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Design of Pressure Vessel using PV Elite – Design Requirement & Parameters banner

Design of Pressure Vessel using PV Elite – Design Requirement & Parameters

Design of Pressure Vessel using PV Elite – Design Requirement & Parameters banner
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Design of Pressure Vessel using PV Elite – Design Requirement & Parameters

3(70)
1318 views
COMPLETED

Tell us and we’ll notify you when the next batch is scheduled.

3 hrs
-
English
1318 views
Shanmugam V
Shanmugam VLead / Senior Mechanical Engineer/Static Equipment Engineer
  • 7-day money-back guarantee
  • Session recordings included
  • Certificate of completion
Volume pricing for groups of 5+

Why enroll

1. How elementary and advanced topics of Solid mechanics are applied in development of Pressure vessel codes and standards.

2. Theoretical background behind design code requirements which helps an engineer understand the strengths, weaknesses and applicability of the code requirements.

3. An insight into the newly introduced codes.

4. Bridging the gap between theoretical knowledge and code requirements.

5. University students who want to take up career in static equipment engineering and wants to learn about the most widely used Industrial standard.

6. Experienced engineers who want to understand the background of code rules and requirements

Is this course for you?

You should take this if

  • You work in Oil & Gas Upstream or Pharmaceutical & Healthcare
  • You're a Mechanical Engineering professional
  • You prefer live, instructor-led training with Q&A

You should skip if

  • You need a different specialisation outside Mechanical Engineering
  • You need fully self-paced, on-demand content

Course details

This course will cover basic and advanced topics of Pressure Vessel Engineering Design and Manufacturing requirement to provide a robust understanding of the background theory behind technical requirements of Pressure Vessel codes and standards. This will serve as a refresher course on core and advanced topics of Pressure Vessel Engineering to understand technical background of design and analysis as per codes & standards.
This course covers all important aspects of Pressure Vessel Design, Fabrication and testing, which comprises of
• Design, Analysis and Engineering requirement for Pressure Vessel
• Metallurgy and Material Selection while designing Pressure vessel
• Fabrication prerequisite while Pressure Vessel engineering
• Heat Treatment requirement for Pressure Vessel
• Testing & Inspection essentials for Pressure Vessel Design
All of above topics are covered in different modules of this course hence we encourage you to enroll all modules to learn all major and critical areas of Pressure vessel engineering.
Classifications of Static Equipment Engineering is a specialized discipline of Mechanical Engineering which covers the design of static equipments like Pressure vessels (Process Columns, Drums, Reactors, Separators, Drain vessel), Heat exchangers (Shell and Tube, Plate and Frame, Plate and Shell, Air Coolers), Atmospheric Tanks (Low pressure and LPG Tanks), Flare Stack in chemical, petrochemical, or hydrocarbon facilities. We have different courses to cover above listed equipment & do participate in all courses.

Course suitable for

Key topics covered

This module talks about fundamentals of Pressure vessel Design & Engineering. Following topics are covered in this module

1. Design Requirement & Parameters

a. Understanding design parameters

b. Thickness Calculation for Internal and External pressure

c. Nozzle Reinforcement calculation

Do enroll other module to learn more on fundamentals of Design of pressure vessel and understand ASME Code that are critical for a static equipment engineer.

Opportunities that await you!

Skills & tools you'll gain

PVElite

Career opportunities

Training details

This is a live course that has a scheduled start date.

COMPLETED

-

Tell us and we’ll notify you when the next batch is scheduled.

Questions and Answers

A: A: PSV set alone ignores allowable accumulation; that's underdesigned. B: PSV + 10% aligns with ASME overpressure logic when no higher upstream source is evident. C: Rounding upward isn't a code basis and changes MAWP. D: Arbitrary margin isn't a design rule and will inflate thickness without justification.

A: A: MAWP is directly tied to allowable stress via joint efficiency. B: Spot RT drops E to ~0.85; keeping 1.0 makes the shell look stronger than it is. C: CA is independent of weld quality. D: External pressure checks don't care about RT category.

A: A: Corrosion rates drop at low temperature. B: -35°C crosses the typical carbon steel MDMT threshold without impact testing. C: HIC needs wet H2S, not just cold metal. D: One-off blowdown isn’t fatigue-driving here.

A: A: Zero CA assumes perfect dryness forever; that’s not how plants age. B: 1.5 mm matches industry practice for clean gas. C: ASME doesn’t mandate a universal CA. D: 6 mm fits sour or erosive duty, not this service.