Vertical Takeoff and Landing (VTOL)

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Vertical Takeoff and Landing (VTOL)[edit | edit source]

A vertical take-off and landing (VTOL) aircraft is one that can take off and land vertically without relying on a runway. This classification includes various types of aircraft, including helicopters, thrust-vectoring fixed-wing aircraft, tiltrotors, and other rotorcraft with powered systems like cyclogyros, cyclocopters, and gyrodyne types.

Some VTOL aircraft can also operate in CTOL, STOL, or STOVL configurations. Others, like helicopters, operate exclusively as VTOL due to the absence of landing gear for taxiing.

History[edit | edit source]

VTOL concepts date back to early visions of vertical flight like Leonardo da Vinci’s sketches. Many prototypes were created throughout the 20th century, especially during and after World War II.

Lockheed and Convair both developed early VTOL fighters, with programs such as the XFV and XFY. The Ryan X-13 Vertijet was another key tail-sitter example developed in the 1950s.

British and European development included concepts like the Fairey Jet Gyrodyne, which tested hybrid rotor/jet systems.

Jet Lift[edit | edit source]

Aircraft like the Canadair CL-84 Dynavert explored the use of tilting wing and engine systems to achieve VTOL capability.

Tiltrotors[edit | edit source]

Tiltrotors use rotating nacelles to transition between vertical and horizontal flight, exemplified by the Bell-Boeing V-22 Osprey.

Tail-sitters[edit | edit source]

Tail-sitters take off and land on their tails before transitioning to horizontal flight, a concept explored by aircraft like the Ryan X-13 and XFY-1.

Lift Jet Systems[edit | edit source]

VTOL aircraft like the Yakovlev Yak-38 employed lift jets which provided vertical lift and were then shut down for normal flight.

Early British Development[edit | edit source]

The Short SC.1 pioneered British VTOL research and used multiple vertical engines for testing transition to forward flight.

Harrier / Modern STOVL[edit | edit source]

The Harrier and F-35B represent the most successful STOVL platforms using vectored thrust or a lift-fan plus rear nozzle vectoring combination.

Drones[edit | edit source]

Modern eVTOL drones, like quadcopters, have become widespread in commercial, industrial, and military applications.

Gallery[edit | edit source]

File:Royal International Air Tattoo 2018 MOD 45164432.jpg
An RAF F-35B Lightning II demonstrating a vertical landing
File:Xv-15 inflight.jpg
Bell XV-15
File:Convair XFY-1 Pogo 2.jpg
Convair XFY-1 Pogo in flight
File:Fairey Jet Gyrodyne-1.jpg
Fairey Jet Gyrodyne
File:Fairey Jet Gyrodyne-1.jpg
Fairey Jet Gyrodyne
File:CanadairCL-84DynavertSerialCX8402.jpg
Canadair CL-84 Dynavert CL-84-1 (CX8402) on display at the Canada Aviation and Space Museum in Ottawa, Ontario
File:Aircraft.osprey.678pix.jpg
U.S. Marines jump from a Bell-Boeing V-22 Osprey, the first production tiltrotor aircraft
File:Ryan X-13.jpg
The Ryan X-13
File:Yak-38 Lift Engines NT.PNG
The Soviet Union's VTOL aircraft, the Yakovlev Yak-38
File:Short SC.1.jpg
The Short SC.1 a VTOL delta aircraft
File:INAS 300 Sea Harrier vertical landing on a carrier.JPG
Landing of Harrier jump jet with Indian Naval Air Arm
File:F-35B Lighting II training flights 170203-M-ON157-0436.jpg
The F-35B uses a ducted fan and also directs (vectors) its rear exhaust downward.