Siemens SGT-700 Industrial Gas Turbine Package

The Siemens SGT-700 is a proven industrial gas turbine designed for power generation, mechanical drive, CHP, and combined cycle applications. Derived from the Siemens SGT-600 platform, it is well known for fuel flexibility, low emissions, high reliability, and maintenance-friendly design.

Under ISO conditions, the SGT-700 delivers approximately 32.8 MW electrical output with 37.2% efficiency in simple cycle power generation. In mechanical drive configuration, the output can reach approximately 33.7 MW. Its high exhaust energy also makes it suitable for CHP and combined cycle projects.

For buyers seeking a reliable 35 MW class industrial gas turbine solution, the Siemens SGT-700 is a strong choice for utility, industrial, and oil & gas applications.

Additional information

Manufacturer

Siemens Energy

Model

SGT-700

Condition

Uninstalled / Not Commissioned

Date of Manufacture

2020

Type

Industrial Gas Turbine Generator Set

Power Output

32.8 MW

Supply Basis

Subject to Final Technical Review

Scope of Supply

1. Main Gas Turbine Package

  • Siemens SGT-700 industrial gas turbine package
  • Dual-shaft gas turbine design
  • Suitable for power generation and mechanical drive applications
  • Compact modular arrangement for industrial project integration

2. Fuel and Combustion System

  • Suitable for natural gas, liquid fuel, and dual-fuel operation
  • Online fuel switching capability depending on system configuration
  • Third-generation DLE low-emission combustion system
  • High fuel flexibility for demanding industrial and oil & gas applications

3. Performance and Application Basis

  • Approx. 32.8 MW electrical output in simple cycle
  • Approx. 33.7 MW in mechanical drive configuration
  • High exhaust energy for CHP and combined cycle applications
  • 2×1 combined cycle plant output up to 91.6 MW with net efficiency of 53.1%

4. Technical and Commercial Basis

  • Final package scope to be confirmed according to project requirement
  • Technical review available before commercial confirmation
  • Delivery scope, auxiliaries, and project interface details can be discussed directly

Inspection, Testing & Technical Review

  • Technical review can be arranged according to actual project requirements
  • Project discussion is available for power generation, mechanical drive, CHP, and combined cycle applications
  • Fuel selection, emissions requirement, and operating basis can be reviewed before commercial confirmation
  • Package scope and project matching can be clarified during technical discussion

Project Support Services

  • Technical communication for industrial power generation and gas turbine projects
  • Preliminary evaluation for CHP, combined cycle, and mechanical drive applications
  • Documentation support for technical review and internal project evaluation
  • Commercial discussion for supply scope, delivery basis, and project schedule
  • Direct inquiry support for buyers seeking reliable 35 MW class gas turbine solutions

Frequently Asked Questions

What fuels can the Siemens SGT-700 use?
The Siemens SGT-700 can operate on natural gas, liquid fuel, and dual-fuel configurations. It also offers strong fuel flexibility for demanding industrial and oil & gas applications.
Under ISO conditions, the Siemens SGT-700 delivers approximately 32.8 MW electrical output with 37.2% efficiency in simple cycle operation. In mechanical drive configuration, the output can reach approximately 33.7 MW.
The Siemens SGT-700 is suitable for power generation, mechanical drive, CHP, and combined cycle applications. Its high exhaust energy and low-emission design make it a strong choice for industrial energy projects.

Request a Quote & Technical Matching

Please provide your contact details and project requirements below. Our team will review your request and recommend suitable equipment solutions based on your application, technical needs, and delivery destination.
Site inspection, pre-shipment checking, and project discussion can be arranged for serious buyers.

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