Chemtrails Over St. Petersburg Today

St. Petersburg, Russia · 59.93°N, 30.32°E · Last updated: Thu, 04 Jun 2026 19:55:15 GMT

Current Contrail Conditions

High Likelihood5/8 levels favorable

5 of 8 atmospheric pressure levels currently show conditions favorable for contrail formation.

Solar visibility: Limited · Sun elevation: -3.9°

Atmospheric Conditions by Pressure Level

ChemTracker monitors 8 pressure levels above St. Petersburg. Contrails form when temperature is below the Schmidt-Appleman threshold and relative humidity with respect to ice (RH-ice) exceeds 70%.

PressureAltitudeTemp (°C)RH-water (%)RH-ice (%)Contrail
150 hPa44,327 ft-5035Unlikely
200 hPa38,637 ft-55.51220Unlikely
225 hPa36,216 ft-58.582142Likely
250 hPa34,004 ft-55.5100169Likely
275 hPa31,965 ft-51101165Likely
300 hPa30,070 ft-46100156Likely
350 hPa26,636 ft-37.775109Likely
400 hPa23,578 ft-29.33243Unlikely

Solar Visibility Over St. Petersburg

Visibility RatingLimited
Sun Elevation-3.9°
Visibility Factor17%

Solar visibility determines how well contrails can be observed from the ground. Higher sun elevation means better backlit visibility of trail formation above St. Petersburg.

Frequently Asked Questions

Are there chemtrails over St. Petersburg today?

ChemTracker monitors real-time atmospheric conditions above St. Petersburg to predict contrail formation. Currently, 5 of 8 pressure levels show conditions favorable for contrail formation — indicating high likelihood of persistent trails.

What atmospheric conditions cause contrails over St. Petersburg?

Contrails form above St. Petersburg when jet exhaust meets air colder than approximately −40°C at cruising altitude (typically 8,000–12,000 metres). Persistence depends on relative humidity with respect to ice — when the air is supersaturated (RH-ice above 100%), trails can last hours and spread into cirrus-like haze. The Schmidt-Appleman criterion predicts these conditions from temperature, pressure, and humidity data.

How does ChemTracker track aircraft over St. Petersburg?

ChemTracker uses live ADS-B data to track every aircraft over St. Petersburg in real time. Each aircraft's altitude is cross-referenced against atmospheric data from Open-Meteo at 8 pressure levels. The app shows you which planes are producing trails, their flight numbers, and whether current conditions are favorable for persistent contrail formation above St. Petersburg.

What is contrail climate forcing near St. Petersburg?

Aircraft contrails can have a warming effect on the climate, particularly during certain atmospheric conditions. Above busy air corridors like those near St. Petersburg, persistent contrails and the resulting cirrus clouds can trap outgoing infrared radiation. This effect varies with time of day, season, and local weather patterns. ChemTracker's pressure-level data helps researchers and observers understand when this forcing is most significant.

Nearby Tracked Locations

Track Aircraft Over St. Petersburg in Real Time

See every aircraft above St. Petersburg with its altitude, flight number, and whether atmospheric conditions at that pressure level are favorable for trail formation.

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