Piping and Pipelines Courses

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ASME B31.12 Hydrogen Piping and Pipelines

19 Lessons
30 hours

ASME B31.12 Standard on Hydrogen Piping and Pipelines contains requirements …

What you'll learn
Hydrogen Technologies and Market Players
Global Policies
Describe the scope of B31.12
Explain the design requirements of B31.12
Identify materials requirements
Explain B31.12 requirements for fabrication, assembly, and erection
Explain the B31.12 requirements for inspection, examination, and testing

Fundamentals of Pumps and Their Selection for Optimum System Performance

30 hours

Learn the fundamentals, selection, installation, operation, maintenance, and troubleshooting of …

What you'll learn
Calculate the pressure loss in a pipeline due to friction for circular and non circular ducts
Determine the pipe diameter that minimizes first plus operating costs of a piping system
Generate a system curve for a pipeline
Identify the testing methods used to obtain a performance map for a centrifugal pump
Employ the system curve to select an efficient centrifugal pump
Explain how to predict when cavitation will occur and identify the necessary steps to avoid it
Explain how to use dimensional analysis to correlate experimental data for a pump
Explain how the specific speed is determined
Apply affinity laws to predict off-design behavior for a pump
Identify types of positive displacement pumps
Examine common methods of measuring flow rate in a pipeline
Identify the types of meters available for flow rate measurement
Generate calibration curves for venturi, orifice, and elbow meters
Describe the different types of valves that are commercially available
Explain how to select the correct valve for a piping system
Identify and avoid problems by selecting the correct valve
Explain how to install, operate and maintain valves
Describe the process of diagnosing and troubleshooting valve problems

B31.1 Power Piping

19 Lessons
30 hours

Employ the ASME B31.1 requirements throughout the entire system lifecycle …

What you'll learn
Identify the difference between “Design by Rule” and “Design by Analysis” codes.
Discover the principal failure modes of piping components and where to look for them.
Recognize the difference between pressure component design and structural design.
Investigate the importance of piping flexibility.
Discuss how to develop stress intensification factors.
Recognize how to qualify nonstandard fittings and joints.
Identify materials selection and limitations, fabrication rules and their bases
Explain welding qualification requirements, inspection, examination, and testing requirements
Identify the Code requirements for power piping maintenance

B31.3 Process Piping

26 Lessons
30 hours

Apply the ASME B31.3 Code requirements throughout the entire process …

What you'll learn
Identify the responsibilities of personnel involved in the design, fabrication, assembly, erection, examination, inspection, and testing of process piping
Describe the scope and technical requirements of the ASME B31.3 Code
Apply and implement the quality requirements that are defined in the ASME B31.3 Code

Nuclear Piping Systems ASME BPV Code, Section III and ASME B31.1: Design, Integrity-Operability Assessment, and Repairs

26 Lessons
20 hours

Apply ASME Section III, Division 1, Subsections NB/NC/ND to the …

What you'll learn
Describe Class 1, Class 2/3, and B31.1 nuclear piping design requirements
Explain the differences between Class 1, Class 2/3, and B31.1 Piping Systems
Describe the NRC regulatory requirements related to ASME III and B31.1 Piping Systems
Evaluate normal operating loads (pressure, weight, thermal expansion)
Evaluate postulated design loads (seismic, water hammer, vibration, pipe break, etc.)
Determine how to make the correct and cost-effective decisions in the design and modification of nuclear piping
Evaluate corroded (wall-thinning) nuclear piping
Evaluate crack-like flaws in nuclear piping
Assess operability of piping systems for abnormal conditions

B31.8 Gas Transmission & Distribution Piping System

14 Lessons
30 hours

Gain an understanding of ASME B31.8 including design, operation, maintenance, …

What you'll learn
Explain the causes and modes of pipeline failure
Describe the considerations for material specifications, pipe manufacturing, and pipe joining
Estimate pipeline stresses from external loading
Explain how to evaluate pipeline defects
Identify pipeline repair techniques
Identify the elements of pipeline integrity
Explain how code requirements address these issues
Explain the differences between B31.8 and US DOT gas pipeline regulations

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