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Why did Concorde nose bend?

But Concorde's long, pointed nose had a hinge. As the plane took off, landed, and taxied, the pilots tilted its nose forward so that they could see the runway. For supersonic flight, the nose was hydraulically lifted, streamlining the plane's shape and allowing it to efficiently pierce the air.



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People inside the plane didn't hear a thing. In fact, the transition to supersonic flight was so unimpressive that they decided to install a “mach meter” inside the passenger cabin so that people would know then they passed the speed of sound.

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Technical, financial, and regulatory hurdles make a return to the skies extremely unlikely. Concorde is an aircraft that captures the imagination and is instantly recognizable even to non-aviation fanatics.

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Concorde used the most powerful pure jet engines flying commercially. The Aircraft's four engines took advantage of what is known as 'reheat' technology, adding fuel to the final stage of the engine, which produced the extra power required for take-off and the transition to supersonic flight.

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On 25 July 2000, Air France Flight 4590 crashed shortly after take-off with all 109 occupants and four on the ground killed. This was the only fatal incident involving Concorde; commercial service was suspended until November 2001.

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Concorde is sadly no longer flying, but it is still possible to visit some of the remaining 18 airframes, there are others not open to the public but you can still see them.

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Small cabin: Space was tight inside Concorde. The seating configuration was only four across with about 100 seats available per flight. There was little to differentiate between Business and First Class. Restricted view: Concorde's windows were much smaller than those on a normal passenger airplane.

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Such speed didn't come cheap, though: A transatlantic flight required the high-maintenance aircraft to gulp jet fuel at the rate of one ton per seat, and the average round-trip price was $12,000.

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Bathroom: The smallest room on Concorde was also a squeeze. Su Marshall, who flew on the airplane, said she was advised by a regular passenger to go before takeoff as the size made it impossible to pee once in the air.

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Concorde had to be painted with a special highly reflective white paint so it could withstand the heat generated from supersonic travel. “The power was gained using an engine reheat, where fuel is pumped into the jet pipe and set alight to give extra thrust,” British Airways said.

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Following a farewell tour around North America and the United Kingdom, British Airways and Air France retired all 20 Concordes that were built, of which 16 flew.

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BA never suffered a serious accident with its seven strong fleet. Concorde service was profitable by the late 1980s and if not for the economic downturn and Air France Concorde crash of 2000, may have survived to this day.

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Supercharged: Concorde was the first -- and still only -- passenger aircraft that had turbojet engines with afterburners. Raw fuel was introduced into the exhaust of the plane's four engines, immediately increasing the engines' thrust by almost 20%.

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No manufacturer has yet been able to recreate the days of the Concorde, but some are trying. Denver-based Boom Supersonic is leading the pack with its faster-than-sound Overture jet, already securing over 100 orders from United Airlines, Japan Airlines, and American Airlines.

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Boom Supersonic's Overture plane is slated to roll out in 2025, fly in 2026 and expected to carry passengers by 2029. Capable of flying at speeds of Mach 1.7 – twice the speed of today's fastest airliners – Overture will be able to connect more than 500 destinations in nearly half the time.

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Flying at Mach 2 – about 1,350mph – the Concorde could fly 100 passengers and a crew of nine from NYC to London in an average of three hours and 30 minutes.

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Fifty years ago, the federal government banned all civilian supersonic flights over land. The rule prohibits non-military aircraft from flying faster than sound so their resulting sonic booms won't startle the public below or concern them about potential property damage.

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Afterburning was added to Concorde for take-off to cope with weight increases that came after the initial design. It was also used to accelerate through the high-drag transonic speed range, not because the extra thrust was required, but because it was available and improved the operating economics.

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