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Gas turbines are widely regarded as one of the most advanced achievements in the global equipment manufacturing industry. They are not only the heart of modern power-generation systems, but also critical core power equipment used in ships, aircraft, and industrial energy applications.
As an energy conversion device, a gas turbine converts the chemical energy of fuel into kinetic energy, which can then be further transformed into electrical and thermal energy. This makes gas turbines highly valuable for applications that require reliable, efficient, and flexible power generation.
The three core components of a gas turbine are the compressor, combustion chamber, and turbine. Together, these components compress air, mix it with fuel for combustion, and use the resulting high-temperature, high-pressure gas to drive power output.
A micro gas turbine, also known as a microturbine, refers to a gas turbine with a power output of less than 1 megawatt. Microturbines are compact, efficient, and suitable for distributed energy systems, industrial facilities, data centers, and other applications requiring dependable on-site power.
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Oilfield vent gas can be used, and exhaust emissions comply with environmental protection standards.
Carbon emissions are reduced by more than 15% compared with traditional energy supply methods.
Power generation efficiency is higher, with the efficiency of regenerative cycle units reaching 30.4%.
The comprehensive energy efficiency of the system can reach over 80%.
Low manufacturing cost per kilowatt.
Better investment economy.
100% localization of core components
Flexible adjustment of heat-to-power ratio to adapt to heat demand changes under different operating conditions.
Wide fuel adaptability, capable of using various low-calorific-value waste gases.
Customized development based on customer needs.
Cumulative stable operation exceeding 180,000 hours.
Commercial application verification across multiple industries and scenarios.
Intelligent control and remote monitoring; timely service response for worry-free after-sales support.
The core adopts a single-stage centrifugal compressor, a two-stage axial turbine, and sliding bearings, while the generator adopts a conventional type.
The core adopts a single-stage centrifugal compressor, a two-stage axial turbine, and sliding bearings, while the generator adopts a conventional type.
The core adopts a single-stage centrifugal compressor, a two-stage axial turbine, and sliding bearings, while the generator adopts a conventional type.