Across 6 modelled locations in Austria, a standard 10 kWp south-facing system produces about 12,013 kWh in a typical year on average. Tomorrow's weather-based city forecasts range from 29.2 to 53.5 kWh for the same reference setup.
Forecast for Tuesday, September 1, 2026 · Updated Aug 30, 2026, 11:01 PM UTC · City samples, not a national production forecast
Forecast target: . Any “tomorrow” label on this page refers to this dated target.
Tomorrow in Austria
One system. Different local weather.
Using the same installation in every location isolates the effect of weather and geography. Enter your own roof on any city page for a personal estimate.
City average
42.5 kWh
Lowest city estimate
29.2 kWh
Highest city estimate
53.5 kWh
How to read and use the data
Austria solar outlook: tomorrow's city forecasts versus PVGIS yield
This page compares 6 modelled locations on one reference system. It is a city comparison tool, not a measurement or forecast of national solar generation.
Dated, weather-based
Tomorrow's forecast
For Tuesday, September 1, 2026, the 10 kWp city estimates average 42.5 kWh and span 29.2 kWh–53.5 kWh. That span is geographic variation between modelled cities, not an uncertainty interval or national forecast.
Multi-year climate baseline
PVGIS specific yield
The modelled cities average about 1,201 kWh/kWp in the PVGIS typical-year profile. Across the 10 kWp reference systems, typical annual output ranges from 10,713 to 13,495 kWh. July has the highest modelled average monthly output and December the lowest.
3, 5 and 10 kWp reference systems
Scale the same assumptions to your system size
SystemTomorrow city average (city spread)PVGIS typical year
3 kWpTomorrow city average (city spread)12.7 kWh8.8 kWh–16.1 kWhPVGIS typical year3,604 kWh/year
5 kWpTomorrow city average (city spread)21.2 kWh14.6 kWh–26.8 kWhPVGIS typical year6,006 kWh/year
10 kWpTomorrow city average (city spread)42.5 kWh29.2 kWh–53.5 kWhPVGIS typical year12,013 kWh/year
Linear reference scaling only: south-facing, 35° tilt and 14% system losses. It does not resize inverter clipping, shade or local roof constraints.
From forecast to a household plan
Battery, EV, heat pump and flexible loads
Choose the nearest representative city before scheduling equipment. A country average can frame the day, but a local forecast and the home's own demand determine usable surplus.
Open the closest city profile and preserve battery headroom around its strongest forecast window. The 29.2 kWh–53.5 kWh country spread shows why one national schedule would be unreliable.
Shift only discretionary water heating or pre-heating after checking the nearest city's strongest hours. Comfort, frost protection and hygiene controls take priority.
Country figures are daily energy, not simultaneous power. Use a city forecast and run flexible loads sequentially after allowing for base household consumption.
Local questions
Solar forecast FAQ
How much could a 5 kWp solar system produce tomorrow in Austria?
Across the 6 modelled locations, the 5 kWp estimates average 21.2 kWh for Tuesday, September 1, 2026 and span 14.6 kWh–26.8 kWh between cities. The spread is geographic, not a national uncertainty range.
Which modelled Austria location has the highest typical PV output?
Innsbruck has the highest and Salzburg the lowest typical annual output among the 6 locations in this dataset. The comparison uses the same 10 kWp reference system and PVGIS climate profile.
Is the Austria city range a national solar forecast?
No. It is the minimum-to-maximum spread across 6 modelled city reference points. It does not aggregate installed solar systems, represent every local weather condition or provide a national generation total.
How should I use the Austria forecast for a battery, EV or heat pump?
Select the nearest city and use its strongest forecast hours, then subtract household base load and respect battery, charger and heat-pump operating limits. Use the country page to compare locations, not to control equipment directly.
The bars average the 6 city reference points. Typical annual output ranges from about 10,713 to 13,495 kWh for the 10 kWp setup. Of the locations modelled, Innsbruck has the highest typical annual output and Salzburg the lowest.
563Jan
802Feb
1118Mar
1258Apr
1272May
1315Jun
1367Jul
1281Aug
1111Sep
909Oct
542Nov
474Dec
January563 kWh
February802 kWh
March1,118 kWh
April1,258 kWh
May1,272 kWh
June1,315 kWh
July1,367 kWh
August1,281 kWh
September1,111 kWh
October909 kWh
November542 kWh
December474 kWh
Typical monthly profiles use the European Commission JRC PVGIS multi-year climate series.