
Power
Nine machines. Combined cycle. On the same lot.
Compact aeroderivative packages south of the halls. A hall does not depend on a single frame. Sized to the campus. Built to sell surplus later.
How it works
Burn the gas once. Catch the exhaust. Make power twice.
That second pass is the whole reason nine aeroderivative machines carry a 412 MW campus. Follow the line — fuel and recovered heat in cobalt, power to the floor in lime. The second fork out of the LM2500 block is the other half of the business: surplus sold into the PJM grid, adding dispatchable generation where the grid needs it most.
Design case
| Machines | 9 × LM2500+G4 / LM2500XPRESS |
|---|---|
| Configuration | Combined cycle |
| Nameplate | 412 MW |
| Expected average | 276 MW under inference load |
| Cooling | Closed-loop dry — no wet towers |
| Fuel | Gas supply secured — 20" pipeline-quality gas on the property |
Campus load first. Surplus to PJM once interconnected — the 230 kV right-of-way is already on the land. Liberty Power Park is designed as a dual-use facility: power sold directly to data centers on site and into the grid, boosting reliability in a market that is short on dispatchable megawatts.
The machine is not a paper selection. GE Vernova publishes a case study on LM2500XPRESS units powering Crusoe AI data centers. Same platform, same application, already running — and the XPRESS package is built for 9–14 month commissioning.
What a tenant is buying
Allocated behind-the-meter megawatts, not a speculative interconnect. Indicative hall allocations (~51.5 MW each, 412 MW nameplate split eight ways) are a leasing seed. They are not a posted rate.
412 MW is the first phase, not the ceiling — ample land for future phases makes the site expandable to 5+ GW.
Allocate a hallNext step
Ask for the heat balance and the plant single-line.
Design case, emissions basis, and the gas supply structure go out under NDA. Tell us the load and we will size it against the block.