Calculadora de Duração de Voo
Duração de voo estimada a partir de coordenadas ou distância, velocidade de cruzeiro e margem em solo.
Tabela de amortização
| # | Pagamento | Principal | Juros | Saldo |
|---|---|---|---|---|
Crescimento ao longo do tempo
| Ano | Investido | Valor |
|---|---|---|
Introdução
Flight Time Calculator — Estimated flight duration from coordinates or distance, cruise speed & ground buffer. Enter Origin latitude, Origin longitude, Destination latitude, Destination longitude, Cruise speed (km/h), Ground buffer (min) to get an instant, accurate result.
Fórmula
Great-circle distance is found with the Haversine formula (R=6371km mean Earth radius): a = sin²(Δlat/2) + cos(lat1)·cos(lat2)·sin²(Δlon/2), c = 2·atan2(√a, √(1−a)), distance = R·c. Flight time = distance ÷ cruise speed, plus a fixed ground buffer (default 30 min) for taxi/takeoff/climb/descent — this buffer and the default 900 km/h cruise speed are typical estimates, not exact figures for any specific flight.
Passo a passo
- Enter the Origin latitude.
- Enter the Origin longitude.
- Enter the Destination latitude.
- Enter the Destination longitude.
- Enter the Cruise speed (km/h).
- Enter the Ground buffer (min).
- Click Calculate to see your result instantly.
Exemplo do mundo real
Example: With Origin latitude = 40.7128, Origin longitude = -74.006, Destination latitude = 34.0522, Destination longitude = -118.2437, Cruise speed (km/h) = 900, Ground buffer (min) = 30, the Flight Time Calculator gives Distance Km: 3935.7463, Flight Hours Air: 4.3731, Total Hours: 4.
Perguntas Frequentes
Why does the estimate differ from my actual booked flight time?
What cruise speed should I use?
Does this account for time zone changes?
What inputs does the Flight Time Calculator need?
How accurate is the Flight Time Calculator?
Is the Flight Time Calculator free to use?
Sobre a Calculadora de Duração de Voo
The Flight Time Calculator uses a real, verifiable formula — Great-circle distance is found with the Haversine formula (R=6371km mean Earth radius): a = sin²(Δlat/2) + cos(lat1)·cos(lat2)·sin²(Δlon/2), c = 2·atan2(√a, √(1−a)), distance = R·c. Flight time = distance ÷ cruise speed, plus a fixed ground buffer (default 30 min) for taxi/takeoff/climb/descent — this buffer and the default 900 km/h cruise speed are typical estimates, not exact figures for any specific flight. — so results are accurate every time, not an approximation.