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Defect Assessment in Pipelines

February 3  
7:30am
Registration & coffee
8:00am-5:00pm
Course
February 4  
8:00am-4:45pm
Course
Organized in association with Penspen Integrity
"Through this required program...an operator must evaluate all defects and...
develop a schedule that prioritizes the defects for evaluation and repair."

—from the Final DOT Rule: Pipeline Integrity Management in High Consequence Areas

Many transmission pipelines are now over 20 years old. This is "middle aged" in pipeline terms, and even the best designed and maintained pipeline will become defective as it progresses through its design life. Therefore, operators need to be aware of the effect these defects will have on their pipeline, and — more importantly — be able to assess their significance in terms of the continuing integrity of the pipeline. The increasing use of high-technology maintenance (for example, intelligent pigs) is helping pipeline owners to assess the condition of their lines, and if these modern maintenance methods are combined with modern defect-assessment methods, they can provide a very powerful, and cost-effective, tool. This course will present the latest defect-assessment methods to pipeline engineers and managers. These methods will range from simple, quick, assessment methods, to the more-detailed —fitness for purpose— analysis. The course is highly interactive and takes the form of lectures, workshops, and case studies.

Course Objectives
The course will cover methods available to assess the significance of defects detected in onshore and offshore pipelines. It will introduce simple analytical methods used to assess internal and external corrosion, dents and gouges, cracks (e.g. SCC), weld defects, and fatigue. The course is unique as it is a holistic approach to defect assessment, and it ensures the student appreciates all aspects of the subject, including repair and risk management.
Who Should Attend
Pipeline engineers, designers and service professionals who are involved with the maintenance, inspection, and repair of pipelines.
Course Notes

All delegates will receive a detailed set of lecture notes totaling more than 1100 pages, providing an invaluable reference document.

Continuing Education Units
Upon completion of the course, participants will be eligible to receive 1.2 Continuing Education Units (CEUs).
Lecturers
Course Program
DAY 1

7:30pm Registration, Coffee
8:00-5:00pm Course

Introduction to Basic Pipeline Engineering Principles
  • Basic pipeline design principles
  • Stresses in pipelines
  • Routing of pipelines
  • Basic pipeline operating and maintenance parameters
  • Maintenance and inspection methods
Introduction to Pipeline Defects - Why Pipelines Fail
  • How safe are pipelines?
  • How often do they fail?
  • What causes pipelines to fail?
  • Pipeline risks
  • History of pipeline defect assessment
Introduction to Fracture Mechanics (handouts and notes only, no lecture)
  • Basic theory
  • Brittle & ductile fracture
  • K, J, and CTOD
Fundamental Pipeline Defect Failure Relationships
  • Why pipeline defects fail
  • Fundamental failure relationships
  • Explanation of key parameters
How to Assess Corrosion Defects
  • Introduction to basic theory
  • Background, strengths and weaknesses
  • Methods to assess corrosion
  • ASME B31.G and RSTRENG methods
  • DNV, BG, etc., methods
  • Interacting defects
  • Universal curves for assessing corrosion defects.

Workshop: Corrosion Assessment using Fitness for Purpose

DAY 2

8:00am-4:45pm

How to Assess Gouges
  • Introduction to basic theory
  • Methods to assess gouges
  • Additional problems and concerns with gouges
How to Assess Dents
  • Introduction to basic theory
  • Methods to assess dents
  • Methods to assess dents containing gouges
  • Rock dents
  • Problems with fatigue loadings
How to Assess Cracks
  • Basic theory
  • The problems with cracks in pipelines
  • Stress corrosion cracking (low and high pH)
How to Assess Weld Defects
  • Welds in pipelines
  • Assessing defects in pipeline girth welds
  • Assessing non planar defects in welds
  • The EPRG girth weld defect guidelines
  • Fatigue design of girth welds

Setting Intelligent Pig Inspection Levels

  • Pigs - where they came from and what they can do.
  • Basic theory
  • Magnetic, ultrasonic pigs - their accuracy and limitations.
  • What pigs can detect
  • What operators want to detect
  • Setting intelligent pig inspection levels

Workshop: Setting Intelligent Pig Inspection Levels

Fracture Propagation and Arrest
  • Why fractures propagate
  • Brittle and ductile propagation
  • Fracture arrest
  • Calculating toughness requirements
Pipeline Repair and Rehabilitation
  • Repair and rehabilitation strategy
  • Response to discovering defects
  • What are the cost implications?
  • Types of repair and rehabilitation methods
  • Grinding
  • Weld deposition
  • Shells (including epoxy-filled)
  • Composite wraps
  • Cut outs
  • Mechanical clamps/connectors
  • Time to repair
Risk and Integrity Management and Analysis
  • What is risk and risk analysis?
  • Risk management around the world
  • Risk management in the USA
  • Risk management methods - API 1160 and ASME B31.8
  • Baseline and direct assessment - discussion item
  • Integrity Management Programs
  • Prioritisation schemes

Workshop: Setting Priorities

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Organized by:
Pipes & Pipelines International
Supported by:
ASME International Pigging Products & Services Association
the Journal of Pipeline Integrity Pipeline & Gas Journal
the In Line Inspection Association PRCI

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