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            <title>BlueView Spool Piece Metrology</title>
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            <description>&lt;p&gt;This movie illustrates a novel new underwater measurement system that combines a new acoustic 3D scanning tool underwater combined with 3D scanning laser above water.  Quick to deploy and accurate enough to calculate the required angular and range measurements, the BlueView 3D Scanning Multibeam Sonar creates more than just a table of discrete measurement values. Rather, it produces a rich 3D point cloud with millions of data point measurement. This data can be rendered to provide a clear 3D picture of preinstalled assets and their surrounding topography from which accurate range and angular measurements can be quickly and easily be made.  The resulting 3D model can also be used as a full as-built/as-found record beneficial for aiding future intervention based work.&lt;br&gt;&lt;br&gt;&lt;a href="http://www.teledynemarine.com/blog/Blueview-Metrology/"&gt;Read more about BlueView Metrology&amp;nbsp;&lt;/a&gt;&lt;br&gt;&lt;br&gt;&lt;p&gt;A non-intrusive tool, the principle of operation is similar to that of 3D topographic laser scanning, a technology used by the terrestrial survey industry for many years. Now for the first time an acoustic-based counterpart has been developed to carry out similar work underwater.  In fact, the data produced by this acoustic system is so similar to optical laser data that it is very successfully processed with optical laser processing software. This enables full access to a wide range of pre-existing software tools as well as unique applications combining laser and acoustic data.&lt;/p&gt;&lt;p&gt;Following a series of dry-dock trials by global subsea electronics supplier, Seatronics to help prove the concept and benchmark accuracies, adoptive support from Technip and input from survey company Star Net Geomaticshave led to this device being quickly moved from the lab to open water operations with several successfully projects now completed with major O&amp;amp;G companies including Total E&amp;amp;P UK Ltd, Talisman Energy (UK) Ltd  and Fairfield Energy.&lt;/p&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="http://www.video.teledynemarine.com/photo/15076331/blueview-spool-piece-metrology"&gt;&lt;img src="http://www.video.teledynemarine.com/13968029/15076331/954b05ff1040672e084ad9495cb42dd7/standard/download-1-thumbnail.jpg" width="600" height="306"/&gt;&lt;/a&gt;&lt;/p&gt;</description>
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            <pubDate>Tue, 20 Dec 2016 15:53:53 GMT</pubDate>
            <media:title>BlueView Spool Piece Metrology</media:title>
            <itunes:summary>This movie illustrates a novel new underwater measurement system that combines a new acoustic 3D scanning tool underwater combined with 3D scanning laser above water.  Quick to deploy and accurate enough to calculate the required angular and range measurements, the BlueView 3D Scanning Multibeam Sonar creates more than just a table of discrete measurement values. Rather, it produces a rich 3D point cloud with millions of data point measurement. This data can be rendered to provide a clear 3D picture of preinstalled assets and their surrounding topography from which accurate range and angular measurements can be quickly and easily be made.  The resulting 3D model can also be used as a full as-built/as-found record beneficial for aiding future intervention based work.Read more about BlueView MetrologyA non-intrusive tool, the principle of operation is similar to that of 3D topographic laser scanning, a technology used by the terrestrial survey industry for many years. Now for the first time an acoustic-based counterpart has been developed to carry out similar work underwater.  In fact, the data produced by this acoustic system is so similar to optical laser data that it is very successfully processed with optical laser processing software. This enables full access to a wide range of pre-existing software tools as well as unique applications combining laser and acoustic data.Following a series of dry-dock trials by global subsea electronics supplier, Seatronics to help prove the concept and benchmark accuracies, adoptive support from Technip and input from survey company Star Net Geomaticshave led to this device being quickly moved from the lab to open water operations with several successfully projects now completed with major OG companies including Total EP UK Ltd, Talisman Energy (UK) Ltd  and Fairfield Energy.</itunes:summary>
            <itunes:subtitle>This movie illustrates a novel new underwater measurement system that combines a new acoustic 3D scanning tool underwater combined with 3D scanning laser above water.  Quick to deploy and accurate enough to calculate the required angular and range...</itunes:subtitle>
            <itunes:author>The Teledyne Marine Channel</itunes:author>
            <itunes:duration>01:08</itunes:duration>
            <media:description type="html">&lt;p&gt;This movie illustrates a novel new underwater measurement system that combines a new acoustic 3D scanning tool underwater combined with 3D scanning laser above water.  Quick to deploy and accurate enough to calculate the required angular and range measurements, the BlueView 3D Scanning Multibeam Sonar creates more than just a table of discrete measurement values. Rather, it produces a rich 3D point cloud with millions of data point measurement. This data can be rendered to provide a clear 3D picture of preinstalled assets and their surrounding topography from which accurate range and angular measurements can be quickly and easily be made.  The resulting 3D model can also be used as a full as-built/as-found record beneficial for aiding future intervention based work.&lt;br&gt;&lt;br&gt;&lt;a href="http://www.teledynemarine.com/blog/Blueview-Metrology/"&gt;Read more about BlueView Metrology&amp;nbsp;&lt;/a&gt;&lt;br&gt;&lt;br&gt;&lt;p&gt;A non-intrusive tool, the principle of operation is similar to that of 3D topographic laser scanning, a technology used by the terrestrial survey industry for many years. Now for the first time an acoustic-based counterpart has been developed to carry out similar work underwater.  In fact, the data produced by this acoustic system is so similar to optical laser data that it is very successfully processed with optical laser processing software. This enables full access to a wide range of pre-existing software tools as well as unique applications combining laser and acoustic data.&lt;/p&gt;&lt;p&gt;Following a series of dry-dock trials by global subsea electronics supplier, Seatronics to help prove the concept and benchmark accuracies, adoptive support from Technip and input from survey company Star Net Geomaticshave led to this device being quickly moved from the lab to open water operations with several successfully projects now completed with major O&amp;amp;G companies including Total E&amp;amp;P UK Ltd, Talisman Energy (UK) Ltd  and Fairfield Energy.&lt;/p&gt;&lt;/p&gt;&lt;p&gt;&lt;a href="http://www.video.teledynemarine.com/photo/15076331/blueview-spool-piece-metrology"&gt;&lt;img src="http://www.video.teledynemarine.com/13968029/15076331/954b05ff1040672e084ad9495cb42dd7/standard/download-1-thumbnail.jpg" width="600" height="306"/&gt;&lt;/a&gt;&lt;/p&gt;</media:description>
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            <title>BlueView Spool Piece Metrology Testing</title>
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            <description>&lt;p&gt;This sonar imagery was taken during spool piece metrology testing in Peterhead Scotland. Pipe Flanges where positioned around an empty drydock, a ground based survey was performed, the drydock was then flooded, and a 3D acoustic scan was made of the site. Using standard laser scanning software packages, piping components were modeled to the point cloud data, and engineering CAD drawings of the scene were produced. Not only is this method faster, it provides much more information about the space between the flange ends for project planning.&lt;/p&gt;&lt;p&gt;&lt;a href="http://www.video.teledynemarine.com/photo/15076379/blueview-spool-piece-metrology-testing"&gt;&lt;img src="http://www.video.teledynemarine.com/13968030/15076379/fada96801b090391a397c3cf5ff4e5e6/standard/download-1-thumbnail.jpg" width="600" height="450"/&gt;&lt;/a&gt;&lt;/p&gt;</description>
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            <pubDate>Tue, 20 Dec 2016 15:53:39 GMT</pubDate>
            <media:title>BlueView Spool Piece Metrology Testing</media:title>
            <itunes:summary>This sonar imagery was taken during spool piece metrology testing in Peterhead Scotland. Pipe Flanges where positioned around an empty drydock, a ground based survey was performed, the drydock was then flooded, and a 3D acoustic scan was made of the site. Using standard laser scanning software packages, piping components were modeled to the point cloud data, and engineering CAD drawings of the scene were produced. Not only is this method faster, it provides much more information about the space between the flange ends for project planning.</itunes:summary>
            <itunes:subtitle>This sonar imagery was taken during spool piece metrology testing in Peterhead Scotland. Pipe Flanges where positioned around an empty drydock, a ground based survey was performed, the drydock was then flooded, and a 3D acoustic scan was made of...</itunes:subtitle>
            <itunes:author>The Teledyne Marine Channel</itunes:author>
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            <media:description type="html">&lt;p&gt;This sonar imagery was taken during spool piece metrology testing in Peterhead Scotland. Pipe Flanges where positioned around an empty drydock, a ground based survey was performed, the drydock was then flooded, and a 3D acoustic scan was made of the site. Using standard laser scanning software packages, piping components were modeled to the point cloud data, and engineering CAD drawings of the scene were produced. Not only is this method faster, it provides much more information about the space between the flange ends for project planning.&lt;/p&gt;&lt;p&gt;&lt;a href="http://www.video.teledynemarine.com/photo/15076379/blueview-spool-piece-metrology-testing"&gt;&lt;img src="http://www.video.teledynemarine.com/13968030/15076379/fada96801b090391a397c3cf5ff4e5e6/standard/download-1-thumbnail.jpg" width="600" height="450"/&gt;&lt;/a&gt;&lt;/p&gt;</media:description>
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