Data

WEST10MV Fremantle Southeast Indian Ridge Hobart Bathymetry 1995 (1274/19950001S)

Geoscience Australia
Christie, D.
Viewed: [[ro.stat.viewed]] Cited: [[ro.stat.cited]] Accessed: [[ro.stat.accessed]]
ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.26186/150796&rft.title=WEST10MV Fremantle Southeast Indian Ridge Hobart Bathymetry 1995 (1274/19950001S)&rft.identifier=10.26186/150796&rft.publisher=Commonwealth of Australia (Geoscience Australia)&rft.description=The WEST10MV bathymetry survey was acquired by the Oregon State University onboard the Scripps Institution of Oceanography (UC/SIO) Research Vessel Melville from the 29 January to 12 March 1995 using the Seabeam 2000 sonar system. The bathymetry dataset was acquired while the Research Vessel Melville was transiting from Frematle to Southeast Indian Ridge to Hobart. This dataset contains the 8-210m resolution, 32-bit geotiffs of the WEST10MV survey produced from the processed SeaBeam system using the CARIS HIPS and SIPS software. Appropriate acknowledgment must be given to both the original scientists (Christie, David) (http://www.marine-geo.org/tools/search/entry.php?id=WEST10MV#datasets) and to the Marine Geoscience Data System (www.marine-geo.org).Not to be used for navigational purposesMaintenance and Update Frequency: asNeededStatement: The WEST10MV, was acquired by the Oregon State University onboard the Scripps Institution of Oceanography (UC/SIO) Research Vessel Melville from the 29 January to 12 March1995 The Chief Scientist onboard was Christie, David. This dataset was acquired and processed onboard by Scripps Institution of Oceanography and further processing was conducted in Geoscience Australia by Michele Spinoccia, using CARIS HIPS & SIPS ver 7.1.2. For any metadata questions, please download the Metadata.txt file with the dataset. Processing: 1. First a vessel configuration file was created where the co-ordinates of the motion sensor and DGPS antenna and patch test offsets were recorded. 2. A new project was then created and the vessel configuration file was attached to the project file. 3. The raw swath sonar data format, for each line was then imported into the project and the vessel information assigned to the data. 4. The motion sensor, DGPS and heading data were then cleaned using a filter that averaged adjacent data to remove artefacts. 5. Different sound velocity profiles data for each block were attached to the corresponding raw swath sonar data files to correct the depths for changes in the speed of sound through the water column. 6. Then a new blank field area was defined that specified the geographic area of study and the co-ordinate system used. The co-ordinates for the study areas were WGS84 UTM-XX to XXS. 7. The data was cleaned by applying several filters that removed any remaining spikes in the bathymetry data using user defined threshold values. A visual inspection of the data for each line was then undertaken where artefacts and noisy data not removed by the filtering process were removed manually using Swath and subset editors modules of the Caris HIPS/SIPS software. 8. All the data for each bathymetric, motion sensor, DGPS, heading, tide and sound velocity profile data were merged to produce the final processed data file. A weighted grid of the processed data was then created for each Block. In GA the tide was applied to the grid to correct for tidal variations and velocity corrections were performed to correct for different artefacts and mismatches. 9. The processed data was finally exported as grids soundings or false colored images for presentation and reporting and as final processed data in 32bit geotiff format at the optimum resolution the data can provide.&rft.creator=Christie, D. &rft.date=2026&rft.coverage=westlimit=89.94; southlimit=-50.42; eastlimit=147.53; northlimit=-31.90; projection=4326&rft.coverage=westlimit=89.94; southlimit=-50.42; eastlimit=147.53; northlimit=-31.90; projection=4326&rft.coverage=uplimit=-41; downlimit=6547; projection=3855&rft.coverage=uplimit=-41; downlimit=6547; projection=3855&rft_rights=Creative Commons - Attribution 4.0 International https://creativecommons.org/licenses/by/4.0/&rft_rights=(c) Oregon State University 2025&rft_rights=Australian Government Security Classification System https://www.protectivesecurity.gov.au/pspf-annual-release&rft_subject=geoscientificInformation&rft_subject=AusSeabed&rft_subject=Resourcing Australia's Prosperity&rft_subject=Australia-wide geoscience data&rft_subject=Offshore Mapping&rft_subject=Marine&rft_subject=Bathymetry&rft_subject=RV Melville&rft_subject=multi-beam echosounders&rft_subject=Indian Ocean&rft_subject=Southern Ocean&rft_subject=EARTH SCIENCES&rft_subject=Published_External&rft.type=dataset&rft.language=English Access the data

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Creative Commons - Attribution 4.0 International
https://creativecommons.org/licenses/by/4.0/

(c) Oregon State University 2025

Australian Government Security Classification System
https://www.protectivesecurity.gov.au/pspf-annual-release

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Full description

The WEST10MV bathymetry survey was acquired by the Oregon State University onboard the Scripps Institution of Oceanography (UC/SIO) Research Vessel Melville from the 29 January to 12 March 1995 using the Seabeam 2000 sonar system.
The bathymetry dataset was acquired while the Research Vessel Melville was transiting from Frematle to Southeast Indian Ridge to Hobart.
This dataset contains the 8-210m resolution, 32-bit geotiffs of the WEST10MV survey produced from the processed SeaBeam system using the CARIS HIPS and SIPS software.
Appropriate acknowledgment must be given to both the original scientists (Christie, David) (http://www.marine-geo.org/tools/search/entry.php?id=WEST10MV#datasets) and to the Marine Geoscience Data System (www.marine-geo.org).

Not to be used for navigational purposes

Lineage

Maintenance and Update Frequency: asNeeded
Statement: The WEST10MV, was acquired by the Oregon State University onboard the Scripps Institution of Oceanography (UC/SIO) Research Vessel Melville from the 29 January to 12 March1995 The Chief Scientist onboard was Christie, David. This dataset was acquired and processed onboard by Scripps Institution of Oceanography and further processing was conducted in Geoscience Australia by Michele Spinoccia, using CARIS HIPS & SIPS ver 7.1.2. For any metadata questions, please download the Metadata.txt file with the dataset. Processing: 1. First a vessel configuration file was created where the co-ordinates of the motion sensor and DGPS antenna and patch test offsets were recorded. 2. A new project was then created and the vessel configuration file was attached to the project file. 3. The raw swath sonar data format, for each line was then imported into the project and the vessel information assigned to the data. 4. The motion sensor, DGPS and heading data were then cleaned using a filter that averaged adjacent data to remove artefacts. 5. Different sound velocity profiles data for each block were attached to the corresponding raw swath sonar data files to correct the depths for changes in the speed of sound through the water column. 6. Then a new blank field area was defined that specified the geographic area of study and the co-ordinate system used. The co-ordinates for the study areas were WGS84 UTM-XX to XXS. 7. The data was cleaned by applying several filters that removed any remaining spikes in the bathymetry data using user defined threshold values. A visual inspection of the data for each line was then undertaken where artefacts and noisy data not removed by the filtering process were removed manually using Swath and subset editors modules of the Caris HIPS/SIPS software. 8. All the data for each bathymetric, motion sensor, DGPS, heading, tide and sound velocity profile data were merged to produce the final processed data file. A weighted grid of the processed data was then created for each Block. In GA the tide was applied to the grid to correct for tidal variations and velocity corrections were performed to correct for different artefacts and mismatches. 9. The processed data was finally exported as grids soundings or false colored images for presentation and reporting and as final processed data in 32bit geotiff format at the optimum resolution the data can provide.

Notes

Purpose
To derive seabed information for the purpose of supporting the sustainable use of our marine environment and jurisdiction; strengthening our resilience to natural hazards and enabling location-based decisions and actions through best practice digital mapping, Earth observations and precise positioning.

Data time period: 1995-01-29 to 1995-03-11

This dataset is part of a larger collection

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147.53,-31.9 147.53,-50.42 89.94,-50.42 89.94,-31.9 147.53,-31.9

118.735,-41.16

text: westlimit=89.94; southlimit=-50.42; eastlimit=147.53; northlimit=-31.90; projection=4326

text: uplimit=-41; downlimit=6547; projection=3855

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Other Information
WEST10MV Fremantle Southeast Indian Ridge Hobart Bathymetry 1995 (1274/19950001S) [117.2 MB]

url : https://files.ausseabed.gov.au/survey/19950001S-FremantleSoutheastIndianRidgeHobartBathymetry-8-210m-1995.zip

Identifiers
ACN 633 798 857