Organisational & Operational Excellence

LNG Liquefaction Plant Operations Training Course

For process, operations, mechanical and HSE engineers who tune refrigerant loops, diagnose exchangers and compressors and restart trains safely.

At a glance

Duration
12 days
Format
Classroom
Cities
London, Paris, Jeddah, Barcelona, Dammam, Dubai and more
Next session
5 – 16 October 2026, London
Price
From 35,100 SAR (≈ $9,350)

Introduction

LNG liquefaction plant operations fail quietly before they fail loudly: a drifting mixed refrigerant composition, a warm-end pinch in the main cryogenic exchanger or a rushed cool-down cuts production, raises specific power and can crack cold equipment. This Core Concept course takes engineers inside the liquefaction train, from feed gas pre-treatment and refrigeration cycles through spiral-wound and plate-fin exchangers, compressors, tanks and boil-off gas, to cool-down, start-up, trips and hazards. Participants produce a Train Start-Up and Performance Review Plan for a case LNG plant.

Course Objectives

  • Interpret LNG cooling curves, flash behaviour and feed gas composition to set the operating basis of a liquefaction train
  • Verify that acid gas, water, mercury and heavy hydrocarbon removal meets the limits that prevent freeze-out and exchanger damage
  • Compare propane-precooled mixed refrigerant, cascade, single mixed refrigerant and expander cycles on specific power, turndown and equipment count
  • Diagnose exchanger pinch points, refrigerant composition drift and compressor operating point problems from plant data
  • Plan cool-down, start-up, shutdown and trip response steps that protect cryogenic materials, tanks and personnel from LNG hazards
  • Produce a Train Start-Up and Performance Review Plan with efficiency and reliability KPIs for a case LNG plant

Target Audience

  • Process engineers accountable for liquefaction train heat and material balance and refrigerant performance
  • Operations engineers and shift leads who run cool-down, start-up, rundown and shutdown of LNG trains
  • Mechanical and rotating equipment engineers responsible for refrigerant compressors, drivers and cryogenic exchangers
  • HSE and process safety engineers who assess cryogenic spill, rollover and vapour cloud scenarios at liquefaction sites
  • Reliability engineers who track train availability, trips and bad actors on cold section equipment

Course Outline

Day 1: LNG Properties, Cryogenic Behaviour and Liquefaction Train Basis

  • Methane-Rich LNG Composition, Minus 162 Degree Boiling Point and Density Behaviour
  • Temperature-Enthalpy Cooling Curves for Precooling, Liquefaction and Subcooling Zones
  • Joule-Thomson Expansion, Flash Gas and End Flash Nitrogen Rejection
  • Feed Gas Composition Envelope: Lean, Rich and Nitrogen-Bearing Cases
  • Liquefaction Train Block Flow Diagram from Inlet Receiving to Rundown

Day 2: Feed Gas Pre-Treatment for the Cold Section

  • Amine Acid Gas Removal Unit and CO2 Slip Limits That Prevent Freeze-Out
  • Molecular Sieve Dehydration Bed Cycle, Regeneration Gas and Breakthrough Signs
  • Mercury Guard Bed Duty and Protection of Brazed Aluminium Equipment
  • Scrub Column and NGL Extraction to Remove Heavy Hydrocarbons and Benzene
  • Cold Section Entry Gas Specification Sheet

Day 3: Liquefaction Refrigeration Cycle Families

  • Propane-Precooled Mixed Refrigerant Cycle Flow Scheme and Pressure Levels
  • Pure-Component Cascade Cycle with Propane, Ethylene and Methane Loops
  • Single Mixed Refrigerant Cycle for Mid-Scale and Modular Trains
  • Nitrogen and Methane Expander Cycles for Small-Scale and Floating Units
  • Cycle Selection Matrix: Specific Power, Equipment Count and Turndown

Day 4: Cryogenic Heat Exchangers, Refrigerant Compressors and Train Control

  • Spiral-Wound Main Cryogenic Exchanger Bundles, Shell-Side Distribution and Warm-End Approach
  • Brazed Aluminium Plate-Fin Cores: Thermal Stress Limits and Core Leak Detection
  • Refrigerant Compressor Maps, Anti-Surge Control and Gas Turbine or Electric Motor Drivers
  • Mixed Refrigerant Make-Up, Composition Trimming and Light-to-Heavy Ratio Control
  • Advanced Process Control of LNG Rundown Temperature and Production Rate

Day 5: Week-One Case: Refrigeration Loop Diagnosis on a Case Train

  • Case Train Data Pack: Heat and Material Balance, Cooling Curves and Compressor Logs
  • Cooling Curve Gap Analysis to Locate Exchanger Pinch Points
  • Mixed Refrigerant Composition Correction from Sample Chromatograph Results
  • Compressor Operating Point Plot Against Surge and Stonewall Lines
  • Week-One Diagnosis Memo and Peer Challenge

Day 6: LNG Storage Tanks, Boil-Off Gas Recovery and Loading Interface

  • Full-Containment Tank: Nickel Steel Inner Tank, Prestressed Concrete Wall and Suspended Deck
  • Membrane Tank Corrugated Stainless Liner and Insulation Panel System
  • Tank Heat Leak, Boil-Off Rate Estimation and Stratification Monitoring
  • Boil-Off Gas Compressor, Fuel Gas Header and Reliquefaction Return Routes
  • Jetty Loading Arm Sequence, Vapour Return Balancing and Ship-Shore ESD Link

Day 7: LNG Hazards, Process Safety and Safeguards

  • Tank Rollover Mechanism, Density Layering and Mixing Countermeasures
  • Rapid Phase Transition on LNG Contact with Water and Spill Direction Channels
  • Vapour Cloud Dispersion, Pool Fire Radiation and Impoundment Basins
  • Cryogenic Burns, Asphyxiation Risk and Cold-Work Protective Equipment
  • Emergency Shutdown Hierarchy, Fire and Gas Detection and Cause and Effect Review

Day 8: Cryogenic Materials, Cool-Down, Start-Up and Shutdown Sequences

  • Cryogenic Materials: Austenitic Stainless, Nickel Steel and Aluminium Alloys
  • Piping Thermal Contraction, Cold Spring and Support Movement Checks
  • Controlled Cool-Down Rate Procedures for Exchangers, Piping and Tanks
  • Train Start-Up Sequence from Refrigerant Charging to First LNG Rundown
  • Planned Shutdown, Warm-Up, Deriming and Shift Handover Communication

Day 9: Trip Response, Troubleshooting and Liquefaction Performance KPIs

  • Compressor Trip, Driver Loss and Exchanger Flow Maldistribution Scenarios
  • Freeze-Out, Hydrate and Fouling Diagnosis from Differential Pressure Trends
  • Specific Power Consumption and Refrigeration Efficiency Tracking
  • Train Availability, Production Uptime and Flaring Loss KPIs
  • Reliability Bad Actor Ranking and Root Cause Analysis Records

Day 10: Capstone: Train Start-Up and Performance Review Plan

  • Capstone Brief: Case LNG Plant Train Data, Constraints and Outage History
  • Start-Up Plan Drafting: Cool-Down Steps, Hold Points and Permissives
  • Performance Review Section: KPI Baselines, Targets and Efficiency Actions
  • Hazard Safeguard and Trip Response Annex for the Case Train
  • Plan Presentation to a Peer Panel and Revision Log

Skills You Will Gain

  • Cooling Curve Interpretation
  • Pre-Treatment Specification Checking
  • Refrigeration Cycle Comparison
  • Mixed Refrigerant Composition Control
  • Cryogenic Exchanger Diagnostics
  • Cool-Down Procedure Planning
  • Cryogenic Hazard Safeguarding
  • Liquefaction Performance Benchmarking

Why Attend This Course

  • Return with a Train Start-Up and Performance Review Plan built on a case LNG plant and challenged by a peer panel
  • Read compressor maps, exchanger temperature profiles and refrigerant samples together to find lost production
  • Run cool-down and restart after a trip without thermal shock to spiral-wound bundles, plate-fin cores or cold piping
  • Compare liquefaction practice with process, rotating equipment and safety engineers from other trains and operators

Conclusion

Steady LNG rundown depends on clean feed gas, a well-tuned refrigerant loop, healthy cryogenic exchangers and compressors, and disciplined cool-down and restart. Week one covers LNG properties, pre-treatment, refrigeration cycle families, exchangers, compressors and control, then tests them on a case train. Week two adds tanks and boil-off gas, the loading interface, cryogenic hazards, materials, start-up and shutdown sequences, trip troubleshooting and performance KPIs. The final day produces a Train Start-Up and Performance Review Plan for a case LNG plant.

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