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Boeing 787-8 vs. Bombardier Q400 (Dash 8)

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787-8

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Q400 (Dash 8)

Price (USD)
$224 Million$32 Million
First Flight
20091998
Body Type
Wide-bodyNarrow-body
Length
56 m186 ft
32 m107 ft
Wingspan
60 m197 ft
28 m93 ft
Wing Area
377 m²4,058 ft²
64 m²688 ft²
Fuselage Width
5 m18 ft
2 m8 ft
Height
16 m55 ft
8 m27 ft
Max Takeoff Weight
227,900 kg502,433 lbs
30,500 kg67,241 lbs
Number of Engines
22
Engine Options
General Electric GEnx / Rolls-Royce Trent 1000Pratt & Whitney PW150A
Max Thrust Per Engine
280 kN64,000 lbf
3,800 kW5,071 shp
Max Total Thrust
560 kN128,000 lbf
7,600 kW10,142 shp
Fuel Capacity
126,200 l33,339 gal
6,530 l1,725 gal
Range
13,620 km7,354 nm
2,040 km1,102 nm
Cruise Speed
903 km/h561 mph
644 km/h400 mph
Typical Seating
242 pax76 pax
Max Seating
381 pax90 pax

What Are the Differences Between the Boeing 787-8 and Bombardier Q400 (Dash 8)

Boeing 787-8 vs Bombardier Q400 (Dash 8) Size Comparison

  • At 56.70 meters, the Boeing 787-8 is 23.80 meters longer than the Bombardier Q400 (Dash 8).
  • With a wingspan of 60.10 meters, the Boeing 787-8 is 31.70 meters wider from wingtip to wingtip.
  • The Boeing 787-8 and Bombardier Q400 (Dash 8) have heights of 16.90 meters and 8.40 meters respectively - making the Boeing 787-8 8.50 meters taller.

Boeing 787-8 vs Bombardier Q400 (Dash 8) Range

  • Boeing 787-8’s range of 13,620 kilometers is greater than Bombardier Q400 (Dash 8)’s range of 2,040 kilometers. Therefore, the Boeing 787-8 can fly nonstop approximately 11,580 kilometers further.
  • The Boeing 787-8 can hold 33,339 gallons of fuel, which is 31,614 gallons more than the Bombardier Q400 (Dash 8)’s tank capacity of 1,725 gallons.

Boeing 787-8 vs Bombardier Q400 (Dash 8) Seating

  • In a typical seating configuration, the Boeing 787-8 can accommodate 242 passengers, which is about 166 passengers more than Bombardier Q400 (Dash 8)’s seating capacity.
  • The Boeing 787-8’s max seating capacity is 381 passengers, compared to 90 passengers of the Bombardier Q400 (Dash 8).

About the Boeing 787-8

The Boeing 787-8, as the first variant of the revolutionary 787 Dreamliner series, marked a new chapter in commercial aviation when it took to the skies in 2009. This modern wide-body twinjet made its introduction into commercial aviation in 2011 with All Nippon Airways. Since then, the entire Dreamliner family has been pivotal for efficient, point-to-point routes.

Spanning 56.7 meters (186.1 feet) in length with a wingspan of 60.1 meters (197.2 feet), the 787-8 is distinguished by its sleek and aerodynamic design. The aircraft boasts a wing area of 377.0 square meters (4058.0 square feet), which plays a critical role in its fuel-efficient performance. One of the most notable features of the 787-8 is its extensive use of composite materials, including carbon fiber reinforced polymer, accounting for a significant portion of its primary structure. This use of advanced materials results in a lighter airframe, leading to reductions in fuel consumption and operational costs, while also enhancing structural strength and durability. From the outside, 787s are discernible by their rounded noses, raked wingtips, and engine chevrons (serrated edges).

Equipped with either General Electric GEnx or Rolls-Royce Trent 1000 engines, the 787-8 offers a total maximum thrust of 560.0 kN (128,000 lbf). These engines, combined with the aircraft's optimized aerodynamics, enable it to achieve a range of approximately 13,620 kilometers (7,354 nautical miles). This extended range, coupled with its fuel efficiency, makes the 787-8 a viable option for airlines to operate long-haul flights with lower environmental impact.

Inside, the Boeing 787-8 typically seats 242 passengers in a standard three-class configuration, but it can accommodate up to 381 passengers in a high-density setup. The cabin of the 787-8 has been designed with passenger comfort at its core, featuring larger windows that are electronically dimmable, higher humidity levels, and a lower cabin altitude pressure. These features significantly enhance the passenger experience, particularly on long-duration flights, by reducing fatigue and improving overall comfort.

The 787-8 competes in the commercial aviation market with aircraft such as the Airbus A330-900neo. Its introduction was a strategic move by Boeing to provide airlines with an aircraft that combines operational efficiency with advanced passenger comfort amenities. The aircraft's innovative design and environmental considerations have made it a preferred choice for various airlines, including All Nippon Airways, United Airlines, Air Canada, Etihad Airways, and LATAM Chile. These carriers have utilized the 787-8's capabilities to effectively serve a broad range of international and transcontinental routes.

The development and deployment of the Boeing 787-8 have been characterized by a shift towards more sustainable and efficient air travel. Its use of cutting-edge materials, coupled with state-of-the-art systems, represents a significant advancement in aircraft design. As a result, the 787-8 has set new standards in terms of operational efficiency, reduced carbon emissions, and enhanced passenger comfort, thereby playing a pivotal role in the evolution of modern long-haul aviation.

About the Bombardier Q400 (Dash 8)

The Bombardier Q400, belonging to the DHC Dash 8 series, is a turboprop aircraft engineered for regional aviation. With a length of 32.9 meters (107.9 feet) and a wingspan of 28.4 meters (93.2 feet), the Q400 is designed to operate efficiently in diverse regional airport environments. It strives in operations that require agility and short takeoff and landing capabilities. From the outside, the Q400 can be identified by its high-wing design, 6-bladed propellors, T-tail, and wing-mounted landing gears. The Q400 was the most popular variant of the Dash 8, with over 600 delivered as of September 2019. De Havilland ultimately paused Dash 8-Q400 production in 2021 due to the pandemic and lack of demand.

Powered by two Pratt & Whitney PW150A engines, the aircraft is capable of producing a substantial power output, . This power enables the Q400 to achieve a range of approximately 2,040 kilometers (1,102 nautical miles), making it a suitable choice for various regional routes, from short hops to more extended connections. The selection of turboprop engines for the Q400 reflects a focus on fuel efficiency and operational cost-effectiveness, key considerations in the regional airline market. The cabin of the Q400, configured to seat about 76 passengers in a standard layout, can be adapted to accommodate up to 90 passengers in high-density seating arrangements. This flexibility allows airlines to optimize the aircraft for different route profiles. The cabin design incorporates elements aimed at improving passenger comfort, such as noise reduction, which is particularly beneficial during the shorter flights typical in regional travel.

In the regional aircraft market, the Bombardier Q400 offers an alternative to similar capacity regional jets, like the ATR 72. The aircraft's competitive edge lies in its combination of turboprop efficiency with a passenger capacity that approaches that of larger regional jets. This balance makes the Q400 a viable option for airlines operating a range of regional routes. Operators of the Q400, including Porter Airlines, Flybe, and Horizon Air, have found the aircraft suitable for their diverse regional networks. The Q400's operational profile allows these airlines to service routes efficiently, connecting smaller cities and towns with major hubs. The aircraft's role in these fleets underscores its suitability for the specific demands of regional air travel, where efficiency, versatility, and cost-effectiveness are paramount.

In summary, the Bombardier Q400's introduction into the regional aviation sector provided airlines with an aircraft that aligns well with the operational requirements of short to medium-haul routes. Its design, capacity, and range capabilities make it a noteworthy choice for airlines looking to enhance their regional operations.

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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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