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Oregon, United States

882GWh
every year, from one 325-watt panel on each of 2,151,561 buildings.

What that is equal to

🏠 84 thousand
homes powered for a year
at the US average of 10,500 kWh per household
🌍 327 thousand t
CO₂ avoided annually
displacing grid power at 0.371 kg CO₂e/kWh (EPA eGRID)
🚗 71.1 thousand
cars taken off the road
an average passenger vehicle emits 4.6 t CO₂e a year
⚡ 2.52 billion
electric vehicle miles
at roughly 0.35 kWh per mile

The pay-off

It pays for itself here. A panel on this roof delivers electricity at 9.3¢ a kWh against a local price of 16.3¢ — 43% cheaper than local power. The install is repaid after 13.9 years, inside the panel's 25-year life.
9.3¢ vs 16.3¢
cost per kWh: this panel vs the grid
levelised over 25 years including 0.5%/yr degradation
$1.94 billion
to fit every building here
2,151,561 panels at $900 installed each
13.9 years
to break even
saving $143 million a year area-wide at today's price

Assumes $900 to install one 325 W panel — hardware, mounting, microinverter, electrical work, labour and permitting — repaid only by the electricity it avoids buying. No subsidies, tax credits, net-metering premium, financing cost or future price rises are counted, and the figure is undiscounted. Electricity price is the OR residential average (EIA, May 2026). A single panel is unusually expensive per watt because it carries a whole array's fixed costs, which is why these numbers look worse than rooftop solar generally does.

How this is calculated

Buildings with roofs2,151,561
×  Panel rating325 W
×  Annual yield per panel here409.8 kWh
Annual generation881,792,762 kWh
Assumptions and limitations
  • Yield is specific to this location: 409.8 kWh per panel per year, from NASA POWER climatology transposed onto a tilted roof plane. The same panel makes roughly 596 kWh in Phoenix and 265 kWh in Anchorage.
  • Assumes a south-facing roof at a typical residential pitch, with a ~22% total system loss for soiling, shading, wiring, inverter, and heat.
  • Counts every above-ground structure with a footprint of at least 20 m², so garages and outbuildings are excluded but barns and sheds of real size are not. Building data is machine-derived and imperfect.
  • No account is taken of roof orientation, obstructions, structural condition, or whether the owner wants a panel.

Counties in Oregon

Multnomah County · 113 GWhWashington County · 81.6 GWhClackamas County · 78.9 GWhLane County · 80.5 GWhJackson County · 70 GWhMarion County · 58.2 GWhDeschutes County · 54.9 GWhDouglas County · 32.3 GWhLinn County · 29.9 GWhJosephine County · 26 GWhYamhill County · 21.3 GWhKlamath County · 23.7 GWhUmatilla County · 21.1 GWhCoos County · 17.2 GWhBenton County · 16.8 GWhPolk County · 16.3 GWhLincoln County · 14.6 GWhColumbia County · 12.6 GWhClatsop County · 9.52 GWhTillamook County · 9.93 GWhMalheur County · 12.1 GWhUnion County · 8.95 GWhCrook County · 8.74 GWhWasco County · 8.34 GWhBaker County · 8.29 GWhJefferson County · 7.62 GWhCurry County · 7.33 GWhHood River County · 6.79 GWhMorrow County · 4.64 GWhWallowa County · 4.13 GWhGrant County · 4.32 GWhLake County · 4.41 GWhHarney County · 3.96 GWhSherman County · 1.17 GWhGilliam County · 1.16 GWhWheeler County · 1.19 GWh

Metro areas in Oregon

Portland-Vancouver-Hillsboro, OR-WA · 395 GWhSalem, OR · 74.5 GWhEugene-Springfield, OR · 80.5 GWhMedford, OR · 70 GWhBend, OR · 54.9 GWhRoseburg, OR · 32.3 GWhAlbany-Lebanon, OR · 29.9 GWhHermiston-Pendleton, OR · 25.8 GWhGrants Pass, OR · 26 GWhKlamath Falls, OR · 23.7 GWhCoos Bay, OR · 17.2 GWhCorvallis, OR · 16.8 GWhOntario, OR-ID · 19.6 GWhNewport, OR · 14.6 GWhAstoria, OR · 9.52 GWhLa Grande, OR · 8.95 GWhPrineville, OR · 8.74 GWhThe Dalles, OR · 8.34 GWhBrookings, OR · 7.33 GWhHood River, OR · 6.79 GWh

Places like Oregon

Oklahoma · 1.16 TWhLouisiana · 1.11 TWhMaryland · 968 GWhIowa · 954 GWhPuerto Rico · 970 GWhMississippi · 811 GWh