Gas and Steam Turbine Engineering: Operation and Maintenance Training Course

Course Category : Oil & Gas Management

This technically driven programme equips professionals with in-depth expertise in gas and steam turbine engineering, operation, and maintenance, aligned with industry best practices and high-reliability standards.
5 Days | Level: Intermediate to Advanced.

Starts On

24 - May - 2026

Ends On

28 - May - 2026

Location

Egypt - Cairo

Language

English

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Targeted Audience

  • Mechanical and Power Engineers
  • Power Plant Operation and Maintenance Engineers
  • Technical and Operations Supervisors
  • Refinery and Industrial Facility Engineers
  • Energy and Engineering Consultants
  • Middle Management Professionals in Energy Projects

Targeted Skills

  • Thermodynamic cycle analysis for gas and steam turbines
  • Safe and efficient turbine operation
  • Performance analysis and fault diagnosis
  • Preventive and predictive maintenance implementation
  • Operational safety and risk management

Expected Outcomes

  • Develop a comprehensive understanding of gas and steam turbine design and operation.
  • Analyse turbine performance and thermal efficiency indicators.
  • Apply effective maintenance strategies to minimise downtime.
  • Diagnose operational issues and implement corrective actions.
  • Comply with safety, regulatory, and operational standards in turbine systems.

Training Topics Index

  • Thermodynamic principles and energy conversion
  • Brayton and Rankine cycles
  • Gas and steam turbine classifications
  • Major turbine components and functions
  • Performance and efficiency indicators

  • Start-up and shutdown procedures
  • Load and speed control
  • Fuel and lubrication systems
  • Operational parameter monitoring
  • Safe operation under variable conditions

  • Preventive and predictive maintenance strategies
  • Periodic inspection and vibration analysis
  • Thermal stress and corrosion management
  • Component repair and replacement
  • Outage planning and execution

  • Common failure modes
  • Degradation and performance analysis
  • Operational troubleshooting techniques
  • Efficiency and reliability improvement
  • Lessons learned from real cases

  • Industrial safety requirements
  • Operational risk management
  • Emergency shutdown procedures
  • Environmental and regulatory compliance
  • International best practices