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Metadata Report for BODC Series Reference Number 1720958


Metadata Summary

Data Description

Data Category Currents -subsurface Eulerian
Instrument Type
NameCategories
Nortek Aquadopp 6000 3D Doppler current meter  current meters; water temperature sensor
Instrument Mounting subsurface mooring
Originating Country United Kingdom
Originator Dr Alberto Naveira Garabato
Originating Organization University of Southampton School of Ocean and Earth Science
Processing Status banked
Online delivery of data Download available - Ocean Data View (ODV) format
Project(s) DIMES
 

Data Identifiers

Originator's Identifier CC_1_2009/6181
BODC Series Reference 1720958
 

Time Co-ordinates(UT)

Start Time (yyyy-mm-dd hh:mm) 2009-12-10 18:30
End Time (yyyy-mm-dd hh:mm) 2010-12-07 14:15
Nominal Cycle Interval 900.0 seconds
 

Spatial Co-ordinates

Latitude 56.01183 S ( 56° 0.7' S )
Longitude 57.82767 W ( 57° 49.7' W )
Positional Uncertainty 0.0 to 0.01 n.miles
Minimum Sensor or Sampling Depth 429.0 m
Maximum Sensor or Sampling Depth 429.0 m
Minimum Sensor or Sampling Height 3276.0 m
Maximum Sensor or Sampling Height 3276.0 m
Sea Floor Depth 3705.0 m
Sea Floor Depth Source DATAHEAD
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 Approximate - Depth is only approximate
Sea Floor Depth Datum Instantaneous - Depth measured below water line or instantaneous water body surface
 

Parameters

BODC CODERankUnitsTitle
AADYAA011DaysDate (time from 00:00 01/01/1760 to 00:00 UT on day)
AAFDZZ011DaysTime (time between 00:00 UT and timestamp)
ACYCAA011DimensionlessSequence number
BTVOLTCM1VoltsVoltage of battery output by in-situ current meter
ISCMBMA11DimensionlessSignal return amplitude from the water body by in-situ current meter beam 1
ISCMBMA21DimensionlessSignal return amplitude from the water body by in-situ current meter beam 2
ISCMBMA31DimensionlessSignal return amplitude from the water body by in-situ current meter beam 3
LCEWEL011Centimetres per secondEastward velocity of water current (Eulerian measurement) in the water body by in-situ current meter
LCNSEL011Centimetres per secondNorthward velocity of water current (Eulerian measurement) in the water body by in-situ current meter
LRZASP011Centimetres per secondUpward velocity of water current in the water body by in-situ acoustic current meter
PRSTPR011DecibarsPressure (measured variable) exerted by the water body plus atmosphere by semi-fixed in-situ pressure sensor
PTCHFG011DegreesOrientation (pitch) of measurement platform by triaxial fluxgate compass
ROLLFG011DegreesOrientation (roll) of measurement platform by triaxial fluxgate compass
TEMPPR011Degrees CelsiusTemperature of the water body

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

Public domain 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.

The recommended acknowledgment is

"This study uses data from the data source/organisation/programme, provided by the British Oceanographic Data Centre and funded by the funding body."


Narrative Documents

Nortek Aquadopp Open Water Current Meter

This instrument provides 3D acoustic doppler current measurements along with standard measurements of temperature, pressure, tilt and direction. It can be used in real time measurement situations or can log to an internal recorder powered by internal batteries. It can also be configured to measure surface wave height, period and direction concurrently. It has the unique feature of being run in 'diagnostic' mode when set to collect data at 1 Hz frequency in user specified intervals. This allows studies of mooring motion and the performance of other current meters to be conducted. It can be set in various configurations with titanium housings for deployment at greater depths.

Standard Measured Parameters

  • 3D current velocity (East/North/Up, X/Y/Z or Beam 1/2/3)
  • Acoustic signal strength (Beam 1/2/3)
  • Compass
  • Tilt
  • Temperature
  • Pressure
  • Battery voltage
  • Status code
  • Error code

Surface wave monitoring

The standard Aquadopp is suitable for measuring surface wave height, period, and direction, which are calculated using the PUV method whereby spectra are estimated based on a combination of the pressure signal recorded by the instrument (P) and two horizontal components of the wave orbital velocity (U and V). More specifically, the pressure signal is used to provide an estimate of the wave frequency spectrum. The energy in this spectrum is then used to estimate wave height and period. The measurements of the wave orbital velocities are used to provide an estimate of the wave direction. Since these estimates are based on the distribution of wave energy and are not direct measurements of the free surface, they should be considered inferred estimates.

Both the dynamic pressure and the orbital velocities are driven by surface waves. The signals that are associated with these properties are complicated by the fact that they attenuate (that is the signals are weaker) with depth. The exact behaviour of the attenuation is determined by the water depth and the wavelength being observed. The greater the water depth the greater the attenuation; likewise, the shorter the wavelength (or higher the frequency of the wave) the greater the attenuation for a given water depth. This means that the estimation of wave parameters is limited by both water depth and wave frequency.

Specifications

Water Velocity Measurement
Range ± 5 m/s (standard 300 m version)
± 3 m/s (3000 m and 6000 m versions - higher ranges available on request)
Accuracy 1% of measured value ± 0.5 cm/s
Max. sampling rate 1 Hz, 4 Hz also available on request (standard version)
Internal sampling rate 23 Hz
Measurement Area
Measurement cell size 0.75 m
Measurement cell position 0.35 - 5.0 m
Default position 0.35 - 1.8 m
Doppler uncertainty (noise)
Typical 0.5 - 1.0 cm/s
At 1 Hz sampling rate 1.5 cm/s
Echo Intensity
Acoustic frequency 2 MHz
Resolution 0.45 dB
Dynamic range 90 dB
Sensors
Temperature Thermistor embedded in head
Range -4°C to 40°C
Accuracy/resolution 0.1°C / 0.01°C
Time response 10 min
Compass Magnetometer
Accuracy/Resolution 2° / 0.1° for tilt < 20°
Tilt Liquid level
Maximum tilt 30°
Up or down Automatic detect
Pressure Piezoresistive
Range 0 - 300 m (standard), 0 - 3000 m or 0 - 6000 m
Accuracy/resolution 0.5%
Analogue Inputs
No. of channels 2
Voltage supply 12 V
Voltage input 16 bit A/D
Materials
Standard version Delrin with titanium screws
3000 m version Delrin with titanium screws
6000 m version Titanium with Delrin transducer head
Environmental
Operating temperature -4°C to 40°C
Dimensions
Cylinder 568 mm x 75 mm (standard)
619 mm x 84 mm (3000 m version)
625 mm x 84 mm (6000 m version)
Weight in air 3.5 kg (standard)
3.6 kg (3000 m version)
7.6 kg (6000 m version)
Weight in water Neutral (standard)
1.2 kg (3000 m version)
4.8 kg (6000 m version)

Further details can be found in the manufacturer's specification sheets for the Aquadopp, Aquadopp 3000 and Aquadopp 6000.

DIMES Current Meter data processing document

This document outlines the procedures undertaken to process and quality assure current meter data collected under the DIMES project. These procedures follow those of the RAPIDMOC and MOCHA projects, which are outlined below.

Originator's processing

The raw data are downloaded from the instrument and converted to ASCII format.

Once in ASCII format the data are corrected for the following -

  • Speed bias (caused by the mooring motion)
  • Sound speed (as electromagnetic current meter sensors use the speed of sound in water to calculate the doppler shift in the returned signal, they are corrected for variations in sound speed using temperature data as sound speed varies with temperature).
  • Magnetic variation

A 40 hour low pass filter is also applied to the data.

Calculating and applying calibrations

Manufacturers calibrations are applied.

Quality Control

Data were visually inspected for out-lying data and instrument electrical spikes removed.

BODC processing

Data are received after quality checks have been made and calibrations have been applied. The data files are submitted in ASCII format as one file per instrument.

Once the submitted data files are safely archived, the data undergo reformatting and banking procedures:

  • The data files are transferred into a common format, a NetCDF subset.

  • Standard parameter codes are assigned that accurately describe the data (see Parameter mapping section below).

  • Unit conversions are applied, if necessary, so that units are standardised (see Parameter mapping section below).

  • The data are screened visually and any spikes or instrument malfunctions can be clearly labelled with quality control flags.

  • Comprehensive documentation is prepared describing the collection, processing and quality of each data series.

  • Detailed metadata and documents are loaded to the database and linked to each series so that the information is readily available to future users.

Parameter mapping

The following describes the parameters contained in the originator's files and their mapping to BODC parameter codes.

Nortek Aquadopp 6000 3D Doppler current meter and SonTek Argonaut moored 3D doppler current meter

Identifier Unit Definition BODC parameter code Units Unit conversion Comments
YY year Year AADYAA01 days - Combined with MM and DD to form a date and transferred
MM month Month AADYAA01 days - Combined with MM and DD to form a date and transferred
DD day Day AADYAA01 days - Combined with MM and DD to form a date and transferred
HH hour Decimal hours AAFDZZ01 days /24 Transferred
T °C Temperature TEMPPR01 °C - Transferred
P dbar Pressure PRSTPR01 dbar - Transferred
U cm/s Eastward velocity LCEWEL01 cm/s - Transferred
V cm/s Northward velocity LCNSEL01 cm/s - Transferred
W cm/s Upward velocity LRZASP01 cm/s - Transferred
USS dimensionless Signal return amplitude beam 1 ISCMBMA1 dimensionless - Transferred
VSS dimensionless Signal return amplitude beam 2 ISCMBMA2 dimensionless - Transferred
WSS dimensionless Signal return amplitude beam 3 ISCMBMA3 dimensionless - Transferred
PIT degrees Pitch PTCHFG01 degrees - Transferred
ROL degrees Roll ROLLFG01 degrees - Transferred
IPOW volts Battery voltage BTVOLTCM volts - Transferred

Aanderaa Seaguard Recording Current Meter

Identifier Unit Definition BODC parameter code Units Unit conversion Comments
YY year Year AADYAA01 days - Combined with MM and DD to form a date and transferred
MM month Month AADYAA01 days - Combined with MM and DD to form a date and transferred
DD day Day AADYAA01 days - Combined with MM and DD to form a date and transferred
HH hour Decimal hours AAFDZZ01 days /24 Transferred
U cm/s Eastward velocity LCEWEL01 cm/s - Transferred
V cm/s Northward velocity LCNSEL01 cm/s - Transferred
MSS decibels Mean signal strength ASAMACMX decibels - Transferred
HDG degrees Heading HEADCM01 degrees - Transferred
PIT degrees Pitch PTCHFG01 degrees - Transferred
ROL degrees Roll ROLLFG01 degrees - Transferred

Project Information

Diapycnal and Isopycnal Mixing Experiment in the Southern Ocean (DIMES) project document

DIMES is a US/UK field program aimed at measuring diapycnal and isopycnal mixing in the Southern Ocean, along the tilting isopycnals of the Antarctic Circumpolar Current.

The Meridional Overturning Circulation (MOC) of the ocean is a critical regulator of the Earth's climate processes. Climate models are highly sensitive to the representation of mixing processes in the southern limb of the MOC, within the Southern Ocean, although the lack of extensive in situ observations of Southern Ocean mixing processes has made evaluation of mixing somewhat difficult. Theories and models of the Southern Ocean circulation have been built on the premise of adiabatic flow in the ocean interior, with diabatic processes confined to the upper-ocean mixed layer. Interior diapycnal mixing has often been assumed to be small, but a few recent studies have suggested that diapycnal mixing might be large in some locations, particularly over rough bathymetry. Depending on its extent, this interior diapycnal mixing could significantly affect the overall energetics and property balances for the Southern Ocean and in turn for the global ocean. The goals of DIMES are to obtain measurements that will help us quantify both along-isopycnal eddy-driven mixing and cross-isopycnal interior mixing.

DIMES includes tracer release, isopycnal following RAFOS floats, microstructure measurements, shearmeter floats, EM-APEX floats, a mooring array in Drake Passage, hydrographic observations, inverse modeling, and analysis of altimetry and numerical model output.

DIMES is sponsored by the National Science Foundation (U.S.), Natural Environment Research Council (U.K) and British Antarctic Survey (U.K.)

For more information please see the official project website at DIMES


Data Activity or Cruise Information

Data Activity

Start Date (yyyy-mm-dd) 2009-12-10
End Date (yyyy-mm-dd) 2010-12-07
Organization Undertaking ActivityUniversity of Southampton School of Ocean and Earth Science
Country of OrganizationUnited Kingdom
Originator's Data Activity IdentifierCC_1_2009
Platform Categorysubsurface mooring

DIMES Moored Instrument Rig CC_1_200912

This rig was deployed as part of the mooring array of the DIMES (Diapycnal and isopycnal mixing experiment in the Southern Ocean) project.

Deployment cruise RRS James Cook cruise JC041
Recovery cruise RRS James Cook cruise JC054

The rig was anchored by a 2200 kg dead weight and kept erect with groups of glass spheres and floats distributed along the mooring.

Instruments deployed on the rig

Depth Instrument
378m Nortek Aquadopp 6000 3D Doppler current meter (#6178)
378m Sea-Bird SBE37 SMP MicroCAT (#7304)
429m Nortek Aquadopp 6000 3D Doppler current meter (#6181)
429m Sea-Bird SBE37 SMP MicroCAT (#7305)
479m Sea-Bird SBE37 SMP MicroCAT (#7306)
481m Nortek Aquadopp 6000 3D Doppler current meter (#6182)
526m Sea-Bird SBE37 SMP MicroCAT (#7307)
527m Nortek Aquadopp 6000 3D Doppler current meter (#6203)
1157m Nortek Aquadopp 6000 3D Doppler current meter (#6212)
1158m Sea-Bird SBE37 SMP MicroCAT (#7309)
1255m Nortek Aquadopp 6000 3D Doppler current meter (#6213)
1255m Sea-Bird SBE37 SMP MicroCAT (#7310)
1812m Sea-Bird SBE37 SMP MicroCAT (#7311)
1813m Nortek Aquadopp 6000 3D Doppler current meter (#6224)
1913m Sea-Bird SBE37 SMP MicroCAT (#7312)
1914m Nortek Aquadopp 6000 3D Doppler current meter (#6225)
2011m Sea-Bird SBE37 SMP MicroCAT (#7313)
2012m Nortek Aquadopp 6000 3D Doppler current meter (#6242)
2114m Sea-Bird SBE37 SMP MicroCAT (#7314)
2115m Nortek Aquadopp 6000 3D Doppler current meter (#6273)
2803m LR-ADCP (#3301)
3367m Nortek Aquadopp 6000 3D Doppler current meter (#6275)
3367m Sea-Bird SBE37 SMP MicroCAT (#7315)
3570m Sea-Bird SBE37 SMP MicroCAT (#7316)
3571m Nortek Aquadopp 6000 3D Doppler current meter (#6276)

Related Data Activity activities are detailed in Appendix 1

Cruise

Cruise Name JC041 (UKD-1)
Departure Date 2009-12-05
Arrival Date 2009-12-21
Principal Scientist(s)Alberto C Naveira Garabato (University of Southampton School of Ocean and Earth Science)
Ship RRS James Cook

Complete Cruise Metadata Report is available here


Fixed Station Information


No Fixed Station Information held for the Series


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: CC_1_2009

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
1720946Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720971Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720983Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720995Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1721009Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1721010Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1721022Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1721034Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1721046Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1721058Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1721071Currents -subsurface Eulerian2009-12-10 18:30:0056.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720541Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720553Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720565Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720577Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720589Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720590Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720608Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720621Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720633Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720645Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720657Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)
1720669Hydrography time series at depth2009-12-10 18:30:0156.01183 S, 57.82767 WRRS James Cook JC041 (UKD-1)