Title: Industrial Collaborators
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2Industrial Collaborators Field demonstration and
evaluation sites University Collaborators
3ISPIR provides strain monitoring using fiber
optic components that integrate both sensing and
data transmission functions in a single sensor
element.
- The sensing and communications component is
supported by an intelligent knowledge-based
system to - Enhance the quality of the information available
- for determining the cause of the fault
indication - Reduce the probability of false calls
4Advantages of Fiber-Optic Sensors
- Non-conductive immune to electromagnetic /
radio frequency interference - Stable no connector and lead line resistance
- Light weight small diameter, embeddable,
corrosion resistant - Flexible-can be mounted to any structural shape
- Easily bondable to most materials
- Multiplexing is possible, distributed sensing
possible - Response not restricted to intensity-based
system - Capable of intermittent readings no
reconnection errors - Can be connected to fiber optic telecom lines
5Information from Strain Sensors
- Pressure Change
- Corrosion
- Leaks
- Buckling
- Bending
- Axial Movement
- Cracks
- Temperature
6TYPES OF OPTICAL FIBERS USED IN SENSORS AND
TELECOMMUNICATION NETWORKS
SINGLE MODE FIBERS HAVE LESS ATTENUATION
7System Design
8Optical Strain Measurement Technologies
- Long Gage
- Gage length 1 to 30 m
- Resolution 10 microns
9The Long Gage
- 10cm to 100m long
- Prefabricated format for easy installation
- Static measurements
- 8 16 channel instrument, with optical switch
option up to 50 channels - Available in battery power configuration
- Measures average displacement over gage length
- Lead lengths 10km
- Displacement resolution 20 microns
10The Brillouin Gage
- The Brillouin Gage is a recent development
particularly well suited to pipeline monitoring - Efficient monitoring over long distances with
excellent spatial resolution - The Brillouin Gage will be used for the initial
deployment for relatively large-scale monitoring
of critical locations
11APPLICATION OF BRILLOUIN SENSOR SYSTEM TO MONITOR
PIPELINES
50km
PIPELINE
1xN OPTICAL SWITCH
OPTICAL FIBERS AT VARYING CIRCUMFERENTIAL LOCATION
S
BRILLOUIN INSTRUMENT
12Finite Element Analysis
Hoop strain for a pipe with reduced section (5-7
o'clock position)
Finite element mesh for pipe with reduced section
in the 5-7 oclock position.
13VIEW OF PIPE WITH THREE FOX-TEK 10m SENSORS IN
HOOP DIRECTION TO MEASURE WALL DEFECT
STRAINS (NRCan Laboratory, Ottawa)
UNIFORM PIPE SECTION NO CUTOUT
4 LONG CUTOUT 0.5 WIDE _at_ 50 DEPTH
24 LONG CUTOUT _at_60 DEPTH
14Laboratory Tests Full Scale
1m sensor 10m spiral sensor 0.1m sensor
15INSTALLATION OF SERPENTINE FT SENSOR ON PIPELINE
TO MONITOR WALL THINNING DUE TO EROSION/CORROSION
16WORST CASE MODEL SNAKE SENSOR
17PREFAB SNAKE SENSOR MOUNTED ON ADHESIVE MESH
18PREFABRICATED FIBER OPTIC COIL SENSOR FOR
MONITORING CRACK GROWTH IN PIPES
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20COIL SENSORS BONDED TO PIPE SURFACE
21LOAD (KN)
STRAIN X 10 -4
CHANGE IN SECTION STIFFNESS WITH CUMULATIVE LOAD
CYCLES
42 DIAMETER 0.625 THICK
APPLICATION OF COIL SENSOR TO MONITOR SINGLE
CRACK GROWTH THROUGH PIPE WALL
22APPLICATION OF COIL SENSORS TO HOT ELBOWS TO
MONITOR PRESSURE, TEMPERATURE AND INTERNAL WALL
THINNING
23PRESSURE TEST OF CORRODED PIPE SECTION USING FT
COIL SENSORS
24- BRILLOUIN DETECTION OF
- LEAKS IN PIPELINES
- DETECT THERMAL ANOMALY (gt3C)
- MONITOR GROWTH IN SENSOR RESPONSE
- SENSOR CAN BE LOCATED ADJACENT TO BURIED
PIPELINE - OR
- BONDED TO ABOVE GROUND PIPELINE
- SAME BRILLOUIN SENSOR CAN BE USED FOR LEAK
- AND
- ENCROACHMENT DETECTION
25Schematic of Demonstration
BRILLOUIN SENSOR SYSTEM TEST FOR THIRD PARTY
INTRUSION
load
3 fiber passes at depths of 10 cm 20 cm 30
cm 1 km fiber interrogated
1 km spool
Instrumentation
26Sample Results
27Third Party Intrusion
- Contour plots of fiber strain in a plane 10 cm
beneath surface for 150 lb load
2 MHz contours from 10 MHz to 20 MHz
14 MHz (240 g ) contour
Seven fibers at 10 cm intervals
10 cm / div
10 cm / div
28Snake Sensor
Ultrasonic Data 27 Oct 02
12 oclock
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30SIM-o-IP
- Structural Integrity Monitoring over IP
- SIM-o-IP provides
- An Internet Interface
- Internet Communications
- Knowledge-Based Interpretation and Diagnosis
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34Current Products
- FT Sensors
- Bare fiber
- Coil
- Crack
- High Temperature
- Ruggedized
- FT-B Rebar
35Current Products
- FTI-3300 Sensor Scanner
- Uses FT sensors
- 8 channels
- Local PC for data acquisition
- Remote or local operation
- Network capability
36Products in Development
- FTI-6000 Brillouin Sensor Scanner
- 25 km range
- Strain
- Temperature
- Vibration
- Remote or local operation
- Radio modem capable
- Network capable
37Products in Development
- FTI-3400 Remote Sensor Scanner
- FT sensors (4)
- Solar powered
- Radio modem
- Network capable
- Remote control
38Products in Development
- FTI-3410 Portable Sensor Scanner
- FT sensors (4)
- Battery powered
- Rugged field design
- Onboard data storage
39Products in Development
- FTI-3450 FT Multi-channel Sensor Scanner
- FTI-3475 FT Sensor Optical Switch
- FT sensors (4 - 50)
- Scanner base unit
- Companion switch unit
- Radio modem capable
- Network capable
- Remote control
40Products in Development
- FTI-5000 Bragg Sensor Scanner
- Serial Bragg sensors
- WDM system
- Multi-channel design
- Static dynamic
- Instrumentation room use
- Remote or local operation
- Network capability
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