AIDC Applications
Gas-turbine-driven green power solutions for AI data centers — supporting the computing era with stable, efficient and low-carbon autonomous power supply.
Electricity demand from AI computing centers (AIDC) is growing at roughly 55% CAGR from 2025 to 2028, with cumulative North American demand exceeding 150GW by 2026-2028. A single 100,000-GPU campus can reach peak loads of 100MW class. Facing lagging grid expansion and long lead times (12-18 months), on-site distributed power has become standard for AIDC construction.
Gas turbines, with under-30-minute fast start-stop, >99.9% availability and support for 0-100% hydrogen fuel, have become the preferred choice for AIDC self-built power. Microsoft, xAI, Google, Meta and others have already placed bulk turbine orders.
Reference: CITIC Securities research · public industry reports
Solution Positioning
Advanced gas turbine technology driving green power for the AI supercomputing era.
30MW Flagship Gas Turbine
A single DGT30 unit covers the baseline load of a 100,000-GPU campus; multiple units in parallel deliver hundred-megawatt-class AIDC power supply with fast deployment and plug-and-play operation.
54.5% Combined Cycle Efficiency
The gas turbine plus steam turbine combined cycle reaches 54.5% efficiency, fully utilizing waste heat and significantly reducing AIDC cost per kWh and carbon emissions.
Fast Start-Stop, Flexible Peaking
Adapts to AIDC day-night load fluctuations and supports flexible switching between islanded and grid-connected modes, providing reliable dispatchable baseload power.
Hydrogen-Ready, Toward Zero Carbon
Supports 0-100% hydrogen co-firing. Combined with green hydrogen, it helps AIDC operators meet carbon neutrality and ESG goals.
Typical Power Supply Architecture
Green power + gas power + energy storage: multi-energy complementarity
- Turbine units: multiple DGT30 units in parallel, providing hundred-megawatt-class baseload
- Waste heat recovery: combined cycle plus district heating, overall energy efficiency >80%
- Energy storage: peak shaving and valley filling to buffer load fluctuations
- Hydrogen-electric synergy: green hydrogen production plus turbine hydrogen blending, toward full-lifecycle zero carbon