Nombre de Mach (M: Mach Number)
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Definition
Le rapport entre la vitesse d'un avion et la vitesse locale du son, utilisé pour caractériser le vol en régime compressible.
Qu'est-ce que le nombre de Mach ?
Mach number (M) is the ratio of an aircraft's true airspeed to the local speed of sound in the surrounding medium. Named after Austrian physicist Ernst Mach, it is the fundamental parameter for characterizing flight in compressible flow regimes. At Mach 1, an aircraft travels at exactly the speed of sound; below Mach 1 is subsonic flight; above is supersonic. The speed of sound varies with temperature — at sea level on a standard day (15°C) it is approximately 340 m/s (661 knots), while at 35,000 ft (–56°C) it drops to about 295 m/s (573 knots).
Fonctionnement
Flight regimes are classified by Mach number:
- Subsonic (M < 0.8): Airflow around the aircraft is entirely below the speed of sound. Standard aerodynamic principles apply.
- Transonic (M 0.8–1.2): Mixed flow — some airflow over the wings accelerates to supersonic while the freestream remains subsonic. Shockwaves form on wing surfaces, causing wave drag, buffet, and control anomalies. Most jet airliners cruise in this regime (M 0.78–0.90).
- Supersonic (M 1.2–5.0): Shockwaves anchor ahead of the aircraft. Wave drag is a dominant concern. Specialized wing designs (delta, swept, ogival) manage shockwave behavior.
- Hypersonic (M > 5.0): Extreme aerodynamic heating dominates. Relevant to spacecraft reentry and experimental vehicles.
Modern jet airliners are assigned a Mach operating limit (MMO) — the maximum speed before dangerous compressibility effects occur. The Boeing 777's MMO is Mach 0.89; the 787's is Mach 0.90.
Importance en aviation
Mach number determines the entire aerodynamic design philosophy of an aircraft. The flight envelope has a Mach boundary that cannot be exceeded in normal operations. High-Mach aircraft require swept or delta wings to delay the onset of shockwave formation, thinner airfoil profiles, and area-ruled fuselages. Autopilots and flight management systems actively monitor Mach number and automatically reduce thrust or lower the nose if MMO is approached.
Impact concret
The Concorde cruised at Mach 2.04 (~2,179 km/h) at 60,000 ft, reducing London–New York flight time to under 3.5 hours versus 7+ hours for subsonic jets. The SR-71 Blackbird flew at Mach 3.3+, requiring titanium construction to withstand aerodynamic heating above 300°C. Today, Boom Supersonic's Overture aims for Mach 1.7 commercial service by the late 2020s, while standard long-haul jets like the Boeing 787 cruise at Mach 0.85 to optimize the fuel burn–speed tradeoff.
Related Terms
Domaine de vol
La plage définie de vitesses, altitudes, facteurs de charge et angles d'attaque dans laquelle un avion est certifié pour opérer en sécurité.
Mur du Son
L'augmentation spectaculaire de la traînée aérodynamique ressentie par les aéronefs approchant la vitesse du son (Mach 1), autrefois considérée comme une limite physique absolue à la vitesse de vol.
Traînée
La force aérodynamique qui s'oppose au mouvement d'un avion dans l'air, agissant parallèlement et en sens opposé à la direction de vol.
Transport Supersonique (SST)
Une catégorie d'aéronef commercial conçu pour voler plus vite que la vitesse du son, illustrée par le Concorde franco-britannique et le soviétique Tupolev Tu-144, tous deux en service dans les années 1970–2000.
Turbulence
Mouvement d'air irrégulier et chaotique provoquant des changements soudains d'altitude, d'attitude et de vitesse.