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Metadata Report for BODC Series Reference Number 2261298


Metadata Summary

Data Description

Data Category Water sample data
Instrument Type
NameCategories
Niskin bottle  discrete water samplers
Instrument Mounting lowered unmanned submersible
Originating Country United Kingdom
Originator Unknown
Originating Organization Research Vessel Services (now National Marine Facilities Sea Systems)
Processing Status banked
Online delivery of data Download available - Ocean Data View (ODV) format
Project(s) LOIS River-Atmosphere-Coast Study (RACS)
 

Data Identifiers

Originator's Identifier CH115A_CTD_TPSL_1:CP108
BODC Series Reference 2261298
 

Time Co-ordinates(UT)

Start Time (yyyy-mm-dd hh:mm) 1994-10-10 04:33
End Time (yyyy-mm-dd hh:mm) -
Nominal Cycle Interval -
 

Spatial Co-ordinates

Latitude 53.72958 N ( 53° 43.8' N )
Longitude 0.14514 E ( 0° 8.7' E )
Positional Uncertainty 0.05 to 0.1 n.miles
Minimum Sensor or Sampling Depth 11.5 m
Maximum Sensor or Sampling Depth 11.5 m
Minimum Sensor or Sampling Height 5.9 m
Maximum Sensor or Sampling Height 5.9 m
Sea Floor Depth 17.4 m
Sea Floor Depth Source PEVENT
Sensor or Sampling Distribution Fixed common depth - All sensors are grouped effectively at the same depth which is effectively fixed for the duration of the series
Sensor or Sampling Depth Datum Instantaneous - Depth measured below water line or instantaneous water body surface
Sea Floor Depth Datum Unspecified -
 

Parameters

BODC CODERankUnitsTitle
ADEPZZ011MetresDepth (spatial coordinate) relative to water surface in the water body
BOTTFLAG1Not applicableSampling process quality flag (BODC C22)
SAMPRFNM1DimensionlessSample reference number
TEMPRTNX1Degrees CelsiusTemperature of the water body by reversing thermometer

Definition of BOTTFLAG

BOTTFLAGDefinition
0The sampling event occurred without any incident being reported to BODC.
1The filter in an in-situ sampling pump physically ruptured during sample resulting in an unquantifiable loss of sampled material.
2Analytical evidence (e.g. surface water salinity measured on a sample collected at depth) indicates that the water sample has been contaminated by water from depths other than the depths of sampling.
3The feedback indicator on the deck unit reported that the bottle closure command had failed. General Oceanics deck units used on NERC vessels in the 80s and 90s were renowned for reporting misfires when the bottle had been closed. This flag is also suitable for when a trigger command is mistakenly sent to a bottle that has previously been fired.
4During the sampling deployment the bottle was fired in an order other than incrementing rosette position. Indicative of the potential for errors in the assignment of bottle firing depth, especially with General Oceanics rosettes.
5Water was reported to be escaping from the bottle as the rosette was being recovered.
6The bottle seals were observed to be incorrectly seated and the bottle was only part full of water on recovery.
7Either the bottle was found to contain no sample on recovery or there was no bottle fitted to the rosette position fired (but SBE35 record may exist).
8There is reason to doubt the accuracy of the sampling depth associated with the sample.
9The bottle air vent had not been closed prior to deployment giving rise to a risk of sample contamination through leakage.

Definition of Rank

  • Rank 1 is a one-dimensional parameter
  • Rank 2 is a two-dimensional parameter
  • Rank 0 is a one-dimensional parameter describing the second dimension of a two-dimensional parameter (e.g. bin depths for moored ADCP data)

Problem Reports

No Problem Report Found in the Database


Data Access Policy

Open Data

These data have no specific confidentiality restrictions for users. However, users must acknowledge data sources as it is not ethical to publish data without proper attribution. Any publication or other output resulting from usage of the data should include an acknowledgment.

If the Information Provider does not provide a specific attribution statement, or if you are using Information from several Information Providers and multiple attributions are not practical in your product or application, you may consider using the following:

"Contains public sector information licensed under the Open Government Licence v1.0."


Narrative Documents

Niskin Bottle

The Niskin bottle is a device used by oceanographers to collect subsurface seawater samples. It is a plastic bottle with caps and rubber seals at each end and is deployed with the caps held open, allowing free-flushing of the bottle as it moves through the water column.

Standard Niskin

The standard version of the bottle includes a plastic-coated metal spring or elastic cord running through the interior of the bottle that joins the two caps, and the caps are held open against the spring by plastic lanyards. When the bottle reaches the desired depth the lanyards are released by a pressure-actuated switch, command signal or messenger weight and the caps are forced shut and sealed, trapping the seawater sample.

Lever Action Niskin

The Lever Action Niskin Bottle differs from the standard version, in that the caps are held open during deployment by externally mounted stainless steel springs rather than an internal spring or cord. Lever Action Niskins are recommended for applications where a completely clear sample chamber is critical or for use in deep cold water.

Clean Sampling

A modified version of the standard Niskin bottle has been developed for clean sampling. This is teflon-coated and uses a latex cord to close the caps rather than a metal spring. The clean version of the Levered Action Niskin bottle is also teflon-coated and uses epoxy covered springs in place of the stainless steel springs. These bottles are specifically designed to minimise metal contamination when sampling trace metals.

Deployment

Bottles may be deployed singly clamped to a wire or in groups of up to 48 on a rosette. Standard bottles and Lever Action bottles have a capacity between 1.7 and 30 L. Reversing thermometers may be attached to a spring-loaded disk that rotates through 180° on bottle closure.

Hydrography for cruises by RRS Challenger.

Document History

Converted from CDROM documentation.

Content of data series

CLXXIETX Dissolved chloride
Ion-selective electrode (unfiltered water)
Micromoles/litre
PSALBSTX Bench salinometer practical salinity
Salinometer
Practical Salinity Units
PSALPR01 Practical salinity (unspecified probe type)
Unspecified conductivity probe
Practical Salinity Units
PSALSG01 Practical salinity (thermosalinograph)
Thermosalinograph conductivity measurement
Practical Salinity Units
PSALST01 Practical salinity (CTD)
CTD conductivity measurement
Practical Salinity Units
SIGTPR01 Sigma-theta (CTD data)
Computed from CTD data using UNESCO functions POTEMP and SVAN
Practical Salinity Units
TEMPPR01 Sea temperature (unspecified)
Unspecified temperature probe
Degrees centigrade
TEMPRTNX Reversing thermometer sea temperature
Reversing thermometer
Degrees centigrade
TEMPSG01 Sea temperature (thermosalinograph)
Thermosalinograph measurement
Degrees centigrade
TEMPST01 Sea temperature (CTD/STD)
CTD or STD measurement
Degrees centigrade
TOKGPR01 µM to µmoles/litre conversion (CTD)
Computed from sigma-theta derived from CTD data
Dimensionless

Data Originator

Research Vessel Services

Sampling strategy and methodology

RRS Challenger cruises CH99, CH108A, CH108B, CH108C, CH115A, CH115B, CH115C, CH117A0, CH117A, CH117B, CH118A, CH118B, CH118C, CH119A, CH119B and CH119C.

Temperature measurements are made using SIS digital reversing thermometers. Two or three instruments were mounted together in a reversing cage to provide duplicate data and an indication of occasions when the cage has failed to reverse cleanly. Each thermometer was periodically calibrated at the RVS laboratory facility and a correction, in the form of a third order polynomial, determined. These corrections were routinely applied. Data in the database are the averages of the readings from all thermometers in the cage after fliers (such as caused by the reading being written down incorrectly) have been eliminated.

Salinity samples were taken in medicine bottles. After rinsing, the bottle was filled up to the shoulder, carefully dried off and then sealed with a plastic stopper under the cap. Salinities were determined by taking triplicate readings on a Guildline Autosal bench salinometer as soon as the samples had come to laboratory temperature (generally 24-36 hours after sampling). The instrument was standardised against OSI standard seawater.

References

Balls, P.B. and Laslett, R., 1991. A simple estuarine water sampler suitable for trace metals and other constituents. Estuarine Coastal and Shelf Science 33, 623-629.


Project Information

LOIS River-Atmosphere-Coast Study (LOIS - RACS)

Introduction

The Land-Ocean Interaction Study (LOIS) was a NERC research programme designed to study processes in the coastal zone. The Rivers, Atmosphere and Coasts Study (RACS) was a major component of LOIS that looked at land-sea interactions in the coastal zone and the major exchanges (physical, chemical and biological) between rivers and estuaries and the atmosphere. The study focused on the east coast of the UK from the Wash to the Tweed.

RACS included several sub-components

  • BIOTA - A study of salt marshes of the Humber and Wash
  • RACS (A) - An atmospheric chemistry study looking at air mass changes from the Wash into East Anglia
  • RACS (C) - A study of the estuaries, coasts and coastal waters between Great Yarmouth and Berwick upon Tweed.
    1. The coastal oceangraphic survey
    2. The Humber estuarine study
    3. The Tweed estuarine study
    4. The Holderness experiment
  • RACS (R) - A study of rivers that drain into the North Sea

RACS (A) was coordinated by the University of East Anglia and RACS (C) by the Plymouth Marine Laboratory.

RACS (A)

The bulk of the RACS (A) data set was collected during two field campaigns in the winter (October/November) of 1994 and the summer (May/June) of 1995. During these campaigns data were collected continuously from the University of East Anglia Atmospheric Observatory at Weybourne on the north Norfolk coast. An instrumented vessel was stationed offshore to provide a second sampling site to allow changes in a given air mass to be monitored. The Imperial College Jetstream research aircraft made one flight during each campaign to provide a link between the two surface stations. The Jetstream made four additional flights in 1996 and 1997.

RACS (C)

The coastal oceanographic survey

The coastal oceanographic data set was collected during a series of 17 RRS Challenger cruise legs. Most cruises covered two survey grids. One from Great Yarmouth to the Humber designed around the distribution of the sandbanks and a second simple zig-zag grid from the Humber to Berwick on Tweed. A large number of anchor stations, usually over one or two tidal cycles, were worked in the area of the Humber mouth or the Holderness coast.

The Humber estuarine study

The Humber estuarine data set was collected during a series of 33 campaigns on the Environment Agency vessels Sea Vigil and Water Guardian in the Humber, Trent and Ouse river systems at approximately monthly intervals between June 1993 and December 1996. Each campaign consisted of two or three one-day cruises. The tracks covered the estuary from the tidal limits of both Trent and Ouse to Spurn Point. Instrumental and sample data are available from a series of fixed stations that were sampled during every campaign.

The Tweed estuarine study

The Tweed estuarine data set was collected during a series of 13 campaigns using RV Tamaris in association with a rigid inflatable vessel at approximately monthly intervals between July 1996 and July 1997. Each campaign covered the tidal reaches of the River Tweed.

The Holderness experiment

The Holderness Experiment was designed to monitor the process of sediment transport along the Holderness coastline. It consisted of three moored instrument deployments during the winters of 1993-1994, 1994-1995 and 1995-1996. Mooring platforms were deployed at eight stations along two lines off the Holderness coast. A northerly and a southerly line of four stations each were used (N1 - N4 and S1 to S4) with the lowest numbers being inshore. Both lines were approximately perpendicular to the coast, although the S4 station lay to the south of the S line, off Spurn Head.


Data Activity or Cruise Information

Data Activity

Start Date (yyyy-mm-dd) 1994-10-10
End Date (yyyy-mm-dd) 1994-10-10
Organization Undertaking ActivityProudman Oceanographic Laboratory (now National Oceanography Centre, Liverpool)
Country of OrganizationUnited Kingdom
Originator's Data Activity IdentifierCH115A_CTD_CP108
Platform Categorylowered unmanned submersible

BODC Sample Metadata Report for CH115A_CTD_CP108

Sample reference number Nominal collection volume(l) Bottle rosette position Bottle firing sequence number Minimum pressure sampled (dbar) Maximum pressure sampled (dbar) Depth of sampling point (m) Bottle type Sample quality flag Bottle reference Comments
364493   10.00       12.20   12.40   11.50 Niskin bottle No problem reported    
364494   10.00        4.00    4.50    3.60 Niskin bottle No problem reported    

Please note:the supplied parameters may not have been sampled from all the bottle firings described in the table above. Cross-match the Sample Reference Number above against the SAMPRFNM value in the data file to identify the relevant metadata.

Related Data Activity activities are detailed in Appendix 1

Cruise

Cruise Name CH115A
Departure Date 1994-10-04
Arrival Date 1994-10-17
Principal Scientist(s)David Prandle (Proudman Oceanographic Laboratory)
Ship RRS Challenger

Complete Cruise Metadata Report is available here


Fixed Station Information

Fixed Station Information

Station NameHolderness Site S2
CategoryCoastal location
Latitude53° 43.80' N
Longitude0° 7.20' E
Water depth below MSL18.0 m

LOIS RACS (Holderness Experiment) Mooring Site S2

The site was occupied for both phase 1 (October 1994 to February 1995) and phase 2 (November 1995 to January 1996) of the Holderness Experiment by a POL Monitoring Platform (PMP) seabed mooring. This included an ADCP (zero data return in phase 1), a transmissometer, an S4 electromagnetic current meter, a pressure gauge and an EMP2000 environmental monitoring package (temperature, salinity, pH and OBS turbidity). No transmissometer or EMP2000 was fitted for the first phase 2 deployment.

The pressure gauge was programmed to sample at high frequency in burst mode, which allowed the derivation of 1-D wave spectra. Basic wave statistics (Hs and Tz) have been computed.

The data returns from the instruments were as follows:

Instrument Start End
Pressure 08 oct 1994 08 nov 1994
Pressure 09 nov 1994 15 jan 1995
Pressure 19 jan 1995 07 feb 1995
Pressure 11 nov 1995 08 dec 1995
Pressure 09 dec 1995 17 jan 1996
S4 10 oct 1994 18 oct 1994
S4 19 jan 1995 07 feb 1995
S4 11 nov 1995 08 dec 1995
S4 09 dec 1995 17 jan 1996
EMP2000 08 oct 1994 08 nov 1994
EMP2000 19 jan 1995 07 feb 1995
EMP2000 09 dec 1995 13 jan 1996
Transmissometer 08 oct 1994 08 nov 1994
Transmissometer 19 jan 1995 07 feb 1995
Transmissometer 09 dec 1995 17 jan 1996
ADCP 11 nov 1995 08 dec 1995
ADCP 09 dec 1995 17 jan 1996

The mean sea level water depth at the station was 18m and magnetic variation at the time of the deployments was 4 degrees west. This station is coincident with the station designated HMD that was occupied during the Holderness Experiment trial from October to December 1993.

Related Fixed Station activities are detailed in Appendix 2


BODC Quality Control Flags

The following single character qualifying flags may be associated with one or more individual parameters with a data cycle:

Flag Description
Blank Unqualified
< Below detection limit
> In excess of quoted value
A Taxonomic flag for affinis (aff.)
B Beginning of CTD Down/Up Cast
C Taxonomic flag for confer (cf.)
D Thermometric depth
E End of CTD Down/Up Cast
G Non-taxonomic biological characteristic uncertainty
H Extrapolated value
I Taxonomic flag for single species (sp.)
K Improbable value - unknown quality control source
L Improbable value - originator's quality control
M Improbable value - BODC quality control
N Null value
O Improbable value - user quality control
P Trace/calm
Q Indeterminate
R Replacement value
S Estimated value
T Interpolated value
U Uncalibrated
W Control value
X Excessive difference

SeaDataNet Quality Control Flags

The following single character qualifying flags may be associated with one or more individual parameters with a data cycle:

Flag Description
0 no quality control
1 good value
2 probably good value
3 probably bad value
4 bad value
5 changed value
6 value below detection
7 value in excess
8 interpolated value
9 missing value
A value phenomenon uncertain
B nominal value
Q value below limit of quantification

Appendix 1: CH115A_CTD_CP108

Related series for this Data Activity are presented in the table below. Further information can be found by following the appropriate links.

If you are interested in these series, please be aware we offer a multiple file download service. Should your credentials be insufficient for automatic download, the service also offers a referral to our Enquiries Officer who may be able to negotiate access.

Series IdentifierData CategoryStart date/timeStart positionCruise
1285592Water sample data1994-10-10 04:33:0053.72958 N, 0.14514 ERRS Challenger CH115A
2249908Water sample data1994-10-10 04:33:0053.72958 N, 0.14514 ERRS Challenger CH115A
2254855Water sample data1994-10-10 04:33:0053.72958 N, 0.14514 ERRS Challenger CH115A

Appendix 2: Holderness Site S2

Related series for this Fixed Station are presented in the table below. Further information can be found by following the appropriate links.

If you are interested in these series, please be aware we offer a multiple file download service. Should your credentials be insufficient for automatic download, the service also offers a referral to our Enquiries Officer who may be able to negotiate access.

Series IdentifierData CategoryStart date/timeStart positionCruise
578005Transmittance/attenuance, turbidity, or SPM conc.1994-10-08 07:41:0053.7315 N, 0.1248 ERRS Challenger CH115A
579531Multiple data types -fixed platform1994-10-08 07:50:4153.7315 N, 0.1248 ERRS Challenger CH115A
426246Waves (1D spectra)1994-10-08 08:50:0653.7315 N, 0.1248 ERRS Challenger CH115A
2256259Water sample data1994-10-09 12:06:3053.73469 N, 0.12734 ERRS Challenger CH115A
2262566Water sample data1994-10-09 12:06:3053.73469 N, 0.12734 ERRS Challenger CH115A
835033CTD or STD cast1994-10-09 12:08:0053.73467 N, 0.12733 ERRS Challenger CH115A
834306CTD or STD cast1994-10-09 13:02:0053.73617 N, 0.1245 ERRS Challenger CH115A
2256260Water sample data1994-10-09 13:04:0053.73621 N, 0.12442 ERRS Challenger CH115A
2262578Water sample data1994-10-09 13:04:0053.73621 N, 0.12442 ERRS Challenger CH115A
834318CTD or STD cast1994-10-09 14:00:0053.73533 N, 0.1315 ERRS Challenger CH115A
2256272Water sample data1994-10-09 14:01:3053.73539 N, 0.13147 ERRS Challenger CH115A
2262591Water sample data1994-10-09 14:01:3053.73539 N, 0.13147 ERRS Challenger CH115A
835045CTD or STD cast1994-10-09 15:00:0053.73267 N, 0.13133 ERRS Challenger CH115A
2256284Water sample data1994-10-09 15:02:0053.73261 N, 0.1313 ERRS Challenger CH115A
2262609Water sample data1994-10-09 15:02:0053.73261 N, 0.1313 ERRS Challenger CH115A
834331CTD or STD cast1994-10-09 16:00:0053.73217 N, 0.13967 ERRS Challenger CH115A
2256296Water sample data1994-10-09 16:02:3053.7322 N, 0.13969 ERRS Challenger CH115A
2262610Water sample data1994-10-09 16:02:3053.7322 N, 0.13969 ERRS Challenger CH115A
834343CTD or STD cast1994-10-09 17:00:0053.7285 N, 0.14183 ERRS Challenger CH115A
2256303Water sample data1994-10-09 17:01:3053.72845 N, 0.14184 ERRS Challenger CH115A
2262622Water sample data1994-10-09 17:01:3053.72845 N, 0.14184 ERRS Challenger CH115A
834355CTD or STD cast1994-10-09 18:00:0053.728 N, 0.14317 ERRS Challenger CH115A
2256315Water sample data1994-10-09 18:02:3053.72796 N, 0.14318 ERRS Challenger CH115A
2262634Water sample data1994-10-09 18:02:3053.72796 N, 0.14318 ERRS Challenger CH115A
835186CTD or STD cast1994-10-09 18:59:0053.7295 N, 0.14517 ERRS Challenger CH115A
2256327Water sample data1994-10-09 19:01:3653.72948 N, 0.14514 ERRS Challenger CH115A
2262646Water sample data1994-10-09 19:01:3653.72948 N, 0.14514 ERRS Challenger CH115A
834367CTD or STD cast1994-10-09 20:00:0053.73133 N, 0.143 ERRS Challenger CH115A
2256339Water sample data1994-10-09 20:01:3053.73134 N, 0.14292 ERRS Challenger CH115A
2262658Water sample data1994-10-09 20:01:3053.73134 N, 0.14292 ERRS Challenger CH115A
834379CTD or STD cast1994-10-09 21:00:0053.73133 N, 0.1435 ERRS Challenger CH115A
2254763Water sample data1994-10-09 21:02:3053.73138 N, 0.14356 ERRS Challenger CH115A
2261213Water sample data1994-10-09 21:02:3053.73138 N, 0.14356 ERRS Challenger CH115A
835057CTD or STD cast1994-10-09 22:00:0053.73217 N, 0.14233 ERRS Challenger CH115A
2254775Water sample data1994-10-09 22:02:0053.73214 N, 0.14227 ERRS Challenger CH115A
2261225Water sample data1994-10-09 22:02:0053.73214 N, 0.14227 ERRS Challenger CH115A
834380CTD or STD cast1994-10-09 23:02:0053.732 N, 0.14183 ERRS Challenger CH115A
2254787Water sample data1994-10-09 23:02:3053.73195 N, 0.14184 ERRS Challenger CH115A
2261237Water sample data1994-10-09 23:02:3053.73195 N, 0.14184 ERRS Challenger CH115A
834392CTD or STD cast1994-10-10 00:01:0053.73067 N, 0.142 ERRS Challenger CH115A
2254799Water sample data1994-10-10 00:02:3053.73065 N, 0.14192 ERRS Challenger CH115A
2261249Water sample data1994-10-10 00:02:3053.73065 N, 0.14192 ERRS Challenger CH115A
834411CTD or STD cast1994-10-10 01:01:0053.73033 N, 0.13833 ERRS Challenger CH115A
2254806Water sample data1994-10-10 01:02:3053.73036 N, 0.13829 ERRS Challenger CH115A
2261250Water sample data1994-10-10 01:02:3053.73036 N, 0.13829 ERRS Challenger CH115A
2254818Water sample data1994-10-10 02:02:3053.73164 N, 0.14639 ERRS Challenger CH115A
2261262Water sample data1994-10-10 02:02:3053.73164 N, 0.14639 ERRS Challenger CH115A
835069CTD or STD cast1994-10-10 02:03:0053.73167 N, 0.14633 ERRS Challenger CH115A
834423CTD or STD cast1994-10-10 03:01:0053.73117 N, 0.14283 ERRS Challenger CH115A
2254831Water sample data1994-10-10 03:02:3053.73119 N, 0.14283 ERRS Challenger CH115A
2261274Water sample data1994-10-10 03:02:3053.73119 N, 0.14283 ERRS Challenger CH115A
834435CTD or STD cast1994-10-10 04:00:0053.72983 N, 0.14517 ERRS Challenger CH115A
2254843Water sample data1994-10-10 04:01:3053.72988 N, 0.14515 ERRS Challenger CH115A
2261286Water sample data1994-10-10 04:01:3053.72988 N, 0.14515 ERRS Challenger CH115A
835070CTD or STD cast1994-10-10 04:30:0053.7295 N, 0.14517 ERRS Challenger CH115A
2249908Water sample data1994-10-10 04:33:0053.72958 N, 0.14514 ERRS Challenger CH115A
2254855Water sample data1994-10-10 04:33:0053.72958 N, 0.14514 ERRS Challenger CH115A
833677CTD or STD cast1994-10-10 05:32:0053.72917 N, 0.1435 ERRS Challenger CH115A
2254867Water sample data1994-10-10 05:34:3053.72909 N, 0.14351 ERRS Challenger CH115A
2261305Water sample data1994-10-10 05:34:3053.72909 N, 0.14351 ERRS Challenger CH115A
833689CTD or STD cast1994-10-10 05:59:0053.72583 N, 0.14583 ERRS Challenger CH115A
464740Currents -subsurface Eulerian1994-10-10 12:00:0053.7315 N, 0.1248 ERRS Challenger CH115A
834564CTD or STD cast1994-10-16 21:02:0053.732 N, 0.14017 ERRS Challenger CH115A
2255686Water sample data1994-10-16 21:04:0053.73202 N, 0.14013 ERRS Challenger CH115A
833315CTD or STD cast1994-10-16 22:00:0053.73483 N, 0.143 ERRS Challenger CH115A
2255698Water sample data1994-10-16 22:04:0053.73486 N, 0.14297 ERRS Challenger CH115A
833327CTD or STD cast1994-10-16 23:02:0053.7275 N, 0.1465 ERRS Challenger CH115A
2255705Water sample data1994-10-16 23:05:3053.72754 N, 0.14645 ERRS Challenger CH115A
833339CTD or STD cast1994-10-17 00:01:0053.72867 N, 0.14383 ERRS Challenger CH115A
834576CTD or STD cast1994-10-17 01:00:0053.72967 N, 0.14467 ERRS Challenger CH115A
2255717Water sample data1994-10-17 01:02:0053.72968 N, 0.14471 ERRS Challenger CH115A
833340CTD or STD cast1994-10-17 02:00:0053.73183 N, 0.1455 ERRS Challenger CH115A
833352CTD or STD cast1994-10-17 03:01:0053.73167 N, 0.1465 ERRS Challenger CH115A
834588CTD or STD cast1994-10-17 04:01:0053.7385 N, 0.1435 ERRS Challenger CH115A
2255742Water sample data1994-10-17 04:04:0053.73857 N, 0.14357 ERRS Challenger CH115A
833364CTD or STD cast1994-10-17 05:01:0053.73017 N, 0.14633 ERRS Challenger CH115A
833376CTD or STD cast1994-10-17 06:01:0053.73283 N, 0.14617 ERRS Challenger CH115A
833388CTD or STD cast1994-10-17 07:01:0053.7295 N, 0.14233 ERRS Challenger CH115A
2255754Water sample data1994-10-17 07:03:3053.72953 N, 0.14233 ERRS Challenger CH115A
834607CTD or STD cast1994-10-17 08:02:0053.729 N, 0.14283 ERRS Challenger CH115A
833407CTD or STD cast1994-10-17 09:01:0053.73233 N, 0.14467 ERRS Challenger CH115A
835101CTD or STD cast1994-10-17 09:59:0053.74267 N, 0.14333 ERRS Challenger CH115A
834619CTD or STD cast1994-10-17 11:02:0053.72833 N, 0.14567 ERRS Challenger CH115A
2255766Water sample data1994-10-17 11:02:0053.72831 N, 0.14571 ERRS Challenger CH115A
426258Waves (1D spectra)1994-11-09 11:50:5953.7308 N, 0.127 ERRS Challenger CH115C
837746CTD or STD cast1995-01-18 21:26:0053.73667 N, 0.1455 ERRS Challenger CH117A
837758CTD or STD cast1995-01-18 22:05:0053.73883 N, 0.14567 ERRS Challenger CH117A
837771CTD or STD cast1995-01-18 23:16:0053.7455 N, 0.1475 ERRS Challenger CH117A
837783CTD or STD cast1995-01-19 00:03:0053.7355 N, 0.14783 ERRS Challenger CH117A
837795CTD or STD cast1995-01-19 01:00:0053.73467 N, 0.1445 ERRS Challenger CH117A
837802CTD or STD cast1995-01-19 02:00:0053.73217 N, 0.1455 ERRS Challenger CH117A
837814CTD or STD cast1995-01-19 03:00:0053.73567 N, 0.14867 ERRS Challenger CH117A
836859CTD or STD cast1995-01-19 04:01:0053.735 N, 0.14617 ERRS Challenger CH117A
837826CTD or STD cast1995-01-19 05:00:0053.73633 N, 0.15167 ERRS Challenger CH117A
837838CTD or STD cast1995-01-19 05:59:0053.73417 N, 0.146 ERRS Challenger CH117A
837851CTD or STD cast1995-01-19 07:00:0053.7355 N, 0.14433 ERRS Challenger CH117A
578017Transmittance/attenuance, turbidity, or SPM conc.1995-01-19 08:34:0053.7315 N, 0.1248 ERRS Challenger CH117A
836860CTD or STD cast1995-01-19 08:46:0053.7355 N, 0.122 ERRS Challenger CH117A
579518Multiple data types -fixed platform1995-01-19 08:48:1653.7315 N, 0.1248 ERRS Challenger CH117A
426271Waves (1D spectra)1995-01-19 08:50:1653.7315 N, 0.1248 ERRS Challenger CH117A
464684Currents -subsurface Eulerian1995-01-19 12:00:0053.7315 N, 0.1248 ERRS Challenger CH117A
837875CTD or STD cast1995-01-20 02:04:0053.73283 N, 0.14283 ERRS Challenger CH117A
836872CTD or STD cast1995-01-20 03:03:0053.73567 N, 0.146 ERRS Challenger CH117A
837887CTD or STD cast1995-01-20 04:01:0053.73167 N, 0.14533 ERRS Challenger CH117A
837899CTD or STD cast1995-01-20 05:01:0053.73333 N, 0.14683 ERRS Challenger CH117A
837906CTD or STD cast1995-01-20 06:01:0053.73367 N, 0.14467 ERRS Challenger CH117A
836884CTD or STD cast1995-01-20 07:04:0053.73367 N, 0.14633 ERRS Challenger CH117A
837224CTD or STD cast1995-01-25 21:35:0053.7215 N, 0.15383 ERRS Challenger CH117A
837341CTD or STD cast1995-01-28 09:45:0053.724 N, 0.14317 ERRS Challenger CH117A
837353CTD or STD cast1995-01-28 10:46:0053.7235 N, 0.14333 ERRS Challenger CH117A
837132CTD or STD cast1995-01-28 11:46:0053.72233 N, 0.14333 ERRS Challenger CH117A
837365CTD or STD cast1995-01-28 12:46:0053.7265 N, 0.143 ERRS Challenger CH117A
837377CTD or STD cast1995-01-28 13:46:0053.72417 N, 0.14017 ERRS Challenger CH117A
837389CTD or STD cast1995-01-28 14:46:0053.72617 N, 0.142 ERRS Challenger CH117A
837144CTD or STD cast1995-01-28 15:46:0053.72783 N, 0.14417 ERRS Challenger CH117A
837390CTD or STD cast1995-01-28 16:45:0053.72167 N, 0.13917 ERRS Challenger CH117A
837408CTD or STD cast1995-01-28 17:46:0053.72383 N, 0.14317 ERRS Challenger CH117A
837156CTD or STD cast1995-01-28 18:46:0053.722 N, 0.141 ERRS Challenger CH117A
837421CTD or STD cast1995-01-28 19:46:0053.72533 N, 0.14967 ERRS Challenger CH117A
837433CTD or STD cast1995-01-28 20:48:0053.72217 N, 0.15333 ERRS Challenger CH117A
475958Currents -subsurface Eulerian1995-11-01 16:30:0053.732 N, 0.1245 ENot applicable
577991Transmittance/attenuance, turbidity, or SPM conc.1995-12-09 12:26:0053.7312 N, 0.1277 ENot applicable
579487Multiple data types -fixed platform1995-12-09 12:34:4453.7312 N, 0.1277 ENot applicable
475922Currents -subsurface Eulerian1995-12-09 13:00:0153.7312 N, 0.1277 ENot applicable