RaySense. Fiber Optic Distributed Acoustic Sensing for Pipeline Security and Leak Detection

Similar documents
RaySense. Fiber Optic Distributed Vibration Sensing (DVS) for Pipeline Security and Leak Detection

TOTAL PERIMETER SOLUTION

TOTAL PERIMETER SOLUTION

Pipeline Integrity Monitoring with DAS

Praetorian Fibre Optic Sensing

Praetorian Fibre Optic Sensing

Perimeter security using Fibre optics

Praetorian Fibre Optic Sensing

Architectural and Engineering Specification for a Fiber Optic Pipeline Integrity Monitoring System. FiberPatrol FP7000

Perimeter Intrusion Detection System

WG Railway Security Protection System

Pipeline Intrastructure Monitoring for Third-Party Interference Detection

The Fiber SenSys Perimeter Intrusion Detection System From JM Fiber Optics!

TPI DETECTION ON PIPELINE ROUTE BY USING EXISTING FIBRE OPTIC CABLES

WG Buried Fibre Cable Long Perimeter Detection System

Protecting Station Platform & Rail Perimeters. TransitVUE IDS The Latest in Fiber Optic Station Platform & Rail Perimeter Security Sensor Systems

GM Ultrasonic Gas Leak Detection Gas Detection at the Speed of Sound. How fast does your Gas Detection System detect leaks?

Distributed Condition Monitoring of Power Cables a Brief Update

Leak Detection - Application Note

Presented By. BEI Security

Protecting Network Data

Advancing Pipeline Safety

Fiber Optic Pipeline Monitoring System Preventing and detecting leaks in real time

Fiber Optic Cable Fence Disturbance Sensor

Home Intrusion Detection System

Installation Considerations for Pipelines

DAS fiber optic pipeline and powerline monitoring. Copyright OptaSense Ltd. 2019

Omnisens DITEST TM FIBER OPTIC DISTRIBUTED TEMPERATURE & STRAIN SENSING TECHNIQUE

Airport Perimeter Security

PIPELINE LEAKAGE DETECTION

INTREPID Perimeter Intrusion Detection System

SL-3 Vibration Sensor line A&E Specifications Page 1 of 12 SL-3 AE v doc

Architectural and Engineering Specification for a Fiber Optic Perimeter Intrusion Detection System. FiberPatrol FP1100X

Architectural and Engineering Specification for a Fiber Optic Perimeter Intrusion Detection System. FiberPatrol FP1150

7638 Standish Place Derwood, MD Tel: (301) Fax: (301) Page 1 of 12. Website:

RSL Fiber Systems, LLC

DATA CENTER SECURITY. March 2017 Anton Panaitescu

Leak Detection Systems. Workshop UNECE / Berlin. Ted Smorenburg SABIC Pipelines Netherlands

FlexPS. Architectural & Engineering. Specification for FlexPS. Architectural/Engineering Specification for a

LOCAL STORM DATA SHEET

Itron Water Loss Management Solutions. Advanced Digital Leak Detection Overview Session

WHITE PAPER FIBER OPTIC SENSING. Summary. Index. Introduction. About Fischer Connectors

GASSONIC Ultrasonic Gas Leak Detection. How fast does your Gas Detection System detect leaks? Because every life has a purpose...

WG Buried Cable Perimeter Detection System

CCTV, HOW DOES IT WORK?

Oil and Gas Pipeline Monitoring. Oil and Gas Well Monitoring. Power Line Monitoring. Highway Safety Monitoring

Gas Detection in Process Industry The Practical Approach

state of the art methane leak detection CHARM and GasCam 2011 October 13 th Dr. Axel Scherello

FiberSystem. Fiber Optic Linear Heat Detection for Special Hazard Applications

Product Specifications

Soil-embedded distributed fiber-optic sensors for monitoring pipelines, dams, embankments, railways and roads endangered by soil movements

Presented at 6 th Pipeline Technology Conference Hannover, Germany April 4-5, 2011

DETECTION AND LOCALIZATION OF MICRO AND MULTIPHASE LEAKAGES USING DISTRIBUTED FIBER OPTIC SENSING

RLDS - Remote LEAK DETECTION SYSTEM

Multi-layered Perimeter Protection Systems Quality detection systems for high security sites

WIDE SEARCH AREA HAND-HELD METAL DETECTION SET

Chapter 1. Introduction

Gas Value Chain Solutions. Randy Miller

Document Number March 23, 2016 Yokogawa Electric Corporation. Data Acquisition/Recorder. Data Acquisition and Monitoring. Paperless Recorder

INTREPID SINGLE-PLATFORM PERIMETER INTRUSION DETECTION AND MONITORING SYSTEM

SOLUTION MINING RESEARCH INSTITUTE

Committed to security

Sustain.Ability. Adrian Fielding Integrated Safety & Security Honeywell Users Group EMEA

LAB REPORT SUBMISSION COVER PAGE ETN4106 OPTOELECTRONICS AND OPTICAL COMMUNICATIONS

NSB-200S HOME INTRUSION DETECTION SYSTEM

OPTIMIC System Components SOUND SOLUTIONS FROM LIGHT TECHNOLOGY

Product Specifications

PROVEN PERIMETER PROTECTION NEW SINGLE-PLATFORM SIMPLICITY.

FOSS. Fiber Optic Stress Sensor. Kyungi Do, Korea Catalog

PERIMETER DEFENCE. Panorama Intruder Detection System Long Range, Day & Night, Automatic Panorama Intruder Detection

STRUCTURAL HEALTH MONITORING OF UNDERGROUND INFRASTRUCTURE

WHAT IS LASER ULTRASONIC TESTING?

LINEAR HEAT SERIES FIBER OPTIC LINEAR HEAT DETECTION SYSTEM

SYSTEMS GROUP. May Zilog and EE-SGI Present. epir TM. The Next Generation of PIR Motion Detector Technology. (Over View)

FIBER-OPTIC SYSTEM FOR MONITORING EXTENDED OBJECTS «FOSM»

Introduction to Fiber Optic Sensing

Communications. Sensing. Instrumentation. Delivering tomorrow s optical and photonic solutions today. BREAKTHROUGH PHOTONIC PRODUCTS

Airmux Market. Airmux Family Sept 2013 Slide1

M O T I O N DETECTORS. The Paradox series of motion detectors. combines advanced features and patented. technologies to provide a high level of

Link loss measurement uncertainties: OTDR vs. light source power meter By EXFO s Systems Engineering and Research Team

FIBER-OPTIC SENSING TECHNOLOGIES

FiberSensor Fiber Optic Intrusion Detection System (IDS)

Ultrasound: Protecting the Environment

2013 Honeywell Users Group EMEA. Adrian Fielding Security from Day One

Architectural and Engineering Specification for a Fence-Mounted Perimeter Intrusion Detection System. FlexZone

Real Time Pipeline Leak Detection on Shell s North Western Ethylene Pipeline

White Paper Fiber optic connections: check and clean first, then connect!

The Rise of Tier 2 Testing

OTDR II. Tier-2 Optical Time Domain Reflectometer for Multimode and Single-mode Fiber Cabling

FM Approved Fire & Gas Detection System

ISO INTERNATIONAL STANDARD. Fire detection and alarm systems Part 3: Audible alarm devices

FIRE & SAFETY SPRING 2016 EDITION

Model 6650SP. Filber Optic-Based UV-Fluorescence Oil-in-Water Analyzer

Leak Detection and Water Loss Control. Maine Water Utilities September 9, 2010

Artisan Technology Group is your source for quality new and certified-used/pre-owned equipment

Leak Detection. Ron Threlfall Manager, Leak Detection, Maintenance and Integration

Control of Display Data. Dollar Wheel Casino Games. Fluid Detection in Tubing

Innovative protection that combines power and flexibility

For personal use only

Transcription:

RaySense Fiber Optic Distributed Acoustic Sensing for Pipeline Security and Leak Detection 1

PIPELINE MONITORING AND SECURITY The oil & gas industry is currently facing a serious challenge in assuring spill and accident free operations of pipelines and associated infrastructure. To help meet the challenge of a zero incident target, the oil & gas industry must improve its technologies and ability to monitor their systems for safety in real time permanently and distributed along the length of the pipeline network. RaySense Fiber optic pipeline monitoring and security products are designed to provide a complete monitoring with no gaps, automated, real-time pipeline solution for prevention and corrective control of the most undesirable and dangerous events that can occur to pipelines, such as leaks and third party interference (TPI). These systems are designed to protect oil/gas/liquid pipelines and utility right of way corridors against TPI, including illegal tapping and unauthorized excavation, by providing an early warning of these TPI activities it is a preventative solution. The ability to detect small leaks is a further advantage offered by fiber optics. 2

The longest monitoring capability in the market Multi platform monitoring. High sensitivity along the whole cable Monitors both TPI and geo-hazard activity Early Detection of small leaks with world s only ultrasonic capability System operates in real-time, no post-processing No power required in the field, Total immunity to EMI / RFI / Lightning strikes. Simple to install High reliability Near zero field maintenance Long service life (greater than 20 years) Resistant to most environmental effects (humidity, high temperature, etc.) Very cost-effective solution ADVANTAGES OF FIBER OPTICS Main advantages offered by this technology over competitive systems include: 3

RBtec s RaySense Technology 4

RAYSENSE DISTRIBUTED VIBRATION SENSOR RBtec has a unique Distributed Vibration Sensor (DVS) system that is practical and effective in the prevention of oil or gas spills due to its unique ability to detect, locate and classify vibrations caused by physical activity (such as third party interference), while simultaneously monitoring for early-stage leaks, along the entire length of the pipeline, in real-time. In comparison with other competing technologies, RaySense is distinguished by the following main operational capabilities: 1. This unique technology acts as a continuous microphone, It operates over an extremely broad frequency range (3Hz to 500kHz) and is the world s first and only distributed ultrasonic detector. As a result, it can detect and locate early-stage leaks, directly and much earlier than other cable-based systems. 2. It is effective at discriminating different patterns of interferences and environmental/traffic noises from potentially dangerous operational events/threats. By reducing nuisance alarms, it alarms for events of true concern with an increased degree of confidence and thus allows for automatic response mechanisms with a practical degree of responsibility. 5

ADVANTAGES OF RAYSENSE The features of the RaySense system are: Double sensitivity over all other currently available transmissive interferometers. The same system can monitor Pipeline, fence, walls and underground. 500 khz bandwidth, an unprecedented wide frequency bandwidth, which covers the low range associated with TPI events and the very high range (ultrasonics) associated with early leak detection (nearest competitor has 20kHz). Seven configurable (physical) levels of sensitivity at any point along the same cable in order to optimize its performance in different field conditions. Dedicated, integrated hardware using FPGA and DSP microprocessors (i.e., faster, more reliable, more robust, lower power consumption) - not based on commercial computers, no cooling required. Advanced processing software operates automatically for minimizing nuisance alarms. Ultra-high speed data acquisition and real-time automated processing simplifies operation, significantly reduces amount of data produced (KB/MB vs GB/TB) and enables more events to be simultaneously processed reducing computing power and post-processing requirements. Extra fibers in the cable can be used for variety of extra singlemode fiber functions, such as telecoms, SCADA, CCTC transmission, PIDS integration, etc. Significantly lower cost, at least 30% less than the nearest similar competitive product. 6

Fiber Optic Pipeline Monitoring and Security Systems 7

PLACEMENT OF FIBER OPTIC CABLE Surface activities are detected by the highly sensitive buried sensor cable *Not to scale 8

PLACEMENT OF FIBER OPTIC CABLE Location of cable is variable. Three optional locations shown. Only one cable is required. Typical Depth 30-100 Centimeters 12/ 40 Inches Buried Pipeline *Not to scale 9

RaySense A New Generation Fiber-Optic TPI and Leak Detection System for Pipelines 10

RAYSENSE DISTRIBUTED VIBRATION SENSOR RBtec has a unique Distributed Vibration Sensor (DVS) system that is effective in the prevention of oil or gas spills due to its unique ability to detect, locate and classify vibrations caused by physical activity (such as third party interference), while simultaneously monitoring for early-stage leaks, along the entire length of the pipeline in real time. This unique technology acts as a continuous microphone, up to 50km in length, designed to monitor over an unprecedented quasi-dc to 500kHz bandwidth, to very distinctive frequencies generated by acoustic TPI and ultrasonic leak events, while discriminating between normal and ambient conditions. This is by far the widest frequency bandwidth available for any distributed fiber optic sensing technology, and is the world s first distributed fiber optic ultrasonic sensor. Consequently, this technology is capable of monitoring far beyond the normal frequency bandwidth of conventional DAS systems, which are typically <2kHz for a 40km reach. Another significant differentiating advantage of this transmissive, hybrid interferometer technology is that its frequency response and location resolution/accuracy are not degraded with increasing distance, unlike conventional DAS systems. 11

RAYSENSE LONG-HAUL CONFIGURATION Distance between powered locations is 100km of cable RaySense APU s 50km 50km 50km 50km Fiber optic splicing pits with passive terminations For long-haul pipeline applications, additional APU s can be placed every 100km of cable, usually coinciding with compression or pump stations along the pipeline. 12

13

WHAT IS THE RAYSENSE DVS? It possesses a very significant capability by acting as a continuous microphone designed to monitor over a quasi-dc to 500kHz bandwidth, to very distinctive frequencies generated by TPI and leak events, while discriminating between normal and ambient conditions. TPI events occur in the low frequency range of quasi-dc to 5kHz. Leaks of interest occur around 80kHz for gas pipelines and around 40kHz for oil/water pipelines, when the leak is small (pin-hole leak). As the hole increases in size, the frequency lowers to a point where audible sound is made and physical vibrations can be felt. All currently available, competing fiber optic based technologies are limited to a 10-20kHz range, which makes it impossible to detect early, small leaks of pipelines. The RaySense technology, with its 500kHz bandwidth, is uniquely capable for early leak detection (prior to audible sounds and physical vibrations being generated). 14

INFORMATION IN THE FREQUENCY DOMAIN RAYSENSE WIDE-BANDWIDTH CAPABILITY Feature of RaySense 15

INFORMATION IN THE FREQUENCY DOMAIN RaySense at 50km frequency bandwidth of 3Hz to 500kHz Other transmissive Technologies at 40km maximum frequency bandwidth of 20kHz DAS Technologies at 1km typical maximum frequency bandwidth of 10kHz DAS Technologies at 40km typical maximum frequency bandwidth of <2kHz DTS/DSS Technologies TPI TPI & Large Leak Detection Early Leak Detection <10Hz Region DTS and Geotechnical Applications Acoustic Region <20kHz E N TPI Events Acoustics and Ultrasonics of Leaks Ultrasonic Region >20kHz Environmental Noise 16

LR HAS HIGH PERFORMANCE OVER COMPETITIVE TECHNOLOGIES RaySense LR Technology C-OTDR Principal of signal to detect LR uses hybrid transmissive signal, so signal is large. Back Scatter signal is used, so signal is very small. Resolution Resolution is 6-20M/20-65 depend on soil condition through out 50KM/32miles. Resolution itself is very precise, 1-3 meter only if directly contacting the fiber. Signal spread over the soil, so area of disturbance itself covers a larger space. More and more distance, resolution goes down.1 meter resolution up to 5KM, and then 10-20 Meters on 40 KM distance. Sensitivity Double sensitivity. Cable can put in conduit, even losing 20% sensitivity, it is still 160% compared with other sensors. Sensitivity will alter depend on longer distance. Sensing speed will slow down since system has to emit photonic signal and wait for return. Multi platform monitoring The LR can monitor pipeline, fences, walls and buried applications with the same processor. The system can monitor only one application. Handy-cap to handle huge data No - LR has no handy-cap with data size. So much big data analysis and algorism can be built. Yes - C-OTDR has to handle huge data, so cannot make big data analysis unless hardware will be powerful. Massive data storage is vital. Cost of hardware Very low cost for high performance. Very high cost. Bandwidth Entire Length of 50KM, 500K HZ bandwidth. Only technology to offer to detect up to Ultrasonic region. Change bandwidth depend on length. It will goes down to 2K Hz in case of 40KM. Responding speed No change depend on length Much longer, slower to complete calculations. Cable LR requires 3 normal single mode fibers in a cable. Specially designed fiber cable changes sensitivity for different soil conditions. Single cable, no special cable solution to improve sensing capability. 17

tec ltd. Email: Info@rbtec.com www.rbtec.com THANK YOU! All images are for illustration only This document has been written and produced by RBtec to provide the reader with as much technical and other information as possible about RBtec its products and its services. Copying any of its contents without prior permission from RBtec is strictly prohibited. This information is provided for the purpose of initial evaluation of RBtec's products and services. In keeping with RBtec's policy of continuous development, RBtec Ltd. reserves the right to alter these specifications without notice. 18