Stony Creek Solar (PJM-AF2-221) — Project Summary

Queue ID
PJM-AF2-221
Capacity
15 MW
Technology
Solar
Status
suspended
Location
Somerset, PA
Region
PJM
Developer
IA Status
IA Executed

Stony Creek Solar

PJM-AF2-221BetaSuspendedSolarPJMLBNL + Live

15 MW generation in Somerset, PA · In queue since March 2020 · Proposed COD October 2025

BA: PJMISO/RTO: PJMNERC: RFCRC: PJM

15 MW

Capacity

1

Components

Solar

6y 4m

In Queue

IA Executed

IA Phase

COD target: 2025

Interconnection

Total Duration

5y 7m

Suspended75%
Queue EntryMar 25, 2020

Interconnection request submitted to ISO/RTO

System Impact Study

PJM processes interconnection requests through multi-phase System Impact Studies (SIS).

Typical: ~48 months (historically longest)

Interconnection Agreement

Interconnection agreement executed — binding commitment to build

Typical: 30–60 days (negotiation)

Construction

Construction pending

Typical: 12–24 months

Commercial Operation

Proposed COD: 2025-10-01

About

The Stony Creek Solar project is a proposed 15 MW solar generation project located in Somerset County, Pennsylvania. The project, developed under the PENELEC utility, is interconnected within the PJM Interconnection queue as entry PJM-AF2-221, with a queue entry date of March 25, 2020. The proposed commercial operation date is October 1, 2025. Its interconnection status is currently in the System Impact Study phase.

The project is linked to the existing Stony Creek Solar operating plant (EIA ID 67879). Recent news coverage has discussed the development project. The project's status is currently listed as suspended.

Generated from interconnection queue and public data sources

Development Risk

Realization risk from now to commercial operation — financing close, EPC and tax-equity counterparty mix, and COD probability vs the proposed date. The diligence view that determines whether the deal actually closes. Powered by InfraSure's development-stage modeling stack.

Available on the InfraSure platform

See the full development-risk decomposition for this project.

P(COD by stated date)
Financing close probability
EPC + tax-equity counterparty
Project Details

State

PA

County

Somerset

Grid Region

PJM Interconnection

Market

ISO/RTO Member

Developer

Utility

PENELEC

Entity

PJM

Service Type

NRIS

Point of Interconnection

Scalp Level 22.9 kV

Data Source

LBNL + Live

Risk Analytics

Composite operating-phase risk view — what this asset's risk profile will look like once it commissions. Climate hazards across its operating life, expected generation variability, and offtake counterparty exposure, decomposed into a single decision-grade score. Powered by InfraRisk.

Available on the InfraSure platform

See the full risk decomposition + scenarios for this project.

Climate hazards (8+)
Generation variability (P10/P50/P90)
Offtake + transmission counterparty
Generation Forecast

Forward generation outlook — first-year production estimate and 10-year P50 trajectory, with probabilistic ranges (P10/P50/P90) across weather, demand, and policy scenarios. Powered by InfraSure's generation modeling stack.

Available on the InfraSure platform

See the full forecast + scenario decomposition for this project.

10-year P50 forecast
First-year output estimate
Weather + policy scenarios
Financial Forecast

Forward revenue, DSCR projection, and financing-close risk — conditioned on commercial operation. First-year DSCR, 10-year cashflow, and counterparty exposure across price and policy scenarios. Powered by InfraSure's asset cashflow stack.

Available on the InfraSure platform

See the full revenue + DSCR projection for this project.

10-year revenue projection
First-year DSCR
Financing close risk
Market Context
Approximate
ISO / RTO
PJM
Trading Hub
WESTERN HUB
Hub Confidence
HIGH
Nearest Node (Estimated)
PENELEC
POI Substation
Scalp Level Substation

This project's market context is estimated from its Point of Interconnection. Hub and node assignments are approximate and based on geographic inference from the POI substation name.

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InfraSure platform

Forward forecasts, scenario decomposition, and risk-decision tooling for this queue project.