West Virginia Solar Calculator

West Virginia averages about 4.1 peak sun hours per day (state-average approximation from NREL PVWatts/NSRDB data — a specific roof can differ by 25% or more, especially in large or mountainous states). This page presets 4.1 sun hours in the solar panel calculator: at the default 80% system output factor, 1 kW of panels in West Virginia produces roughly 1,197 kWh a year. West Virginia's average residential electricity price is about 15.07¢/kWh (EIA), so each self-consumed solar kWh is worth roughly that much against a bill.

West Virginia Solar Calculator reference last updated · reference source

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Dated static reference; no live data is fetched. Verify current source values and assumptions before relying on results.

What this tool does

West Virginia averages about 4.1 peak sun hours per day (state-average approximation from NREL PVWatts/NSRDB data — a specific roof can differ by 25% or more, especially in large or mountainous states). This page presets 4.1 sun hours in the solar panel calculator: at the default 80% system output factor, 1 kW of panels in West Virginia produces roughly 1,197 kWh a year. West Virginia's average residential electricity price is about 15.07¢/kWh (EIA), so each self-consumed solar kWh is worth roughly that much against a bill.

How to use the West Virginia Solar Calculator

  1. Check Peak sun hours per day: 4.1.
  2. Review the West Virginia Solar Calculator result and its exact-value comparison table.
  3. Verify assumptions before applying the result.

Formula

system kW=daily kWh/(sun hours×output factor/100); panels=ceil(system kW×1000/panel watts)
daily
Daily energy demand (kWh)
sun
Peak sun hours per day
efficiency
System output factor (%)
panel
Panel rating (watts)

Peak sun hours are not daylight duration. Shading, seasonal production, storage and export rules require site-specific design.

Worked example

West Virginia Solar Calculator: Peak sun hours per day = 4.1. West Virginia averages about 4.1 peak sun hours per day (state-average approximation from NREL PVWatts/NSRDB data — a specific roof can differ by 25% or more, especially in large or mountainous states). This page presets 4.1 sun hours in the solar panel calculator: at the default 80% system output factor, 1 kW of panels in West Virginia produces roughly 1,197 kWh a year. West Virginia's average residential electricity price is about 15.07¢/kWh (EIA), so each self-consumed solar kWh is worth roughly that much against a bill.

Inputs

  • Daily energy demand (kWh)30
  • Peak sun hours per day4.1
  • System output factor (%)80
  • Panel rating (watts)400

Result

  • Panels required23
  • System capacity (kW)9.15
  • Panels23

West Virginia solar reference

ItemValue
Average peak sun hours / day (state average)4.1
Approx. annual yield per kW at 80% output factor1,197 kWh
Average residential electricity price (EIA)15.07¢/kWh
Panels for 30 kWh/day at the default settings23

Results explained

Panels required
Panels required from the formula above. Peak sun hours are not daylight duration. Shading, seasonal production, storage and export rules require site-specific design.
System capacity (kW)
System capacity (kW) from the formula above. Peak sun hours are not daylight duration. Shading, seasonal production, storage and export rules require site-specific design.
Panels
Panels from the formula above. Peak sun hours are not daylight duration. Shading, seasonal production, storage and export rules require site-specific design.

Frequently asked questions

About 4.1 per day as a state average from NREL PVWatts/NSRDB data. Peak sun hours are the equivalent hours of full-strength (1,000 W/m²) sun — not daylight hours — and your exact location, roof angle and shading move the real figure.

At 4.1 peak sun hours and an 80% output factor, covering 30 kWh a day needs about 23 × 400 W panels (a 9.1 kW system). Change the daily demand above to size for your own usage.

Roughly 1,197 kWh a year at an 80% system output factor (4.1 × 365 × 0.8). PVWatts runs for your exact address give the site-specific figure.

The two state-level inputs are sun (4.1 peak hours — below the US average) and price (about 15.07¢/kWh average residential). High prices can make moderate-sun states pay back faster than sunny, cheap-electricity states; your tariff, roof and net-metering terms decide it.

NREL PVWatts models production for a point location, not a state. The state figure averages representative locations; coastal, valley and mountain sites inside one state can differ by a quarter or more, so use it for comparisons, then run PVWatts for your address before buying.