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Boeing 717-200 vs. Airbus A330-800

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717-200

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A330-800

Price (USD)
$33 Million$260 Million
First Flight
19982018
Body Type
Narrow-bodyWide-body
Length
37 m124 ft
58 m193 ft
Wingspan
28 m93 ft
64 m210 ft
Wing Area
93 m²1,001 ft²
465 m²5,005 ft²
Fuselage Width
3 m11 ft
5 m18 ft
Height
9 m29 ft
17 m57 ft
Max Takeoff Weight
55,000 kg121,254 lbs
251,000 kg553,360 lbs
Number of Engines
22
Engine Options
Rolls-Royce BR715Rolls-Royce Trent 700
Max Thrust Per Engine
95 kN21,400 lbf
320 kN72,000 lbf
Max Total Thrust
190 kN42,800 lbf
640 kN144,000 lbf
Fuel Capacity
16,670 l4,404 gal
139,090 l36,744 gal
Range
3,815 km2,060 nm
15,094 km8,150 nm
Cruise Speed
822 km/h511 mph
870 km/h541 mph
Typical Seating
110 pax260 pax
Max Seating
134 pax406 pax

What Are the Differences Between the Boeing 717-200 and Airbus A330-800

Boeing 717-200 vs Airbus A330-800 Size Comparison

  • At 58.80 meters, the Airbus A330-800 is 21 meters longer than the Boeing 717-200.
  • With a wingspan of 64 meters, the Airbus A330-800 is 35.50 meters wider from wingtip to wingtip.
  • The Boeing 717-200 and Airbus A330-800 have heights of 9 meters and 17.40 meters respectively - making the Airbus A330-800 8.40 meters taller.

Boeing 717-200 vs Airbus A330-800 Range

  • Airbus A330-800’s range of 15,094 kilometers is greater than Boeing 717-200’s range of 3,815 kilometers. Therefore, the Airbus A330-800 can fly nonstop approximately 11,279 kilometers further.
  • The Airbus A330-800 can hold 36,744 gallons of fuel, which is 32,340 gallons more than the Boeing 717-200’s tank capacity of 4,404 gallons.

Boeing 717-200 vs Airbus A330-800 Seating

  • In a typical seating configuration, the Airbus A330-800 can accommodate 260 passengers, which is about 150 passengers more than Boeing 717-200’s seating capacity.
  • The Airbus A330-800’s max seating capacity is 406 passengers, compared to 134 passengers of the Boeing 717-200.

About the Boeing 717-200

The Boeing 717-200 is a narrow-body, twin-engine jetliner designed for regional and short to medium-haul routes. Characterized by its efficiency and operational flexibility, it caters to airlines requiring a reliable and cost-effective solution for less dense routes. Developed as a part of the Boeing family, the 717-200 first entered service in 1998, marking Boeing's entry into the regional jet market. It was produced until 2006, with a focus on meeting the specific demands of regional air travel. The aircraft's production history reflects Boeing's strategy to offer a range of jetliners tailored to various market segments.

With dimensions of 37.8 meters (124.0 feet) in length and a wingspan of 28.5 meters (93.3 feet), the 717-200 is ideally sized for operations at smaller airports. It typically accommodates 110 passengers, providing a comfortable and efficient travel experience on regional journeys. Powered by two rear-mounted Rolls-Royce BR715 engines, the Boeing 717-200 delivers a total thrust of 190.0 kN (42,800 lbf). Its fuel capacity of 16,670 liters (4,404 US gallons) supports a range of 3,815 kilometers (2,060 nautical miles), making it suitable for various regional routes. The aircraft has a cruise speed of 822 km/h (511 mph).

In the competitive regional jet market, the Boeing 717-200 stands as a contender against models like the Bombardier CRJ Series and Embraer E-Jets. Its introduction provided airlines with a practical and economical option for regional networks, balancing the needs for capacity, range, and cost-efficiency. Airlines such as Delta Air Lines, Hawaiian Airlines, and QantasLink have utilized the 717-200 for its operational efficiency and adaptability. Not many 717s are still in service today. Delta is one of the last airlines to be phasing out its own fleet.

The Boeing 717-200's legacy in commercial aviation is defined by its role in regional air travel. While its production has concluded, the 717-200 continues to be recognized for its contribution to the regional aviation segment.

About the Airbus A330-800

The Airbus A330-800, part of the A330neo family, is a wide-body, twin-engine jetliner developed as a more efficient and modernized version of the A330-200. Introduced in the 2010s, the A330-800 offers enhanced performance and range capabilities, positioning itself as a competitive option in the long-haul market segment.

With a length of 193 feet (58.8 meters) and a wingspan of 208 feet (64 meters) inclusive of its distinctive wingtip devices known as "Sharklets," the A330-800 can accommodate up to 257 passengers in a standard three-class configuration. The aircraft's design focuses on maximizing space and comfort, making it ideal for various international routes. Powered by the latest-generation Rolls-Royce Trent 7000 engines, the A330-800 boasts improved fuel efficiency and reduced emissions. It has a maximum takeoff weight of approximately 533,500 lbs and a remarkable range of up to 8,150 nautical miles, making it suitable for longer and less frequented routes. The A330-800's advanced avionics and Airbus's pioneering fly-by-wire technology enhance its flight performance and operational safety. The cockpit features state-of-the-art navigation systems and electronic flight instrument displays, providing pilots with comprehensive control and situational awareness.

The A330-800 competes with other state-of-the-art aircraft like the Boeing 787-9 Dreamliner, offering airlines an alternative in the long-haul, twin-aisle market. Its appeal lies in its operational efficiency, range capabilities, and Airbus's reputation for reliability and passenger comfort. As of late 2023, just several units have been delivered to airlines: Air Greenland (1), Kuwait Airways (4), and Uganda Airlines (2). The larger -900 variant is much more popular, with over 320 orders in its lifetime. The limited demand for the -800 could be due to the fact that the -200s it might replace after are still relatively young (12 years on average).

In commercial service, the Airbus A330-800 serves airlines that require an aircraft with extended range and a balanced capacity. Its role in modern aviation is underscored by its ability to efficiently operate on routes that demand lower passenger volumes but longer distances, such as intercontinental flights connecting secondary cities.

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Values shown may not be 100% accurate, as some metrics are averages or only represent certain production years and configurations. Engine specs are based on the best options available.

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