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Thermals forecast — how to read it

The thermals map is a soaring-specific forecast built from ICON-D2's boundary-layer parameters. Glider pilots (Segelflug, vol à voile) use it for task planning; powered GA pilots can read the bumpiness index to anticipate low-level turbulence on a hot day.

ClearToFly thermals forecast for Wed Jul 15 at 17:00 CEST across the Saarland, Rhineland-Palatinate and Rhine-Main region (Saarbrücken, Kaiserslautern, Mannheim, Frankfurt am Main). Broad orange / yellow coverage indicates Strong thermals (2.0–2.5 m/s average climb). Scattered darker patches. The Map Controls panel on the left shows a Layer dropdown set to ‘Thermal Strength’. An airfield popup for EDRC Marpingen Glider Airfield (1,170 ft) shows Marpingen Radio 120.185, Langen Information 123.525, runway 10/28 950 m grass, and observed wind 070°/10.7 kt at 10:30Z; a hover tooltip near the field reads 2.2 m/s. Frankfurt CTR airspace polygons overlay the north-east corner. Right-side legend runs from grey (< 0.5 m/s — None) through blue / green / yellow / orange to dark red (> 4 m/s — Extreme).
Saarland soaring day, Wednesday afternoon at 17:00 CEST. Layer selector set to Thermal Strength (the map also has separate layers for usable top, Cu base, and bumpiness). Broad orange = Strong (2.0–2.5 m/s) with a 2.2 m/s tooltip at EDRC Marpingen — solid cross-country conditions for a glider. The Marpingen popup is itself a nice reminder: glider fields have runway data too (10/28 950 m grass), so crosswind analysis works even for grass strips.

What the map shows

The Layer dropdown in Map Controls switches between four thermals sub-fields, each rendered as its own raster:

How to read thermal strength (glider pilots)

How to read bumpiness (GA pilots)

If you're planning a low-level VFR flight on a warm afternoon over sunlit terrain, check the bumpiness index. A deep-red bumpiness patch means passengers will not enjoy the ride; consider climbing above the boundary layer or waiting for the evening cool.

The relationship to convection

Strong thermals + humid airmass = convective overdevelopment. On days where the thermals map is bright red across a wide region, the CAPE map is usually also elevated, and the day that started as classic soaring can turn into a thunderstorm day by 16:00 local. Watch both together.

Model caveats

Thermal strength depends strongly on surface heating, which the model forecasts well over open terrain but less well over cities, water and forest patches. Trust the regional pattern, but verify against real conditions once airborne. Glider club forecasts (e.g. TopMeteo, XCSkies) offer additional detail if you want to compare.