Shraddha Technical

Pipe Stress Analysis Course

Pipe Stress Analysis Course - About

In order to properly design a piping system, the engineer must understand both a system’s behavior under potential loading, as well as regulatory requirements imposed upon it by governing codes. The intention of this course is to provide the appropriate background for engineers entering into the world of pipe stress analysis.

What will you gain

  • A general overview of Pipe Stress Analysis
  • Design requirements of the codes, as well as techniques applied to satisfy the requirements

  • Independent analysis capability for any piping configuration

Who should Attend

  • Professionals looking to gain a complete overview of Pipe Stress Analysis engineering, including:
  • Students / Graduate engineers (Chemical/Mechanical)
  • Conversion engineers switching disciplines or industries
  • Piping Engineers
  • Experienced diploma holders (Chemical/Mechanical)

Course Content Outline

The modules are listed below:
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1. Introduction:
  • Theory and development of Pipe Stress requirements
  • Fatigue Failure
  • Stress Intensification factor
  • Code Compliance
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    2. Stress Categories
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    3. Pipe Support Span Calculations:
  • Allowable Pipe Span Calculations
  • Spacing Pipe Supports
  • Supports selection and location
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    4. Standard compliance for various equipments
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    5. Piping Design for Loading types:
  • Design for Sustained Loads-Pressure, Weight
  • Design for Expansion loads
  • Hanger Design
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    6. Piping Configuration
  • Expansion joint evaluation
  • Piping nozzle evaluation
  • Restraint
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    7. Miscellaneous
  • Expansion Loops- types and sizing
  • Cold spring
  • Underground pipe
  • Flange leak analysis
  • Minimum Leg Required to Absorb Thermal Expansion
  • Bellow Application
  • Guide Spacing for Expansion Joints
  • Wind loads
  • Earthquake loads
  • Water hammer
  • Slug force
  • Thrust force calculations
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    8. Defining Load cases
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    9. Code Compliance: Stresses-sustained, Expansion, Operating, Occasional
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    10. Typical piping configuration for ease in analysis.
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