FT8® SWIFTPAC®
Aero-Derivative Gas Turbine
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Thorough modularization
Only 1 month for installation
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Offshore power generation
Lightweight and compact
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High performance not requiring a governor
Free Turbine
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Mechanical drive market
Optimal capacity
FT8® SWIFTPAC® Gas Turbine Package
The FT8® SWIFTPAC® gas turbine package offers 30 or 60 MW of power. The package design includes an enclosed driver assembly incorporating the gas generator, power turbine, exhaust collector box, inlet plenum, and lube system. These factory-assembled modules allow the FT8® SWIFTPAC® power plant to generate power in less than 30 days after arriving on site.
Features
- Site installation work is reduced by use of standard factory assembled modules.
- No cooling water equipment is required; installable in inland areas, etc. where water is difficult to arrange
- Fully automated operation; fully operable at unattended sites
- Suitable for barge power generation and offshore power generation
- The free turbine construction of the power turbine (PT) enables a configuration independent of an air compressor, allowing use for pipeline gas compressors requiring variable rotating speed control and a driving pump with mechanical drive.
Specifications
Output | SWIFTPAC®30 | 60 Hz/50 Hz:31 MW |
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SWIFTPAC®60 | 60 Hz/50 Hz:62 MW | |
Fuel | Dual Fuel (Gas/Oil) | |
Starting Time | <10 minutes (cold start to full power) | |
Cooling Method | Air Cooling | |
Type of Generator/ Voltage of SWGR | Open-ventilated Air Cooling/ 15 kV | |
NOx Control | Water Injection | |
Air Cooling | Yes | |
Starting Method | Hydraulic | |
Type of Ignition | Electric Spark | |
Turning | Unnecessary | |
Enclosure | Outdoor | |
Power Turbine | Free Turbine | |
Reduction Gear | Unnecessary | |
Condensing Operation | Yes (without clutch) |
Configuration(SWIFTPAC® 30)
50 Hz | 60 Hz | ||
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Compressor | Axial, multi-stage | ||
Combustor | Cannular | ||
Turbine | Axial, multi-stage | ||
Rotor | Build-up | ||
Output(PT) | Free | ||
Speed | rpm | 3,000 | 3,600 |
Gas Turbine | Dimension | 5m×2m×3m | |
Weight | 13t |
Performance (SWIFTPAC®30)
50 Hz | 60 Hz | ||
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ISO Base Rating | kW | 30,748 | 30,892 |
Efficiency | % | 36.4 | 36.6 |
LHV Heat Rate | kJ/kWh | 9,900 | 9,841 |
Btu/kWh | 9,383 | 9,327 | |
Exhaust Flow | kg/s | 92 | 92 |
Exhaust Temp. | ℃ | 494 | 491 |
F | 922 | 916 | |
Ramp Rate | MW/min | 15 | 15 |
Starting Time | Min | <10 | <10 |
Configuration (SWIFTPAC®60)
50 Hz | 60 Hz | ||
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Compressor | Axial, multi-stage | ||
Combustor | Cannular | ||
Turbine | Axial, multi-stage | ||
Rotor | Build-up | ||
Output (PT) | Free | ||
Speed | rpm | 3,000 | 3,600 |
Gas Turbine | Dimension | 5m×2m×3m | |
Weight | 13t |
Performance (SWIFTPAC®60)
50 Hz | 60 Hz | ||
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ISO Base Rating | kW | 61,607 | 62,086 |
Efficiency | % | 36.4 | 36.8 |
LHV Heat Rate | kJ/kWh | 9,882 | 9,792 |
Btu/kWh | 9,366 | 9,281 | |
Exhaust Flow | kg/s | 184 | 184 |
Exhaust Temp. | ℃ | 494 | 491 |
F | 922 | 916 | |
Ramp Rate | MW/min | 30 | 30 |
Starting Time | Min | <10 | <10 |
Arrangements
Output | SWIFTPAC®30 / SWIFTPAC®60:31MW/62MW |
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Fuel | Dual Fuel (Gas/Oil) |
Starting Time | <10 minutes (cold start to full power) |
Type of Generator | Open-ventilated Air Cooling |
Cooling Method | Air Cooling |
Solution
- A system (FT8® SWIFTPAC® 60) with two gas turbines in twin configuration driving one generator helps reduce the construction unit cost and installation area per output.
- Individual smaller HRSG/SCR recommended for each engine.
- The free turbine construction of the power turbine (PT) eliminates the need for reduction gears and helps reduce the capacity of the lubricating oil equipment while improving performance.
- No clutch is needed during synchronous condensing operation (control of system voltage by monitoring).
FT8® SWIFTPAC® Gas Turbine Package
Delivery Record
Year of launch | 1993 |
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Number of units delivered | Over 400 Units |
Delivery Results
Products
- GTCC
- Steam Power
- IGCC
- Geothermal
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Gas Turbines
- Product Lineup
- Comparative Performance
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Technical Information
- Gas Turbines for Mechanical Drive Applications
- Cutting-Edge Elemental Technology Producing 1600°C Class J Gas Turbines
- Development of High-Efficiency Gas Turbine Applying 1600°C Class J Technology
- Combustor Technologies Supporting Stable Operation
- Overview and Verification Status of T-Point 2 Demonstration Facility
- Comprehensive Efforts from Development to Manufacturing
- Summary of Orders
- Development History
- Product Selection Assistant (Middle & small Class)
- Aero-derivative Gas Turbines
- Steam Turbines
- Boilers
- Air Quality Control Systems (AQCS)
- Generators
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Control Systems
- What is DIASYS?
- DIASYS Netmation / DIASYS Netmation4S
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DIASYS Optional Products
- IR-S Infrared Flame Detector
- Net IR-S Infrared Flame Detector
- Rail Mounting Net IR-S
- Boiler Tube Leak Detector
- Shaft Vibration Analyzer
- Simulator
- Advanced Combustion Pressure Fluctuation Monitoring System (A-CPFM) / Combustion Pressure Fluctuation Monitoring System (CPFM)
- Multi-Coal Fired Boiler Optimum Control
- DIASYS Solutions
- Fuel Cells
- Others
- Catalogue
- HIACS Series
- Technical Report