Urban heat & canopy · Austria
  • Story
  • Methods & Data
Vienna: building-level tree canopy. Red = exposed, green = adequate shade.

Austria’s cities are running short of shade

Global Urban Canopy & Heat Exposure Study

Europe’s summers are getting hotter, and the tree canopy that keeps homes cool is thin on the ground. We mapped tree cover around every building in six Austrian cities — 1.23 million buildings in all — and checked how many have the shade they need to stay safe when a heatwave hits.

The takeaway is stark: across these cities, most buildings fall short of the canopy needed to blunt extreme heat.

  • 79–90% of buildings sit below the 30% tree-canopy threshold linked to meaningful cooling.
  • Even Austria’s greenest large cities, Vienna and Graz, leave roughly four in five buildings under that mark.
  • The most exposed, Linz, leaves 90% of its buildings short of shade.

What we measured

For every building, we measured the share of tree canopy within 60 metres — the zone close to home where shade actually cools the air you live in. A park across town does little for your street. We used 30% canopy within 60 m as the heat-safe minimum, following the widely cited “3-30-300” rule for urban greening.

Each coloured unit above is a single building. Red means bare; green means adequately shaded. Scroll through the cities and the pattern repeats: dense cores and industrial belts run hot and treeless, while the green clusters cling to parks, hillsides, and older leafy suburbs.

The ranking

How far off are we?

It is not just that most buildings are below the threshold — it is how far below. In most cities, a large share of buildings have less than 10% canopy nearby. Drag the slider below: even at a lenient 20% target, the deficit barely eases.

Where the heat lands

Sparse canopy and hard surfaces produce urban heat islands — places that soak up sun and stay hot. The maps below show building-level land-surface temperature during the hot season. Read them as a relative heat-exposure indicator (surface temperature runs hotter than the air, and this is a peak composite), not a thermometer reading. The hottest zones line up closely with the barest canopy.

Why it matters

Trees are among the cheapest, most effective tools a city has for cooling homes — but only where they are close to where people live, given space and water to grow, and protected long enough to mature. Canopy planted today will not shade a building for 15–20 years, so the deficits mapped here are the result of decisions made a generation ago. Closing them starts now.

A note on the data. These figures come from a global, satellite-based model covering ~9,000 cities — suitable for mapping and screening, not a substitute for local field survey. Surface temperature is a hot-season maximum and a relative indicator. City extents are functional urban areas (commuting-zone scale). See Methods & Data for full detail and caveats.

Global Urban Canopy & Heat Exposure Study, 2026. Canopy: Meta Canopy Height Model v2 (≥2 m). Surface temperature: Landsat 8/9 hot-season maximum (2022–2024). Buildings: Overture Maps. City boundaries: GHSL Functional Urban Areas. Population: GHS-POP R2023A.