Training Safety in Process Equipment Design and Operation - BBM TRAINING AND CONSULTING

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Jadwal Training 2020

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Duration

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06 January 2020

1/2/3/5 Days

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06 January 2020

1/2/3/5 Days

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03 February 2020

1/2/3/5 Days

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02 March 2020

1/2/3/5 Days

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27 April 2020

1/2/3/5 Days

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18 May 2020

1/2/3/5 Days

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22 June 2020

1/2/3/5 Days

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20 July 2020

1/2/3/5 Days

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17 August 2020

1/2/3/5 Days

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14 September 2020

1/2/3/5 Days

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12 October 2020

1/2/3/5 Days

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09 November 2020

1/2/3/5 Days

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01 December 2020

1/2/3/5 Days

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Training Safety in Process Equipment Design and Operation

Training Safety in Process Equipment Design and Operation
INTRODUCTION
In all steps of designing of pressure equipment related to hydrocarbons and chemical processing and applied in Oil & Gas, Chemical and Process industries, the process safety comes on the top of the list of all considerations. The safety remains to be of utmost importance during operation and maintenance and has to be verified with various methodologies. This Safety in Process Equipment Design & Operation training seminar provides an overview of important elements of process safety as they are often encountered in today’s industrial practice. The emphasis is on engineering design aspects of Process Safety Management and it will highlight the safeguarding aspects of processing equipment inside the plant. Techniques for analyzing and mitigating process safety hazards applicable to Oil & Gas processing will be reviewed. Integration of the concepts required to achieve an optimum approach to Process Safety Engineering is the main goal of this training seminar. Exercises and useful examples will be utilized throughout the training to emphasize the key learning points.
This training seminar will feature:
  • Importance of the concept of “Inherently Safer Design”
  • Design principles based on Standards for safe operation of process equipment
  • Selection and sizing of safety valves and pressure relief systems
  • Methods for process hazards analysis: HAZOP, LOPA, FMEA
  • Detection and prevention methods for fire and explosion accidents
  • Plant Equipment Inspection (NDT) and Maintenance Procedures
PROGRAM OBJECTIVES
  • Understanding different aspects of process design that influence process safety
  • Appreciate “inherently safer design” for the entire process plant operation
  • Evaluate mechanical integrity of process equipment
  • Identify hazards associated with process fluids regarding impact on material degradation
  • Follow code requirements for sizing relief valves to handle relief streams
  • Operate Emergency De-Pressuring Systems (EDP) in case of fire and gas explosions
WHO SHOULD ATTEND?

  • Operation, Technical Service and Maintenance Professionals
  • Technical Professionals responsible for maintenance and repair of equipment
  • Professionals involved in inspection and maintenance and repair
  • Project Engineers and HSE Professionals
  • Technical Professionals dealing with risk assessment and integrity analysis

PROGRAM OUTLINE

Overview of Safety in Process Design

  • Definition of Safety in Process Design
  • Overview of Historical Incidents and Problem Areas
  • Components of Process Safety: People, Plant, Process
  • Risk Identification and Safety Analysis
  • Process Hazard Analysis: HAZOP, LOPA, FMEA
  • Hazards Associated with Specific Plant Systems
  • Elimination of Hazards through Process Design
  • Prevention of Human Error through Process Control and Monitoring

Inherently Safer Design

  • Inherently Safer Design Methodology
  • Pre-Design and Design Phases
  • Materials of Construction and Optimized Fabrication
  • Hazard Associated with Process Fluids and Chemical Reactions
  • Corrosion, Erosion and Material Degradation
  • Leakage and Loss of Primary Containment
  • Dispersion of Hydrocarbon Release
  • Flammability of Chemicals

Safety of Process Equipment

  • Hazard Associated with Process Equipment
  • Safety Considerations in Reactor Design
  • Design Procedure for Safety of Pressure Vessels, Storage Tanks, Reactors, Heat Exchangers
  • Venting of Tanks and Vessels: Codes, Standards and Best Practices
  • Piping System Design and Safety
  • Design of Piping System Accessories: Valves, Fittings, Supports
  • Assessment  of Material Degradation during In-Life Cycle: Fitness for Service
  • Monitoring, Testing and Inspection (NDT)

Design of Pressure Relief Systems

  • Design of Safety Valves
  • Operation  of Pressure Relief System
  • Calculation and Sizing of Relief Loads of Pressure Relief Systems
  • Pressure Relief Valves vs. Rupture Discs
  • Codes, Standards and Best Practices
  • Specifics of Pressure Relief Systems for Pumps, Compressors, Turbines
  • Process Plant Disposal Systems
  • Disposal Hazards, Risk Assessment and Environmental Factors

Process Monitoring and Control

  • Safety Instrumented Systems
  • Process Plant Monitoring and Control System: SCADA
  • Emergency De-Pressurig Systems (EDP)
  • Prevention of Fire and Gas or Dust Explosions
  • Safety Consideration in Plant Layout and Equipment Spacing
  • Management of Change and Integrity Operation Window
  • Plant Equipment Inspection and Maintenance Procedures
  • Final Conclusions

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