Solar Panel Cost & Savings in West Virginia (April 2026)
A typical 6.0 kW rooftop solar system in West Virginia costs about $17,100 gross ($2.85/W installed), or $11,970 after the 30% federal tax credit. It produces 6,662 kWh/year, saving about $1,070/year, with payback in about 11.2 years.
West Virginia installed cost: $2.85/watt (state avg, 2026). 20-year net savings after install cost: $9,428.
Production & savings breakdown
| Annual production | 6,662 kWh |
| Annual electricity savings | $1,070 |
| Peak sun hours in West Virginia | 3.9 hours/day |
| Electricity rate (April 2026) | 16.06¢/kWh |
| 20-year net savings (savings − net install cost) | $9,428 |
Solar incentives available in West Virginia
- Federal ITC: 30% of gross install cost ($5,130 on this system), valid through 2032.
- State tax credit: None
- Net metering: Yes for systems <25 kW
- Property tax exemption: No.
- Sales tax exemption: No.
Minimal state incentives. Federal ITC only significant benefit.
Customize for your home
Plug in your own system size and the electricity rate you actually pay. Calculations update instantly.
Formula: annual_kWh = system_kW × peak_sun_hours × 365 × 0.78 · annual_savings = annual_kWh × rate
About solar in West Virginia
West Virginia averages 3.9 peak sun hours per day, derived from NREL’s solar resource data. Combined with the West Virginia residential electricity rate of 16.06¢/kWh (EIA, April 2026), this gives a typical 6.0-kW system the production and savings figures above. Compared to the U.S. average, West Virginia’s sun resource is 14% below the national mean.
Estimates assume a roof-mounted system with the PVWatts default performance ratio (0.78), $3.00/watt installed (national average), and the U.S. federal Investment Tax Credit at 30% (in effect through 2032).
Solar savings across other states (same 6.0-kW system)
| State | Peak sun hrs | Annual savings |
|---|---|---|
| Hawaii | 5.7 | |
| California | 5.6 | |
| Connecticut | 4.0 | |
| Massachusetts | 3.9 | |
| Rhode Island | 4.0 | |
| New York | 3.8 | |
| Maine | 3.9 | |
| District of Columbia | 4.3 | |
| New Hampshire | 3.9 | |
| Arizona | 6.5 | |
| New Jersey | 4.2 | |
| West Virginia | 3.9 |
Solar & energy gear
Affiliate links — we may earn a small commission at no cost to you.
- 100W portable solar panel — DIY / RV starter
- EcoFlow / Jackery portable power station
- Solar production monitor
- Sense Solar energy monitor — track produced vs. consumed
FAQ
Are these savings guaranteed?
No estimate is — your actual savings depend on roof orientation, shading, your specific utility plan, and how much of the solar production you self-consume versus export. The numbers here represent a well-sited, unshaded south-facing roof.
What does “peak sun hours” mean?
One peak sun hour = the energy equivalent of 1 hour at 1,000 W/m² irradiance. A 3.9-PSH location delivers, on an annual average, the same total energy each day as 3.9 hours of full-strength sunlight.
Do these numbers include net metering?
The savings calculation assumes you offset retail electricity at the displayed rate. In states with full retail net metering, this is accurate. In states with reduced export rates, savings on grid-exported kWh will be lower — check your utility’s policy.
What if I am in West Virginia but my utility charges a different rate?
Use the customization box above to enter your actual rate. The math is yours, so the result will match your bill.