3 NQ C ' ' 34 -99 ' ' ' ' F7.2 R4 ' ' 35 -99 ' ' ' ' F7.2 R4 ' ' 36 ' ' ' ' 3 NQ C ' ' 37 -99 ' ' ' ' F7.2 R4 ' ' 38 ' ' ' ' 3 NQ C ' ' 39 -99 ' ' ' ' F7.2 R4 ' ' 40 ' ' ' ' 3 NQ C ' ' $END $REMARKS Quality flags have the following significance: ---------------------------------------------------------------------------------- 0 = Acceptable measurement with no header comment 1 = Sample for this measurement was collected but not analyzed. Sample lost. 2 = Acceptable measurement with header comment 3 = Questionable measurement (Probably Good) 4 = Poor measurement (Probably Bad) 5 = Measurement not reported (Bad) 6 = Mean of replicate measurements 7 = Manual chromatographic peak measurement 8 = Irregular digital chromatographic peak integration 9 = Sample was planned for this measurement from this bottle but was not collected ---------------------------------------------------------------------------------- $END *ADMINISTRATION MISSION : 2024-008 AGENCY : IOS, Ocean Sciences Division, Sidney, B.C. COUNTRY : Canada PROJECT : Line P SCIENTIST : Robert M. PLATFORM : John P. Tully *HISTORY $TABLE: PROGRAMS ! Name Vers Date Time Recs In Recs Out ! -------- ------ ---------- -------- --------- --------- SPRD2IS 5.3.1 2026/07/30 13:11:01 155 155 CLEAN 5.3 2026/07/30 13:37:16 155 155 HDREDIT2 3.2 2026/07/30 13:52:52 ? ? HDREDIT2 3.2 2026/08/06 14:23:51 ? ? $END $REMARKS -CLEAN functions: 2026/07/30 13:37:16 Reset #RECS, MIN & MAX values in header. Set header Start and End times from the data. Set header Latitude and Longitude limits the data. -HEADER EDITS: 2026/07/30 13:52:52 Applied edit header: C:\Users\BEDARDJ\Desktop\Data_Processing\CTD-2024-008\LOOP\2024-008-loop-hdr. txt -HEADER EDITS: 2026/08/06 14:23:51 Applied edit header: C:\Users\BEDARDJ\Desktop\Data_Processing\CTD-2024-008\LOOP\2024-008-loop-hdr. txt Channel 36: Flag:Dimethyl_Sulphide:Bottle [n/a] Units: ==> n/a Channel 38: Flag:Dimethylsulfoniopropionate_Dissolved:Bottle [n/a] Units: ==> n/a Channel 40: Flag:Dimethylsulfoniopropionate_Total:Bottle [n/a] Units: ==> n/a Channel 18: Fluorescence:URU:Wetlabs [mg/m^3] Name: Fluorescence:CTD ==> Fluorescence:URU:Wetlabs $END *COMMENTS Sample_Number 37: DMSP-T: sample for this measurement was collected but not analyzed. Sample lost. Sample_Number 106: CHL: outlier in comparison with extracted vs Fluorescence:CTD trends. Sample_Number 5036: CHL: CV%>10 Sample_Number 5038: CHL: duplicate intended; 5038B obvious outlier in comparison with HPLC, only 5038A reported. Sample_Number 5039: OXY: sample over-titrated due to late endpoint, OT good. Sample_Number 5042: OXY: sample over-titrated due to late endpoint, OT good. Sample_Number 5045: OXY: sample redrawn due to bubbles. Sample_Number 5048: OXY: sample over-titrated due to late endpoint, OT good. Sample_Number 273: NUTS: sample was planned for this measurement from this bottle but was not collected. Sample_Number 291: Bottle Number 24 - failed integrity check because spigot open. Sample_Number 380: OXY: missing water seal and no notes of bubbles or ground glass drying up so probably OK. Sample_Number 453: CHL: lots of sediment on filter. Sample_Number 454: CHL: bad measurement because forgot to acidify. Sampling Methods are expressed with the following codes ------------------------------------------------------- ROS - Rosette sample USW - Uncontaminated sea water (loop) ------------------------------------------------------- Sampling System ------------------------------------------------------- The seawater is drawn from a 20-cm x 56-cm standpipe, flush with the hull and located 4.5 metres below the water line, and pumped approximately 50 metres through a 5-cm stainless steel insulated pipe up to the main lab. Between the intake and the pump is a 24 x 24-cm stainless steel strainer (1/2-cm grid). The pump is a Moyno model 2L6 stainless steel progressive cavity pump with flow and pressure control. Analysis methods: ------------------------------------------------------- Salinity samples were collected in 200 ml or 250 ml type II glass bottles with disposable nylon inserts and screw caps supplied by Ocean Scientific International Limited. They were analyzed in a temperature-controlled lab on a Guildline 8400B Salinometer standardized with IAPSO standard seawater 14 - 25 days after collection. For details on duplicate analysis see document 2024-008_SAL.pdf. Oxygen samples were analyzed at sea using an automated Winkler titration system (Metrohm Dosimat model 876 and a UV light source and detector with a 365nm filter controlled by LV02_876 software designed and constructed by Scripps Institution of Oceanography) with modifications based on Carpenter (1965) and adhering to WOCE protocols (Culberson 1991). For precision and duplicate analysis see document 2024-008_OXY.pdf. Nutrient samples were collected in plastic tubes. One set of samples was collected and immediately quick frozen in aluminum blocks stored in a -20C freezer. Another set of samples from 400 dbar and deeper (to be used for silicate analysis) was collected and stored cool at 4C in the dark. All samples were returned to the Institute of Ocean Sciences and they were analyzed using an Astoria-Pacific Analyzer following methods described in IOS Nutrient Methods (1996) Barwell-Clarke and Whitney. For precision and duplicate analysis see document 2024-008_NUT.pdf. Chlorophyll samples were filtered onto 25mm GF/F filters and immediately frozen and stored in a -80C freezer until analysis. All samples were returned to the Institute of Ocean Sciences and analyzed 6-8 weeks after the cruise on a Turner Trilogy 7200-000 fluorometer using methods described in Holm-Hansen et al (1965). Fluorescence readings taken before and after sample acidification were used to calculate chlorophyll and phaeopigment concentrations. For details on duplicates see file 2024-008_CHL.pdf. Flags and comments apply to chlorophyll values only. No flags or comments are assigned for Phaeo-Pigment values. The minimum detectable level for DMS is 0.1 nM so "0" values should be interpreted as <0.1 nM. DMS data are limited to 2 significant figures. Unless otherwise indicated the relative difference between duplicates is <20%. All samples were run on an 8890 Gas Chromatograph system. For more details on method and analysis see document 2024-008_DMS_report.pdf. For duplicates analysis see file 2024-008_DMS.pdf. The minimum detectable level for DMSP is 0.1 nM so "0" values should be interpreted as <0.1 nM. DMSP data are limited to 2 significant figures. Unless otherwise indicated the relative difference between duplicates is <20%. For more details on method and analysis see document 2024-008_DMS_report.pdf. For duplicates analysis see file 2024-008_DMSP.pdf. References: 1. Barwell-Clarke, J. and Whitney, F. 1996. Institute of Ocean Sciences Nutrient Methods and Analysis. Canadian Technical Report of Hydrography and Ocean Sciences, No. 182, 43 pp. 2. Carpenter, J.H. 1965. The Chesapeake Bay Institute Technique for the Winkler Dissolved Oxygen Method. Limmnol. & Oceanogr., 10: 141-143. 3. Culberson, C.H. 1991. Dissolved oxygen. WOCE Hydrographic Programme Operations and Methods (July 1991). 15pp. 4. Holm-Hansen, O., Lorenzen, C.J., Holmes, R.W., and Strickland J.D.H. 1965. Fluorometric Determination of Chlorophyll. J.du Cons. Intl. Pour l’Epl. De la Mer. 30:3-15. * For PDF versions of these papers see folder \\Cruise_Data\DOCUMENTS\Analysis Reference Papers ------------------------------------------------------- Data processing notes: ------------------------------------------------------- Conductivity - Transmissivity - Fluorescence - PAR data are nominal and unedited except that some records were removed in editing temperature and salinity. There were 2 WetLabs CStar transmissometers in use during this cruise: Transmissometer:CTD:650 refers to sensor #1185DR (650nm - red) Transmissometer:CTD:530 refers to sensor #1883DG (530nm - green) For comparison with other Institute of Ocean Sciences cruises note that the transmissometer wavelength is 650 nm unless otherwise stated. NOTE: While the Fluorescence:CTD data are expressed in concentration units they do not always compare well to extracted chlorophyll samples particularly for casts far from shore. It is recommended that users check extracted chlorophyll values where available. For details on the processing see the report: 2024-008_Processing_Report.pdf Sampling Methods are expressed with the following codes ------------------------------------------------------- ROS - Rosette sample USW - Uncontaminated sea water (loop) ------------------------------------------------------- Sampling System ------------------------------------------------------- The seawater is drawn from a 20-cm x 56-cm standpipe, flush with the hull and located 4.5 metres below the water line, and pumped approximately 50 metres through a 5-cm stainless steel insulated pipe up to the main lab. Between the intake and the pump is a 24 x 24-cm stainless steel strainer (1/2-cm grid). The pump is a Moyno model 2L6 stainless steel progressive cavity pump with flow and pressure control. Analysis methods: ------------------------------------------------------- Salinity samples were collected in 200 ml or 250 ml type II glass bottles with disposable nylon inserts and screw caps supplied by Ocean Scientific International Limited. They were analyzed in a temperature-controlled lab on a Guildline 8400B Salinometer standardized with IAPSO standard seawater 14 - 25 days after collection. For details on duplicate analysis see document 2024-008_SAL.pdf. Oxygen samples were analyzed at sea using an automated Winkler titration system (Metrohm Dosimat model 876 and a UV light source and detector with a 365nm filter controlled by LV02_876 software designed and constructed by Scripps Institution of Oceanography) with modifications based on Carpenter (1965) and adhering to WOCE protocols (Culberson 1991). For precision and duplicate analysis see document 2024-008_OXY.pdf. Nutrient samples were collected in plastic tubes. One set of samples was collected and immediately quick frozen in aluminum blocks stored in a -20C freezer. Another set of samples from 400 dbar and deeper (to be used for silicate analysis) was collected and stored cool at 4C in the dark. All samples were returned to the Institute of Ocean Sciences and they were analyzed using an Astoria-Pacific Analyzer following methods described in IOS Nutrient Methods (1996) Barwell-Clarke and Whitney. For precision and duplicate analysis see document 2024-008_NUT.pdf. Chlorophyll samples were filtered onto 25mm GF/F filters and immediately frozen and stored in a -80C freezer until analysis. All samples were returned to the Institute of Ocean Sciences and analyzed 6-8 weeks after the cruise on a Turner Trilogy 7200-000 fluorometer using methods described in Holm-Hansen et al (1965). Fluorescence readings taken before and after sample acidification were used to calculate chlorophyll and phaeopigment concentrations. For details on duplicates see file 2024-008_CHL.pdf. Flags and comments apply to chlorophyll values only. No flags or comments are assigned for Phaeo-Pigment values. The minimum detectable level for DMS is 0.1 nM so "0" values should be interpreted as <0.1 nM. DMS data are limited to 2 significant figures. Unless otherwise indicated the relative difference between duplicates is <20%. All samples were run on an 8890 Gas Chromatograph system. For more details on method and analysis see document 2024-008_DMS_report.pdf. For duplicates analysis see file 2024-008_DMS.pdf. The minimum detectable level for DMSP is 0.1 nM so "0" values should be interpreted as <0.1 nM. DMSP data are limited to 2 significant figures. Unless otherwise indicated the relative difference between duplicates is <20%. For more details on method and analysis see document 2024-008_DMS_report.pdf. For duplicates analysis see file 2024-008_DMSP.pdf. References: 1. Barwell-Clarke, J. and Whitney, F. 1996. Institute of Ocean Sciences Nutrient Methods and Analysis. Canadian Technical Report of Hydrography and Ocean Sciences, No. 182, 43 pp. 2. Carpenter, J.H. 1965. The Chesapeake Bay Institute Technique for the Winkler Dissolved Oxygen Method. Limmnol. & Oceanogr., 10: 141-143. 3. Culberson, C.H. 1991. Dissolved oxygen. WOCE Hydrographic Programme Operations and Methods (July 1991). 15pp. 4. Holm-Hansen, O., Lorenzen, C.J., Holmes, R.W., and Strickland J.D.H. 1965. Fluorometric Determination of Chlorophyll. J.du Cons. Intl. Pour l’Epl. De la Mer. 30:3-15. * For PDF versions of these papers see folder \\Cruise_Data\DOCUMENTS\Analysis Reference Papers ------------------------------------------------------- Data processing notes: ------------------------------------------------------- Conductivity - Transmissivity - Fluorescence - PAR data are nominal and unedited except that some records were removed in editing temperature and salinity. There were 2 WetLabs CStar transmissometers in use during this cruise: Transmissometer:CTD:650 refers to sensor #1185DR (650nm - red) Transmissometer:CTD:530 refers to sensor #1883DG (530nm - green) For comparison with other Institute of Ocean Sciences cruises note that the transmissometer wavelength is 650 nm unless otherwise stated. NOTE: While the Fluorescence:CTD data are expressed in concentration units they do not always compare well to extracted chlorophyll samples particularly for casts far from shore. It is recommended that users check extracted chlorophyll values where available. For details on the processing see the report: 2024-008_Processing_Report.pdf *LOCATION GEOGRAPHIC AREA : N.E. Pacific LATITUDE : 48 4.80011 N ! (deg min) LONGITUDE : 145 0.00000 W ! (deg min) LATITUDE 2 : 51 47.99995 N ! (deg min) LONGITUDE 2 : 123 15.00000 W ! (deg min) !-1- ---2---- --3--- -4-- ----5----- --6-- ---7--- ---8--- ----9----- --10-- ---11--- ---12--- ---13--- ---14--- ---15--- --16-- --17- ---18-- --19-- ---20--- 21 ---22-- --23- 24 --25- --26-- 27 --28-- 29 ---30-- 31 --32-- 33 --34-- --35-- 36 --37-- 38 --39-- 40 !Eve Station_ Sample Samp Date TIME: Latitud Longitu INS: Pressu Temperat Salinity Sigma-t: Transmis Transmis Oxygen Oxyge Fluores PAR: Salinity Fl Oxygen: Oxyge Fl Tempe Nitrat Fl Silica Fl Phospha Fl Chloro Fl Phaeo- Dimeth Fl Dimeth Fl Dimeth Fl !nt_ Name _ le_ UTC e de LOCATION re:CTD ure:CTD :CTD CTD sivity: sivity: :Disso n:Dis cence: CTD :Bottle ag Dissolv n:Dis ag ratur e_ ag te ag te ag phyll: ag Pigmen yl_ ag ylsulf ag ylsulf ag !Num Method Numb CTD CTD: lved: solve URU: ~o ed: ~ed:B ~o e: plus_ ~t ~i ~p Extrac ~a t:Extr Sulphi ~o ~_Diss ~o ~nate_ ~o !ber er Green Volume d:Mas Wetlabs tt Bottle: ottle lu Draw Nitrit ri ca ha ted ct acted: de: tt olved: tt Total: tt ! :CTD s:CTD le Volume :Mass me e te te te ed Bottle Bottle le Bottle le Bottle le !--- -------- ------ ---- ---------- ----- ------- ------- ---------- ------ -------- -------- -------- -------- -------- ------ ----- ------- ------ -------- -- ------- ----- -- ----- ------ -- ------ -- ------- -- ------ -- ------ ------ -- ------ -- ------ -- *END OF HEADER 3 Haro59 ROS 12 2024/ 9/15 03:46 48.61 -123.25 Mid-ship 2.8 12.2272 29.9479 22.6533 79.9000 87.8000 4.72 206.1 2.368 0.3 -99.0000 0 -99.000 -99.0 0 -99.0 17.20 0 39.98 0 1.831 0 7.43 0 0.77 -99.00 0 -99.00 0 -99.00 0 3 Haro59 ROS 11 2024/ 9/15 03:46 48.61 -123.25 Mid-ship 2.8 12.2479 29.9301 22.6358 79.9000 87.9000 4.70 205.3 2.345 0.3 -99.0000 0 4.716 206.0 0 13.5 17.05 0 39.93 0 1.793 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 3 Haro59 ROS 10 2024/ 9/15 03:46 48.61 -123.25 Mid-ship 5.2 12.1423 30.0212 22.7257 79.9000 88.0000 4.64 202.6 2.198 0.0 30.0160 0 4.599 200.9 6 13.4 17.78 0 40.47 0 1.860 0 6.06 6 1.28 -99.00 0 -99.00 0 -99.00 0 4 JF1 USW 5004 2024/ 9/15 06:40 48.27 -123.50 4.5 -99.0000 -99.0000 -99.0000 -99.0000 -99.0000 -99.00 -99.0 -99.000 -99.0 31.0474 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 8.74 6 0.85 -99.00 0 -99.00 0 -99.00 0 5 JF2 ROS 15 2024/ 9/15 09:10 48.30 -124.00 Mid-ship 2.8 11.1597 31.2129 23.8263 78.6000 86.7000 5.24 228.6 4.252 0.3 -99.0000 0 -99.000 -99.0 0 -99.0 17.94 0 36.23 0 1.869 0 12.76 0 1.64 -99.00 0 -99.00 0 -99.00 0 5 JF2 ROS 14 2024/ 9/15 09:10 48.30 -124.00 Mid-ship 5.9 11.1272 31.2559 23.8654 78.9000 86.6000 5.09 222.0 4.007 0.0 31.2665 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 13.58 6 1.63 -99.00 0 -99.00 0 -99.00 0 7 JF3 USW 5007 2024/ 9/15 11:32 48.45 -124.50 4.5 -99.0000 -99.0000 -99.0000 -99.0000 -99.0000 -99.00 -99.0 -99.000 -99.0 31.3552 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 14.55 6 2.64 -99.00 0 -99.00 0 -99.00 0 8 JF4 USW 5008 2024/ 9/15 13:21 48.54 -125.00 4.5 -99.0000 -99.0000 -99.0000 -99.0000 -99.0000 -99.00 -99.0 -99.000 -99.0 32.2753 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 2.28 6 1.03 -99.00 0 -99.00 0 -99.00 0 9 P1 ROS 19 2024/ 9/15 15:32 48.58 -125.50 Mid-ship 4.7 13.4158 32.3905 24.3160 78.5000 86.7000 6.12 266.8 1.560 77.6 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 1.58 0 0.79 -99.00 0 -99.00 0 -99.00 0 9 P1 ROS 18 2024/ 9/15 15:32 48.58 -125.50 Mid-ship 4.7 13.4769 32.3821 24.2972 79.8000 86.5000 6.14 267.7 1.585 103.6 -99.0000 0 6.043 263.5 6 14.5 9.06 0 21.76 0 0.941 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 11 P2 ROS 37 2024/ 9/15 18:20 48.60 -126.00 Mid-ship 3.6 11.8290 31.7371 24.1137 65.7000 70.7000 7.06 307.9 16.135 295.9 -99.0000 0 -99.000 -99.0 0 -99.0 6.16 0 20.40 0 1.076 0 25.94 6 3.60 0.00 0 1.90 0 -99.00 1 11 P2 ROS 36 2024/ 9/15 18:20 48.60 -126.00 Mid-ship 5.5 11.8068 31.7539 24.1307 66.4000 71.9000 6.95 303.1 15.262 106.0 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 27.23 0 2.64 0.50 0 1.80 0 84.00 0 11 P2 ROS 35 2024/ 9/15 18:20 48.60 -126.00 Mid-ship 5.6 11.8040 31.7565 24.1333 66.6000 71.4000 6.93 302.2 15.539 100.1 -99.0000 0 6.971 304.1 0 13.1 7.46 0 21.53 0 1.110 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 13 P3 ROS 38 2024/ 9/15 21:16 48.63 -126.33 Mid-ship 4.9 13.6146 32.1783 24.1121 79.2000 86.4000 6.55 285.6 1.134 22.1 -99.0000 0 -99.000 -99.0 0 -99.0 0.01 0 2.97 0 0.346 0 1.05 0 0.37 -99.00 0 -99.00 0 -99.00 0 15 P4 ROS 56 2024/ 9/15 23:54 48.65 -126.66 Mid-ship 3.5 13.9780 32.1247 23.9968 76.3000 82.7000 6.45 281.3 1.999 21.5 -99.0000 0 -99.000 -99.0 0 -99.0 0.05 0 5.54 0 0.347 0 1.60 6 0.88 2.20 0 14.00 0 94.00 0 15 P4 ROS 55 2024/ 9/15 23:54 48.65 -126.66 Mid-ship 5.0 13.9733 32.1247 23.9978 76.6000 82.9000 6.45 281.3 2.160 14.3 -99.0000 0 -99.000 -99.0 0 -99.0 0.00 0 5.55 0 0.362 0 1.69 0 0.75 -99.00 0 -99.00 0 -99.00 0 15 P4 ROS 54 2024/ 9/15 23:54 48.65 -126.66 Mid-ship 5.1 13.9741 32.1247 23.9977 76.6000 82.9000 6.44 280.9 2.250 13.7 -99.0000 0 -99.000 -99.0 0 -99.0 0.00 0 5.54 0 0.367 0 -99.00 0 -99.00 2.00 0 2.90 0 87.00 0 17 P4 ROS 85 2024/ 9/15 04:16 48.65 -126.66 Mid-ship 5.4 14.0568 32.1179 23.9754 78.4000 85.3000 6.39 278.7 2.232 0.0 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 17 P4 ROS 84 2024/ 9/16 04:16 48.65 -126.66 Mid-ship 5.5 14.0571 32.1179 23.9754 78.4000 85.3000 6.39 278.7 2.225 0.0 -99.0000 0 6.362 277.6 0 15.4 0.00 0 4.30 0 0.332 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 20 P4 ROS 105 2024/ 9/16 07:05 48.65 -126.67 Mid-ship 3.8 13.8296 32.1203 24.0237 76.6000 82.8000 6.42 280.0 3.218 0.1 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 20 P4 ROS 104 2024/ 9/16 07:05 48.65 -126.67 Mid-ship 3.5 13.8310 32.1203 24.0235 76.5000 82.7000 6.41 279.6 3.228 0.1 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 20 P4 ROS 103 2024/ 9/16 07:05 48.65 -126.67 Mid-ship 3.9 13.8308 32.1204 24.0236 76.6000 82.7000 6.43 280.4 3.254 0.1 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 20 P4 ROS 102 2024/ 9/16 07:05 48.65 -126.67 Mid-ship 3.6 13.8311 32.1203 24.0234 76.6000 82.8000 6.42 280.0 3.119 0.1 32.1264 0 -99.000 -99.0 0 -99.0 0.00 0 5.78 0 0.374 0 2.08 0 0.96 -99.00 0 -99.00 0 -99.00 0 20 P4 ROS 101 2024/ 9/16 07:05 48.65 -126.67 Mid-ship 4.1 13.8321 32.1204 24.0233 76.6000 82.7000 6.42 280.0 3.154 0.1 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 20 P4 ROS 100 2024/ 9/16 07:05 48.65 -126.67 Mid-ship 3.6 13.8313 32.1203 24.0234 76.6000 82.8000 6.42 280.0 3.230 0.1 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 20 P4 ROS 99 2024/ 9/16 07:05 48.65 -126.67 Mid-ship 3.9 13.8309 32.1203 24.0235 76.6000 82.8000 6.42 280.0 3.169 0.1 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0 20 P4 ROS 98 2024/ 9/16 07:05 48.65 -126.67 Mid-ship 3.7 13.8308 32.1203 24.0235 76.6000 82.8000 6.42 280.0 3.183 0.1 32.1265 0 -99.000 -99.0 0 -99.0 0.00 0 5.89 0 0.374 0 2.04 0 0.96 -99.00 0 -99.00 0 -99.00 0 20 P4 ROS 97 2024/ 9/16 07:05 48.65 -126.67 Mid-ship 3.8 13.8307 32.1203 24.0235 76.6000 82.8000 6.42 280.0 3.110 0.1 -99.0000 0 -99.000 -99.0 0 -99.0 -99.00 0 -99.00 0 -99.000 0 -99.00 0 -99.00 -99.00 0 -99.00 0 -99.00 0