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LIVE
eLEARNING
FROM
NEW
BPV Code, Section III: Introduction YORK!
Online Instructor-Supported Course EL509
This course introduces participants to the fundamentals of Section
III of the ASME Boiler Code with an in-depth review of the “Rules for ASME Pressure Vessels,
Construction of Nuclear Facility Components.” Participants learn the
ASME Code requirements for the design and construction of a pressure Piping and GDT Training Events
boundary of nuclear power plant components. The course also reviews
and discusses the requirements for planning, managing and conducting Learn from the pros who write the codes with
Q.A. programs for controlling the quality of activities performed under these training events presented by ASME Training
the jurisdiction of Section III. It also updates designers, procurement & Development, the leader in workforce learning
engineers and quality assurance engineers on the latest developments,
Addenda and Code Cases pertaining to the application of the Code. solutions for engineers and technical professionals.
You Will Learn To AVAILABLE THIS JULY 2016
• Explain the Classification of Components and Supports - Article NCA-2000
• Describe the Responsibilities and Duties - Article NCA-3000 API 579-1/ASME FFS-1 Fitness-for-Service Evaluation
• Identify the Quality Assurance Requirements - Article NCA-4000 (PD395)
• Identify Authorized Inspection requirements - Article NCA-5000 Instructor: Greg W. Brown, Ph.D. 25-27 July
• Explain the Application of Concepts - Article NB-3200
NUCLEAR eLEARNING • Identify Pipe Fittings and Components AVAILABLE THIS AUGUST 2016 22-23 August
• Identify the Class 1 Vessel Design requirements - Article NB-3300
B31.1 Process Piping Code (PD643)
• Describe Finite Element Analysis, Stress Classification & interpretation
25-28 July
Instructor: Jim E. Meyer, PE
of FEA Stress Results for NB-3200 Design
• Explain the Piping Stress Analysis as per ASME Code
• Describe Layout Considerations in Class 1 Piping Systems
• Identify Specific Component Support Requirements
Geometric Dimensioning and Tolerancing
22.5 Hours, 2.3 CEUs, 23 PDHs
Fundamentals 1 (PD570)
Member $595 / List Price $695
Instructor: Scott Neumann
BPV Code, Section VIII, Division 1: Design & Fabrication
BPV Code, Section III: Advanced Design and
of Pressure Vessels (PD442)
Construction of Nuclear Facility Components
Instructor: Kamran Mokhtarian, P.E. 22-24 August
Online Instructor-Supported Course EL524 Geometric Dimensioning & Tolerancing Combo Course
From suppliers’ shops to construction sites, this advanced course details (combines PD570 and PD561) (PD603)
Code requirements for the design, fabrication, construction and life Instructor: Scott Neumann 22-25 August
extension of nuclear power plants. Covering all aspects of the nuclear
pressure boundary as well as the application of methods for fabrication BPV Code, Section VIII, Division 1 Combo Course
of nuclear pressure boundary components, it provides the required skills (combines PD441 and PD442) (PD443)
for applying Code requirements for NDE (nondestructive examination) Instructor: Kamran Mokhtarian, P.E. 22-25 August
techniques for radiography, ultrasonic techniques and other forms of
NDE. It also outlines the requirements for performing hydro testing and Geometric Tolerancing Applications and Tolerance
leak testing. Case studies examine real scenarios encountered in the Stacks (PD561)
nuclear industry. This advanced course explores the requirements of
Section III of the ASME BPV Code. Instructor: Scott Neumann 24-25 August
You Will Learn To Inspections, Repairs and Alterations of Pressure
• Explain advanced concepts related to design by analysis and design by rule Equipment (PD441)
• Compare ASME B&PV Code with other international codes Instructor: Kamran Mokhtarian, P.E. 25-26 August
• Identify welding and heat treatment requirements
• Describe what is required for nondestructive examination and testing
22.5 Hours, 2.3 CEUs, 23 PDHs
Member $595 / List Price $695
Also available as a four-day Public Course: PD644, “Advanced Design
and Construction of Nuclear Facility Components per ASME Section III”
(see page 51)
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