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It is powered by four Rolls-Royce/Snecma Olympus 593 turbojets with variable engine intake ramps, and reheat for take-off and acceleration to supersonic speed. Constructed out of aluminium , it was the first airliner to have analogue fly-by-wire flight controls.
Partial reheat providing a 20% thrust increase [3] was installed to give the take-off thrust required for Concorde to operate from existing runways, and for transonic acceleration from Mach 0.95 up to Mach 1.7; the aircraft flew supersonically without reheat above that speed. At cruise the engine's direct contribution (transferred by its mounts ...
For example, Concorde had very high drag (a lift to drag ratio of about 4) at slow speed, but it travelled at high speed for most of the flight. Designers of Concorde spent 5000 hours optimizing the vehicle shape in wind tunnel tests to maximize the overall performance over the entire flightplan.
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The official handover ceremony of British Airways' first Concorde occurred on 15 January 1976 at Heathrow Airport. Air France Concorde (F-BTSC) at Charles de Gaulle Airport on 25 July 1975, exactly 25 years before the accident in 2000 British Airways Concorde in Singapore Airlines livery at Heathrow Airport in 1979 Air France Concorde (F-BTSD) with a short-lived promotional Pepsi livery in ...
Its inaugural flight — 60 years ago in September 1964 — kicked off a golden era for supersonic aircraft. The plane would later achieve a speed of just over 2,000 miles per hour, nearly 50% ...
In 2003, Lewis Whyld took an instantly classic photograph of the Concorde on its last flight, soaring over the Clifton Suspension Bridge in Bristol, United Kingdom.
The droop nose enabled the airliner to switch between being streamlined to reduce drag for optimal aerodynamic efficiency and not obstructing the pilot's view during taxi, take-off, and landing operations. [13] Concorde's droop nose was accompanied by a moving transparent visor that retracted into the nose prior to being lowered.