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Piping Engineering Basics

4(14)
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₹ 14000
20 hrs
Next month
English
Enggenious (SAN Techno Mentors)
Enggenious (SAN Techno Mentors)
  • 7-day money-back guarantee
  • Session recordings included
  • Certificate of completion
Volume pricing for groups of 5+

Why enroll

 To familiarize participants with the main concepts and technical terms of fluid mechanics.

 To explain to participants the basic concepts of liquid flow and gaseous flow.

 To provide knowledge for carrying out pressure drop calculations and pipe line sizing.

 To introduce participants with various design rules, material selection, fabrication, erection and testing of piping.

 To learn when, where and how to conduct NDT of piping and the acceptance Criteria.

 To learn how to do piping stress analysis using manual and computerised methods

 To know related international standards and practices

Is this course for you?

You should take this if

  • You work in Automotive or Nuclear & Power
  • You're a Noise & Vibration Engineering / Civil & Structural professional
  • You want to build skills in Corrosion, GD&T
  • You prefer live, instructor-led training with Q&A

You should skip if

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

Course details

This training course is designed to give a detailed discussion of the subject of Process Piping Fundamentals with emphasis on the basic fluid mechanics aspect. The course also covers the design, fabrication, inspection and testing of Process piping in accordance with Process Piping code B 31.3 will be delivered such a way that most of technical terms and concepts will be clarified by both code statements and examples.

Important Piping requirements will be explained in a simple, straight forward manner, including the Short-cut methods in designing of Pipes, Pipe fitting and Flanges. The course is designed such that no previous background in ASME code is necessary. However, those familiar with the code will find the course immensely useful as regards understanding the code by “letter and spirit “and gaining a thorough systematic practical insight of the code.

The course is also desined to familarise the participants with process flow diagrams, piping & instrumentation diagrams, various process equipments including pumps, heat exchangers, vessels & towers etc. It covers line sizing calculations & their impact, selection criteria, dimensional standards, construction isometrics preparation, layouts, underground concepts and introduction to stress analysis using software

The course also provides the participants understanding of the concepts and methodology of stress analysis. Manual calculation methods involving graphs & monographs as well as computer methods (software) in evaluating piping and pipe support systems will be reviewed.

Upon successful completion of this course, participants will be able to:

  • Appreciate the meanings of different technical terms and concepts used in process piping design.

  • Be able to choose the appropriate Pump, valve for a certain application

  • Carry out certain types of pressure drop calculations.

  • Choose the right pipe size for a specific fluid flow.

  • Apply the pump characteristics curves for intended application.

  • Relate different physical properties to fluids and design of piping circuit.

  • Know the piping stress analysis methods

  • Learn how to do manual and computerised stress analysis of piping systems

  • Understand international standards and practices

Course suitable for

Key topics covered

1. Fundamentals of fluids. - Different types of fluids - Newtonian and non-Newtonian fluids - Flow pattern of various fluids

2. Flow of Fluids - - Concept of Reynolds number, Laminar Flow, turbulent flow, - Selection of type of flow and pipe line sizing, - Concept of economical velocity - Pressure Drop calculations of Liquid Flow

3. Flow of Gaseous Fluids - Flow characteristics of gas - Concept of Compressibility Factor - Economical velocity for gaseous flow - Selection of Pipe Size for gaseous flow - Selection of pipe size for steam flow - Pressure Drop calculations in gaseous flow

4. Piping for Vacuum Service - What is Vacuum - Effect of Vacuum on fluid flow - Concept of Compressibility Factor in vacuum service - Selection of Pipe Size for Vacuum service

5. Selection of Pump - What mean by Pumping of fluid - Various Types of Pumps - Flow and pressure characteristics of Centrifugal Pumps - Understanding of NPSHA and NPSHR - Optimization of selected pump for various liquid application - Optimization of centrifugal Pump for viscous applications

6. Selection of Valves - Various types of valves - Flow characteristic of various valves - Pressure drop in various valves (K factor) - Choosing a correct valve for intended application

7. Design of Piping System - Estimation calculations of available pressure - Estimation calculations of expected pressure drop - Calculation of Line size - Calculation of actual pressure drop based on piping routing - Trouble shooting in fluid flow

8. Piping Codes and Standards - Overview of ASME B 31.3 code - Brief Overview of ASME B 31.1 and 31.4 code - Overview of ASME B 16.5

9. Introduction to Stress Analysis - Basic stress concept in Stress Analysis, as applied to Expansion joints and pipe supports - Design of expansion joints - Various graphs, monographs used for checking flexibility requirements and selection of expansion joints

10. Introduction to software – - Inputs required for carrying out Stress analysis in software - Analysis of system using software - Review of output results to satisfy- Stress requirement as per code Loading for supports, Adequacy if flexibility Expansion joints to meet the flexibility requirements

Opportunities that await you!

Skills & tools you'll gain

CorrosionGD&TPackage managementPipe Stress AnalaysisPiping Layout

Career opportunities

Training details

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

₹14000

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Questions and Answers