Professional Certificate of Competency in Gas Turbine Engineering

Integrated Masters with deeper specialization and research focus
Taught in English
Duration 3 Months
Mode Online
Level Undergraduate
Degree Undergraduate Certificate
Closing soon May 2027

Course Overview

The Professional Certificate of Competency in Gas Turbine Engineering from the Engineering Institute of Technology is designed for engineers and technicians seeking to deepen their expertise in the critical field of gas turbine technology. This online, part-time certificate equips you with essential knowledge in thermodynamic principles, component functions, and maintenance strategies vital for industrial and aircraft derivative turbines. You will explore the fundamental operation, materials, fuels, and sound suppression techniques, gaining a comprehensive understanding of the systems that power modern industry and aviation.

Delivered online over 3 months on a part-time basis, this certificate programme focuses on practical application and troubleshooting. You will delve into specific modules covering lubrication systems, control instrumentation, and installation requirements, preparing you for real-world challenges. Through a structured curriculum, you will develop essential skills in performance measurement, mechanical equipment standards, and effective maintenance planning. Upon completion, you will graduate with a recognised certificate, ready to apply advanced gas turbine engineering knowledge in your professional role.

Course Curriculum & Details

Detailed information for serious evaluators

Program Overview

This professional certificate program offers a comprehensive exploration of gas turbine engineering. You will delve into the fundamental thermodynamics of gas turbine cycles, examine the intricate components such as compressors, combustors, and turbines, and understand the critical role of materials science in their construction. The curriculum also covers essential systems including bearings, seals, lubrication, and fuel supply, alongside performance standards and control systems. Finally, the program addresses installation, operation, maintenance, and troubleshooting to provide a well-rounded understanding of gas turbine technology.

1 Module 1: General Overview of Gas Turbines

Introduction
Frame type heavy-duty gas turbines
Industrial type gas turbines
Aircraft derivative gas turbines
Comparison between aircraft-derivative and heavy-duty industrial turbines
Small and micro gas turbines
Aircraft gas turbines
Gas turbine components
Siemens Gas Turbine Technology

2 Module 2: Fundamental Gas Turbine Cycle Thermodynamics

Reversible cycles with ideal gases
Constant pressure or Brayton cycle
Ideal inter-cooled and reheat cycles
Actual gas turbine cycles
List of terms and symbols used

3 Module 3: Gas Turbine Components

Compressors
Centrifugal compressors
Axial-flow compressors
Compressor theory
Compressor aerodynamics
Common problems affecting axial compressor operation and performance
Air compressor performance characteristics
Combustors
Combustor performance and efficiency
Turbines
Fuel nozzles and igniters
Emission control

4 Module 4: Materials of Construction

Introduction
General metallurgical behavior in gas turbines
Gas turbine blade materials
Blade manufacturing techniques
Future materials

5 Module 5: Bearings and Seals

Bearing materials
Through hardened materials
Case hardened materials
Cage materials
Babbitts
Bearing design principles
Tilting-pad journal bearings
Design of thrust bearings
Seals

6 Module 6: Lubrication System in Gas Turbines

Introduction
Oil reservoir
Pumps and oil jets
Lubrication oil filters
Oil coolers
Relief valves
Lubricant selection
Oil system cleaning and conditioning
Filter selection
Oil sampling and testing

7 Module 7: Fuels and Fuel Supply Systems

Introduction
Fuel specifications and fuel properties
Other important fuel properties
Fuel treatment
Economics of fuel selection
Gas fuels
Heavy fuels
Comparative fuel costs
Cleaning of turbine components
Fuel supply and control systems
Dual-fuel operation and operational flexibility
Integrated gasification combined cycle

8 Module 8: Sound Suppression in Exhausts, Air Requirements and Environmental Considerations

Noise from gas turbine engines
Aircraft sound suppression methods
Air requirements and environmental considerations

9 Module 9: Auxiliary Systems

Starting systems
Fuel washing systems
Gears
Gear design and performance parameters
Couplings and shaft alignment
Shaft alignment

10 Module 10: Performance and Mechanical Equipment Standards

Introduction
Performance standards
Mechanical standards

11 Module 11: Control Systems and Instrumentation

Control systems
Startup and shutdown considerations
Control of the equipment during operation
Lifecycle costs
Condition monitoring systems and their implementation
Temperature, pressure and vibration measurement
Campbell diagram
Gas turbine performance measurement and calculations
Protection systems and alarms
Failure diagnostics

12 Module 12: Installation Requirements, Operation and Maintenance

Installation requirements
Philosophy of maintenance
Maintenance techniques
Maintenance of critical gas turbine components
Maintenance planning and scheduling
Spares and inventory management
Maintenance tools
Inspection
Gas turbine overhaul and repair
Training
Training types
Typical problems
Health monitoring in gas turbines
Troubleshooting in gas turbines
General troubleshooting techniques for compressors, combustors, and turbines
Evaluation of the effectiveness of gas turbine maintenance

Cost & Affordability

A clear picture of what this course will cost you

Program Costs

First Year Fee Tuition fee
USD 979.00
Total Program Cost Estimated total tuition
USD 979.00

Currency note: Program costs shown in USD based on the available tuition breakdown.

Living Costs

Accommodation
USD 580.00 - USD 1,974.00
Food & Groceries USD 2,122.00 - USD 2,971.00
Transport USD 849.00 - USD 1,698.00
Utilities & Bills USD 849.00 - USD 1,698.00
Estimated Total USD 3,820.00 - USD 6,367.00

Living cost estimates are based on Perth Campus.

Outcomes & Employability

What happens after you graduate

79%
Graduate Employment Rate Within 6 to 12 months of graduation

Common Graduate Roles

Coal & Consumable FuelsCommercial & Industrial ConstructionFleet Management & OperationsHardware & Semiconductor EngineeringIndustrial & Offshore ConstructionLogistics & Warehouse ManagementNuclear EnergyRefining & PetrochemicalsSupply Chain & Freight ManagementTelecom Software & Systems

Top Employers Hiring for this course

Acwa Operations

Australian Energy Market Operator (AEMO)

BHP

Botswana Power Corporation

Cementation Africa

Chevron

Debswana Diamond Company

Energy Queensland

Why Study Professional Certificate of Competency in Gas Turbine Engineering at Engineering Institute of Technology

What makes this program stand out

May 2027 Closing soon

Next intake is in May 2027

Life at Engineering Institute of Technology in Australia

What daily life looks like for international students

Language

English

Primary language everywhere

Climate

Mild & Rainy

10-20°C average, pack layers

Safety (Numbeo Safety Index)

Very Safe

Exeter is one of UK's safest cities

Frequently Asked Questions

Common questions about Professional Certificate of Competency in Gas Turbine Engineering at Engineering Institute of Technology

Can I work while studying?

International students can work up to 48 hours per fortnight during term time and unlimited hours during breaks in Australia. No separate work permit is needed for this.

What English language score do I need for this course?

To enroll, you need to meet specific English proficiency requirements: an overall IELTS score of 5.5, with at least 5.0 in listening, reading, speaking, and writing. Ensure you have the necessary scores before applying.

What jobs can I get after studying this course?

Potential job titles include Gas Turbine Engineer, Maintenance Engineer, and Mechanical Engineer.

What will I actually study in this course?

This professional development course is designed for engineers and technicians who need practical skills in the latest practices and technologies in gas turbine engineering.

Course Benefits

  • Receive a Certificate of Completion from EIT.
  • Learn from well-known faculty and industry experts from around the globe.
  • Flexibility of attending anytime from anywhere, even when you are working full-time.
  • Interact with industry experts

When can I start — what are the intake months?

The next intake for the Professional Certificate of Competency in Gas Turbine Engineering is in May. Be sure to prepare your application ahead of time to secure your spot.
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