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Why is the Boeing 787 good?

Fuel efficiency: the Boeing 787-8 boasts exceptional fuel efficiency, thanks to its aerodynamic design, advanced engines and use of lightweight composite materials. It offers approximately 20% lower fuel consumption per seat compared to older aircraft models, reducing operating costs and environmental impact.



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The flagship widebodies have been very successful with customers. This century has been dominated by two flagship widebodies, the Boeing 787 and Airbus A350. Built with new components, carrying the most efficient engines, and with exceptional range, they represent the best of innovation from both planemakers.

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The carbon-fibre structure of the 787 allows the aircraft to be pressurized to a much higher level than on many other aircraft types. The lower the cabin altitude, the better you feel both during and after the flight, allowing your body to adjust to your new time zone more quickly.

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This advanced fly-by-wire system also is the key to Smoother Ride Technology – unique to the 787 family -- which senses turbulence and adjusts control surfaces automatically to dampen its effects before it reaches the passengers.

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This is quite probably the reason for the popularity of the mid-sized Boeing 787-9 Dreamliner, which offers its operators a very useful balance of both range and capacity. This mirrors the Boeing 737 MAX family, whereby the MAX 8 model (which is the second-largest of four variants) is by far the most popular version.

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We can see that the smaller variants of the 787 have a better range than the larger 787-10. In fact, the mid-sized 787-9 even outranks the A380. However, in terms of the comparison to the larger 787-10, the A380 appears, on paper, to be the more flexible aircraft on account of its longer range.

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The Airbus A380 can reach speeds of more than 1,000 kilometres per hour! Now the Boeing 787 Dreamliner (907 km/h) and Boeing 777 (905 km/h) aren't that fast, but still three times faster than a Formula 1 racing car. See below the speeds of the most common aircraft on Schiphol.

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Incredibly safe. The 787–8, —9 & —10 are as safe as it's going to get in aviation. The issue with the 787 spacing issues — where gaps are larger than 0.005 inches — is a fatigue and cycles related issue. In normal manufacturing, their are manufacturing tolerances to account for slight differences in part builds.

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The Dreamliner is a successful aircraft, still in production with more than 1600 delivered or on order. The list price for a new Boeing 787-8 is $239 million dollars. Yet even as international travel opens again for these long-range aircraft, two Dreamliners barely ten years old are waiting for the wrecker's ball.

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Starting in the fall of 2020, Boeing found previous quality defects at multiple joins inside 787 fuselages that stopped almost all deliveries of the jet through August 2022, racking up more than $6.3 billion in additional “abnormal costs.”

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The 787 is a widebody passenger aircraft capable of flying long distances at a cruise speed of 0.85 Mach (652 mph/1,050 kph).

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The Boeing 787 Dreamliner has revolutionized flying for both passengers and pilots. Taking a leap into the future from its predecessors, the designers incorporated a number of new features that make the Dreamliner one of the most fuel efficient and comfortable aircraft in the skies.

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The Boeing 787 8 Dreamliner is a mid-size, twin-engine, wide-body jet developed by the Boeing company.

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In July 2003, a public naming competition was held for the 7E7, for which out of 500,000 votes cast online the winning title was Dreamliner. Other names included eLiner, Global Cruiser, and Stratoclimber. All Nippon Airways launched the 787 program with an order for 50 aircraft in 2004.

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The Dreamliner's lightweight composite structure contributes to reduced noise levels, both inside and outside the aircraft.

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The 787 Dreamliner uses a “bleedless” pressurisation system, meaning that it does not use any bleed air from the aircraft's engines.

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Designed for optimized fuel efficiency Boeing states that the Dreamliner's fly-by-wire technology: ... optimizes the shape (or 'camber') of the wing automatically to save the most fuel.

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