Data

CCS - MV Seca 2019 V02 RUV

Commonwealth Scientific and Industrial Research Organisation
Thomson, Damian ; Haywood, Mick ; Orr, Melanie ; Strzelecki, Joanna ; Mattio, Lydiane ; Stephenson, Sarah
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ctx_ver=Z39.88-2004&rft_val_fmt=info%3Aofi%2Ffmt%3Akev%3Amtx%3Adc&rfr_id=info%3Asid%2FANDS&rft_id=info:doi10.25919/5e410219e80a1&rft.title=CCS - MV Seca 2019 V02 RUV&rft.identifier=https://doi.org/10.25919/5e410219e80a1&rft.publisher=Commonwealth Scientific and Industrial Research Organisation&rft.description=Project Overview: A range of solutions will be required to reach globally agreed emissions reductions targets for carbon dioxide (CO2). Carbon capture and storage (CCS) is part of the suite of technologies that will contribute to lowering atmospheric emissions of CO2 from Australia's energy system. There are a wide variety of technologies at various stages of technical and commercial readiness, with more development underway for cost effective CO2 capture and storage. Our research will provide new knowledge to inform cost-efficient measurement, monitoring and verification (MMV) of the environment of CCS projects in coastal waters.\n--o--\nTwo remote stereo underwater video RUV units were built and supplied by SeaGIS Pty. Ltd. (www.seagis.com.au). The RUV systems consisted of a pair of GoPro Hero 5 cameras mounted inside waterproof housings that were fitted to a stainless steel frame. The frames were supplied with breakaway legs, so that the units could be reliably retrieved in the event of fouling on the seabed. Breakaway legs also enabled ballast to be readily adjusted to suit the prevailing conditions. To aid in the deployment and recovery of the RUV units, each unit was attached to a surface buoy with 8 mm rope.\n\nNOTE: RAW image and video files only\n&rft.creator=Thomson, Damian &rft.creator=Haywood, Mick &rft.creator=Orr, Melanie &rft.creator=Strzelecki, Joanna &rft.creator=Mattio, Lydiane &rft.creator=Stephenson, Sarah &rft.date=2020&rft.edition=v1&rft.coverage=westlimit=147.3; southlimit=-38.35; eastlimit=147.5; northlimit=-38.17; projection=WGS84&rft_rights=CSIRO Data Licence https://research.csiro.au/dap/licences/csiro-data-licence/&rft_rights=Access to the data is restricted&rft_rights=All Rights (including copyright) CSIRO 2019.&rft_subject=RUV&rft_subject=VIDEO&rft_subject=UNDERWATER&rft_subject=Conservation and biodiversity&rft_subject=Environmental management&rft_subject=ENVIRONMENTAL SCIENCES&rft_subject=Environmental management&rft.type=dataset&rft.language=English Access the data

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All Rights (including copyright) CSIRO 2019.

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Brief description

Project Overview: A range of solutions will be required to reach globally agreed emissions reductions targets for carbon dioxide (CO2). Carbon capture and storage (CCS) is part of the suite of technologies that will contribute to lowering atmospheric emissions of CO2 from Australia's energy system. There are a wide variety of technologies at various stages of technical and commercial readiness, with more development underway for cost effective CO2 capture and storage. Our research will provide new knowledge to inform cost-efficient measurement, monitoring and verification (MMV) of the environment of CCS projects in coastal waters.
--o--
Two remote stereo underwater video RUV units were built and supplied by SeaGIS Pty. Ltd. (www.seagis.com.au). The RUV systems consisted of a pair of GoPro Hero 5 cameras mounted inside waterproof housings that were fitted to a stainless steel frame. The frames were supplied with breakaway legs, so that the units could be reliably retrieved in the event of fouling on the seabed. Breakaway legs also enabled ballast to be readily adjusted to suit the prevailing conditions. To aid in the deployment and recovery of the RUV units, each unit was attached to a surface buoy with 8 mm rope.

NOTE: RAW image and video files only

Available: 2020-02-11

Data time period: 2019-07-25 to 2019-07-27

This dataset is part of a larger collection

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147.5,-38.17 147.5,-38.35 147.3,-38.35 147.3,-38.17 147.5,-38.17

147.4,-38.26

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