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The enclosure was connected to the load shackle via a 1 metre cable and housed within a float to keep it away from the mooring lines, to avoid any possibility of it becoming entangled during stormy seas.
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The enclosure was connected to the load shackle via a 1 metre cable and housed within a float to keep it away from the mooring lines, to avoid any possibility of it becoming entangled during stormy seas.
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We were contacted by a leading Canadian aquaculture company who were looking for a monitoring system that could log the tension in mooring lines that anchored tanks used for the farming of salmon to the sea bed. They had seen the SHK-B load
shackle range on our website, but as it would be located at a depth of around 4.5 metres, needed a special subsea version. An initial system was required for testing purposes (carried out in a tow tank), but if successful multiple systems would be fitted to the fish tanks out in the field. The requirement was to monitor the loads on the mooring
engineers designed an IP68 enclosure for housing the data logging electronics, which was simple to open to facilitate easy access to the SD card and to replace the batteries. Lithium batteries were chosen to provide maximum battery life (around 90 days) and the data logger chosen featured low noise, high resolution and low power consumption, with the provision for 2 readings per minute. Data output was in Excel format for straight forward importation to a PC for analysis.
The enclosure was connected to the load shackle via a 1 metre cable and housed within a float to keep it away from the mooring lines, to avoid any possibility of it becoming entangled during stormy seas.
lines to check that they did not exceed safe operational limits, particularly during severe weather conditions. A data logger was required to record measurement readings from the load shackle, which as well as being suitable for long term submersion underwater, also needed to be able to operate unattended for long periods between retrieval of the monitoring system for data download. LCM System engineers designed an IP68 enclosure for housing the data logging electronics, which was simple to open to facilitate easy access to the SD card and to replace the batteries. Lithium batteries were chosen to provide maximum battery life (around 90 days) and the data logger chosen featured low noise, high resolution and low power consumption, with the provision for 2 readings per minute. Data output was in Excel format for straight forward importation to a PC for analysis.
The enclosure was connected to the load shackle via a 1 metre cable and housed within a float to keep it away from the mooring lines, to avoid any possibility of it becoming entangled during stormy seas.
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2. Agenda
2
1 Pig Tracking History
2 SmartTrack™
System Overview
3 Key Differentiators
4 How It Works
5 Locating Pigs
6 SmartTrack™
System Family
7 Technical Summary
8 Case Study
9 Conclusion
3. Pig Tracking
Problems
Pig stuck / lost in the
line. Through wall
communication has
become critical criteria
for pigging systems.
3
Solution
Accurate tracking &
detection..
5. • Through-wall communication system.
• Accurately tracks, detects, positions
and provides real-time monitoring.
• • Operator flexibility to reconfigure
• parameters.
• • Used in onshore / offshore
environments.
• Eliminates use of radioactive isotopes.
5
SmartTrack™
System Overview
6. Battery
Conservation
Battery power can
be conserved by
switching
transponder to
dormant mode.
Operating mode
(e.g., dormant /
active) of
transponder can
be changed while
it is in the pipeline
Activates/
deactivates
transponder.
Transmitted data
can be stored
and displayed
remotely.
Monitors internal
pressure or
temperature.
Signal can be
relayed using
subsea acoustic
communication (up
to 5 km (3.1 mil) or
topside radio link
(up to 80 km). 6
Key Differentiators
Remote
Control
Real-time
Monitoring
Accurate
Tracking
Pig can be
located within 2
inches of its
location.
Signal from
multiple pigs can
be detected
simultaneously.
11. 11
SmartTrack™ Transponder
• Each transponder has a
unique identity code that makes
it possible to identify each pig.
• Identify up to 16 pigs
• Batteries last longer (365 days or
more) in dormant mode.
• May be used as a pig body.
• Retrofitted for use with cleaning
or inspection.
• DNV 09 ATEX 55935X
• Zone 1, Ex d IIB T6
Tracks &
Identifies
Extended
Battery
Modular
ATEX
Certified
(only D116)
12. Send pressure
inquiries.
Activate/deactivate
dormant mode.
Change operating
parameters (e.g.
frequency, signal
rate, ID, or power
level).
Connects via acoustic cable or radio link.
Topside transceiver connects wireless to
PDA
Subsea Topside ROV Onshore
Tracks & Identifies Pigs
Communicates
Through Pipe Wall
Multi-Functional
Multiple Connectivity
Option
Placement
SmartTrack™ Transceiver
12
13. • Wireless subsea
acoustic link.
• Locate, track and identify
SmartPlug®
tool and pigs.
• Placed parallel to pipeline.
• Up to 5 km (3.1 mil) range.
• Powered by lithium or alkaline
batteries.
• Last for 7 to 365 days.
SmartTrack™
Subsea Communications
13
15. 15
Situation: Riser damaged on North Sea platform.
Challenge: Repair riser, replace topside pipework
production system while maintaining production.
Solution:
•Isolate damaged riser section from gas
inventory with three high friction pigs.
•SmartTrack™ system tracks pigs, monitors pipeline
pressure during repair work while maintaining flow.
Results:
•Riser repaired while gas flowed.
•Reduced downtime = reduced costs.
•No impact on environment.
Case Study
16. 16
• Most advanced tracking system.
• Tracks with pinpoint accuracy.
• Reliably monitors internal conditions.
• Enables change of operating
parameters during operation.
• Highly versatile.
• Field-proven = 300+ interventions.
Conclusion - SmartTrack™
System Family