Petroleum, Oil , Gas Training Courses

Process Equipment & Piping Systems: Application, Design & Operation

Duration
2025-02-17 10 Days 2025-02-28
Attendance

Hotel Meeting Room

Hotel Meeting Room
Course code
OG-300
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City / venue
Vienna

Classroom

Fees / hours
7450 $ | 50 Hours

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Course details

Overview ?

The Course

The mechanical integrity and reliability of process equipment and piping systems can only be achieved if they are designed by competent engineers and operated and maintained effectively within the design envelope, namely, the integrity operating window (IOW).
This course provides the appropriate mix of fundamentals, methodologies, best industry practices, and practical tools to enhance the competencies and improve the performance of design, operation and maintenance technical professionals individually and collectively with the objective of adding value to the organization and improving the plant safety and reliability.

The Structure

Module 1 - Process Equipment & Piping Systems: Application, Design & Operation
Module 2 - Process Equipment & Piping Systems: Failures, Failure Prevention and Repairs

The Goals
The key objectives of this comprehensive course are as follows:
  • To increase the participants' awareness and understanding that mechanical integrity of process equipment and piping systems depends jointly on the proper design, operation, condition assessment, and maintenance of the equipment, underscoring their vital individual and team roles in managing change.
  • Provide participants with practical and sound methods and tools to enable them to carry out basic design calculations for pressure equipment in accordance with applicable industrial codes, standards and best practices .
  • To provide the participants with a clear understanding of the degradation mechanisms that process equipment could be subjected to over their operating life, how to identify them, predict and determine their impact, and what appropriate measures can be taken to prevent and control the resultant damage .
  • To provide the participants with the knowledge and failure analysis skills they need to conduct damage and failure analysis so as to prevent similar failures from happening .
  • To enhance the knowledge and skills of the participants in hazard identification and analysis; and in risk assessment and management .
The Benefits
  • Delegates will enhance their knowledge and expertise in pressure equipment and piping system design, and will be equipped with structured procedures and effective guidelines to perform design calculations .
  • Participants will gain a sound working knowledge of the interdependence of design, operation, and maintenance on integrity, reliability and cost-effectiveness of piping systems .
  • Participants will extend their knowledge of the requirements and application of relevant sections of the ASME Boiler and Pressure Vessel Code and B31 Piping Codes, as well as relevant API Codes, standards, and Recommended Practices such as API 510 and 570 in pressure equipment and piping system design, operation, inspection repairs and alterations .
  • The delegates will gain sound and practical understanding of the major degradation mechanisms that affect process equipment and piping systems, how to predict them, how to assess their impact on process equipment over their operating life, and how to prevent and control these degradation and damage mechanisms using best industry practices including API 571 and API 580 .
  • Participants will add to their ability and skills in process equipment and piping failure detection and analysis, estimating failure consequences, and conducting level 1 fitness-for-service assessments in accordance with API/ASME 579 .
  • The Results
  • This course will help the company achieve measurable improvement in mechanical integrity, as demonstrated by reduction in failure incidents, through improved competency in design as well as through effective interaction and collaboration between the engineering, operation and maintenance functions. As a result, company will be able to enhance its loss prevention and safety performance .
  • The company will be able to enhance its ability to use risk-based inspection & maintenance, fitness-for-service assessments, and risk assessment methodologies to quantify and prioritize risks, and to allocate resources for optimum benefit. This will result in lower life cycle costs while complying with codes, standards, and other regulatory requirements .
  • The Core Competencies
  • Delegates will enhance their competencies in the following areas :
  • Working knowledge in mechanical design of pressure equipment and piping systems in compliance with applicable codes, standards, and regulations - ASME B&PVC Section VIII, B31.3
  • The inter-dependence of design, operation, and maintenance for achieving mechanical integrity of pressure equipment and piping systems
  • Understanding, prediction and Identification and assessment of active degradation mechanisms and the failures they may cause
  • Failure investigation techniques and root cause analysis
  • Application of risk-based methodologies in inspection and maintenance - API 580
  • NDT methods and their effective application - ASMEB&PVC Section V
  • Performing Level 1 fitness-for-service assessments - API 579
  • Engineering materials properties and selection criteria for specific applications
  • Hazard identification and risk analysis and management
The Programme Content
Module 1 : 
Process Equipment and Piping Systems: Application, Design & Operation
Key Design Considerations, Guidelines and Practices
  • Process Equipment - An Overview
  • Plant Integrity and Reliability
    • Interdependence of engineering, operation and maintenance
    • Management of change
  • Fitness for Purpose
    • Service conditions, equipment sizing and functional performance
    • Business-Focused-Facilities – Appropriate quality at lowest life cycle cost
  • Safety by Design
    • Worst foreseeable credible scenarios, safeguarding, best industry practices
    • Codes, Standards, Industry Practices
  • Compliance with Regulations and Acts - HS&E requirements and considerations
Design and Operation of Pressure Equipment
  • Pressure Vessels and Reactors
    • Materials of construction and standards
    • Basic Design Methodology
    • ASME Boiler and Pressure Vessel Code Sections 2, 5, 8 and 9
    • Worked examples
  • Storage Tanks
    • Types and application; cone roof tanks, floating roof tanks
    • Basic design methodology
    • Overview of API 650
  • Piping Systems
    • Materials of construction and standards
    • Basic Design Methodology – hydraulic design, pressure integrity, mechanical integrity
    • ASME B31.1 and B31.3
    • Piping flexibility and support
    • Piping system components – valves and fittings; classes, ratings
    • Worked Examples
  • Overpressure Protection
    • Types and application of pressure relieving devices
    • Code requirements
    • Sizing methodology: API 520 and 521
    • Specific operation and maintenance requirements: API 576
Design and Operation of Thermal Equipment
  • Process Heaters
    • Types and configuration; box type, vertical cylindrical type
    • Thermal and mechanical design
    • API 560, API 530
  • Boilers
    • Types and configuration; watertube, firetube and waste heat recovery boilers
    • Fundamentals of design and operation
    • Operating efficiency and testing
    • ASME B&PVC Section 1 and Section 4, ASME PTC-4
  • Heat Exchangers
    • Types and application; Shell & Tube Heat Exchangers, Plate Heat Exchangers, Air Cooled Heat Exchangers
    • Thermal and mechanical design
    • Overview of TEMA standards, API 660, API 661
    • Operation, fouling, and effectiveness
Design and Operation of Fluid Handling Equipment
  • Pumps
    • Types and application; Centrifugal, Positive Displacement
    • Performance characteristics
    • Selection and design considerations and standards; ANSI, API 610
    • Worked examples
  • Compressors
    • Types and application; Centrifugal, Screw, Reciprocating
    • Design considerations and standards
    • Operation and troubleshooting
  • Electric motors
    • Types and application
    • Operation and troubleshooting
  • Condition Monitoring
    • Vibration monitoring
    • Lubricating oil analysis
  • Troubleshooting
    • Methodology and guidelines
    • Reliability improvement
Degradation and Condition Assessment of Process Equipment
  • Degradation processes
    • Corrosion, erosion, fatigue, hydrogen attack
    • Overview of API 571
  • Industrial Failures and Failure Prevention
  • Inspection and Testing
    • Inspection strategies, plans and coverage – Real function of inspection
    • Nondestructive Testing (NDT) methods and their characteristics and applicability
    • Risk Based Inspection (RBI )
    • Overview of API 580 and API 581
  • Fitness-For-Service Assessment
    • Overview of API 579
    • Worked examples
  • Maintenance Strategies and Best Practices
    • Optimum mix of reactive, preventive and predictive methods
    • Reliability Centered Maintenance (RCM )
Module 2 :
Process Equipment & Piping Systems: Failures, Failure Prevention & Repairs
Failure Mechanics
  • Wear & Failure Mechanisms
    • Imperfections and Defects
    • Corrosion Mechanisms
  • Failure Modes
    • Fatigue
    • Fretting
    • Creep & Thermal fatigue
    • Stress Corrosion Cracking, Other modes
  • Material properties, and selection
    • Carbon & Alloy steels
    • Nickel, Titanium, and Specialty alloys
    • Aluminum, aluminum alloys
    • Copper, copper alloys
    • Plastic piping
    • Alternative options-linings, cladding
    • Limitations and safeguards
    • Material selection - economics-life cycle costing
Failure Prevention By Design
  • Failure Causes - Design, Operation; Maintenance, Other Causes
  • Material properties, and selection
    • Physical properties and limitations of components
    • Physical properties of steel and alloy piping and tubing
    • Physical properties of fittings
  • Basic Design
    • Pressure Vessels
    • Piping Systems
    • Liquid Storage Tanks
  • Operation and Maintenance of Process Equipment
  • Damage Mechanisms Affecting Process Equipment
Process Equipment Failures
  • Failures in Pressure Vessels, Piping and Boilers
    • Strength reduction through material loss
    • Case histories
  • Piping System Vibration
    • Mechanical & Flow Induced Resonance
    • Transient Hydraulic pulsation
    • Pipe supports and restraints
    • Wind Loading
  • Industry Practices for Failure Prevention
Inspection, Assessment and Maintenance
  • Inspection Strategies Plans and Procedures - Risk Based Inspection (API 580 )
    • Developing an RBI Plan
    • Fitness-For-Service Assessment(API 579)
  • NDT Methods and Techniques
    • Probability of Detection
    • Damage Characterization
    • Selecting the correct technique(s)
  • Pigging of Pipelines
    • Smart pigging
    • Cleaning
    • Operational procedures
    • Operation and Maintenance
  • Maintenance Programs
  • Repair and Alteration of Pressure Equipment and Piping
    • Rerating Piping and Pressure Vessels
    • Estimation of Consequences of Pressure Vessels and Piping Failures
  • Failure Analysis Techniques

Day 1

Asset Cost Management Introduction

Definitions of reliability, maintenance & asset management
The total cost of maintenance
Best practice reliability and maintenance processes
Elements of asset management best practice
Auditing performance
Overview of TPM, RCM, BCM, QCM, and other asset management buzzword
Open discussion sessions

Day 2

Laying the Groundwork

Definitions of reliability, maintenance & asset management
The total cost of maintenance
Best practice reliability and maintenance processes
Elements of asset management best practice
Auditing performance
Overview of TPM, RCM, BCM, QCM, and other asset management buzzword
Open discussion sessions

Day 3

Applying the Value based Process

Definitions of reliability, maintenance & asset management
The total cost of maintenance
Best practice reliability and maintenance processes
Elements of asset management best practice
Auditing performance
Overview of TPM, RCM, BCM, QCM, and other asset management buzzword
Open discussion sessions

Day 4

Ensuring the Continuity of the Value-based Process

Definitions of reliability, maintenance & asset management
The total cost of maintenance
Best practice reliability and maintenance processes
Elements of asset management best practice
Auditing performance
Overview of TPM, RCM, BCM, QCM, and other asset management buzzword
Open discussion sessions

Day 5

Supporting Process that Lower Life-cycle costs

Definitions of reliability, maintenance & asset management
The total cost of maintenance
Best practice reliability and maintenance processes
Elements of asset management best practice
Auditing performance
Overview of TPM, RCM, BCM, QCM, and other asset management buzzword
Open discussion sessions

Training Methodology

Pathways Training and consulting adopts the newest techniques of human resources Training and consulting and, with the following:

  • Theoretical lectures are delivered via PowerPoint and visual displays (videos and short films)
  • Making scientific evaluation to the trainee (before and after)
  • Brainstorming and role-playing
  • Using case studies related to the scientific material being delivered and the trainees' work.
  • The participants get the scientific and practical material printed and on CDs and Flash memories.
  • Preparing records and reports of the participants' attendance and results, with a general evaluation of the training program.
  • A group of the best trainers and experts in all fields and specialties professionally prepares the scientific material.
  • After finishing the course, the participants get certificates of attendance signed, certified, and issued by pathways Training and consulting.
  • Our training programs start at 9:00 o'clock in the morning and end at 2:00 in the afternoon, with snack buffet during the lectures.
  • Providing a lunch buffet during the training program period, with organizing a lunch party on the training program final day for taking some photos and certificate awarding.
Different venues & timings for this course

Course name

Duration

City

Price

Process Equipment & Piping Systems: Application, Design & Operation

17, Feb 2025 28, Feb 2025

Vienna

7450$

Process Equipment & Piping Systems: Application, Design & Operation

24, Feb 2025 07, Mar 2025

Milan

7450$

Process Equipment & Piping Systems: Application, Design & Operation

24, Feb 2025 07, Mar 2025

Munich

7450$

Process Equipment & Piping Systems: Application, Design & Operation

03, Mar 2025 14, Mar 2025

Prague

7450$

Process Equipment & Piping Systems: Application, Design & Operation

10, Mar 2025 21, Mar 2025

Rome

7450$

Process Equipment & Piping Systems: Application, Design & Operation

17, Mar 2025 28, Mar 2025

Jakarta

5450$

Process Equipment & Piping Systems: Application, Design & Operation

23, Mar 2025 03, Apr 2025

Tunisia

5750$

Process Equipment & Piping Systems: Application, Design & Operation

31, Mar 2025 11, Apr 2025

Marbella

7450$

Process Equipment & Piping Systems: Application, Design & Operation

07, Apr 2025 18, Apr 2025

Paris

7450$

Process Equipment & Piping Systems: Application, Design & Operation

14, Apr 2025 25, Apr 2025

Madrid

5450$

Process Equipment & Piping Systems: Application, Design & Operation

20, Apr 2025 01, May 2025

DUBAI

5250$

Process Equipment & Piping Systems: Application, Design & Operation

28, Apr 2025 09, May 2025

Kuala Lumpur

5000$

Process Equipment & Piping Systems: Application, Design & Operation

04, May 2025 15, May 2025

Amman

5250$

Process Equipment & Piping Systems: Application, Design & Operation

11, May 2025 22, May 2025

Marrakesh

5250$

Process Equipment & Piping Systems: Application, Design & Operation

18, May 2025 29, May 2025

Sharm ElShaikh

5250$

Process Equipment & Piping Systems: Application, Design & Operation

25, May 2025 05, Jun 2025

Doha

6000$

Process Equipment & Piping Systems: Application, Design & Operation

01, Jun 2025 12, Jun 2025

Casablanca

5450$

Process Equipment & Piping Systems: Application, Design & Operation

08, Jun 2025 19, Jun 2025

Riyadh

5250$

Process Equipment & Piping Systems: Application, Design & Operation

16, Jun 2025 27, Jun 2025

Istanbul

5250$

Process Equipment & Piping Systems: Application, Design & Operation

22, Jun 2025 03, Jul 2025

Jeddah

5250$

Process Equipment & Piping Systems: Application, Design & Operation

29, Jun 2025 10, Jul 2025

Manama

5250$

Process Equipment & Piping Systems: Application, Design & Operation

06, Jul 2025 17, Jul 2025

Beirut

5250$

Process Equipment & Piping Systems: Application, Design & Operation

14, Jul 2025 25, Jul 2025

Singapore

7450$

Process Equipment & Piping Systems: Application, Design & Operation

20, Jul 2025 31, Jul 2025

Kuwait

5250$

Process Equipment & Piping Systems: Application, Design & Operation

27, Jul 2025 07, Aug 2025

DUBAI

5250$

Process Equipment & Piping Systems: Application, Design & Operation

04, Aug 2025 15, Aug 2025

Kuala Lumpur

5000$

Process Equipment & Piping Systems: Application, Design & Operation

10, Aug 2025 21, Aug 2025

Amman

5250$

Process Equipment & Piping Systems: Application, Design & Operation

17, Aug 2025 28, Aug 2025

Marrakesh

5250$

Process Equipment & Piping Systems: Application, Design & Operation

24, Aug 2025 04, Sep 2025

Sharm ElShaikh

5250$

Process Equipment & Piping Systems: Application, Design & Operation

31, Aug 2025 11, Sep 2025

Doha

6000$

Process Equipment & Piping Systems: Application, Design & Operation

07, Sep 2025 18, Sep 2025

Casablanca

5450$

Process Equipment & Piping Systems: Application, Design & Operation

14, Sep 2025 25, Sep 2025

Riyadh

5250$

Process Equipment & Piping Systems: Application, Design & Operation

22, Sep 2025 03, Oct 2025

Istanbul

5250$

Process Equipment & Piping Systems: Application, Design & Operation

28, Sep 2025 09, Oct 2025

Jeddah

5250$

Process Equipment & Piping Systems: Application, Design & Operation

05, Oct 2025 16, Oct 2025

Manama

5250$

Process Equipment & Piping Systems: Application, Design & Operation

12, Oct 2025 23, Oct 2025

Beirut

5250$

Process Equipment & Piping Systems: Application, Design & Operation

20, Oct 2025 31, Oct 2025

Singapore

7450$

Process Equipment & Piping Systems: Application, Design & Operation

26, Oct 2025 06, Nov 2025

Kuwait

5250$

Process Equipment & Piping Systems: Application, Design & Operation

03, Nov 2025 14, Nov 2025

Berlin

7450$

Process Equipment & Piping Systems: Application, Design & Operation

10, Nov 2025 21, Nov 2025

Brussels

7450$

Process Equipment & Piping Systems: Application, Design & Operation

16, Nov 2025 27, Nov 2025

Khobar

5250$

Process Equipment & Piping Systems: Application, Design & Operation

17, Nov 2025 28, Nov 2025

Zurich

7450$

Process Equipment & Piping Systems: Application, Design & Operation

24, Nov 2025 05, Dec 2025

Trabzon

6250$

Process Equipment & Piping Systems: Application, Design & Operation

01, Dec 2025 12, Dec 2025

Beijing

7450$

Process Equipment & Piping Systems: Application, Design & Operation

08, Dec 2025 19, Dec 2025

Amsterdam

7450$

Process Equipment & Piping Systems: Application, Design & Operation

15, Dec 2025 26, Dec 2025

Bangkok

7450$

Process Equipment & Piping Systems: Application, Design & Operation

21, Dec 2025 01, Jan 2026

Muscat

5250$

Process Equipment & Piping Systems: Application, Design & Operation

29, Dec 2025 09, Jan 2026

Milan

7450$

Process Equipment & Piping Systems: Application, Design & Operation

29, Dec 2025 09, Jan 2026

Bangkok

7450$

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