Winged Keel

The Winged Keel is a sailboat keel originally designed by Ben Lexcen and made its first appearance on the 12-metre class yacht Australia II in the 1983 America's Cup. Along with Australia II's efficient sail design, this keel was one of the factors contributing to Australia II's success. The increased stability afforded by the winged keel, due mainly to the extra lead in the wings producing a very low centre of gravity, allowed Australia II to be as short and light as possible under the 12 meter rules, and still carry enough sail to beat the American entry. The wings were angled downwards at about 20 degrees, which, since they were lifting downwards, acted as a dihedral.

The lateral wings of a winged keel are usually of moderate aspect ratio, that uses a nearly horizontal foil, the "wing", at the bottom to provide additional span. Note that, contrary to classic configuration, the keel is "upside down" under the hull (the root chord is smaller than the tip (bottom) chord. Each wing acts as a winglet, effectively doubling the keel aspect ratio and reducing lift-induced drag. Because the yacht is heeled over when sailing upwind the leeward foil is closer to vertical and provides additional side force, reducing the leeway angle, hence making the boat sail upwind more efficiently.

Winged keels are generally found on high performance sailboats, if they are not prohibited by class rules. They are only of benefit for yachts sailing upwind where stability and the ability to produce side force are important and if the draft is limited by the class rule. Downwind the extra skin friction drag is a hindrance. Besides the performance benefits, winged keels can also be applied to pleasure boats as a way to reduce draft, allowing for greater versatility when gunkholing.

Winged keels may incorporate a significant amount of ballast where the wings join the keel. This feature makes these winged keels also another type of bulb keel.


Fins and foils – sails and wings
Animals
  • Bat wing
  • Bird wing
  • Caudal fin
  • Dorsal fin
  • Fish fin
  • Flipper
  • Insect wing
  • Bird keel
  • Pectoral fins
Aircraft
  • Airfoil
  • Chord
  • Leading edge
  • Trailing edge
  • Propeller
  • Control
    • aileron
    • dive brake
    • flaperon
    • elevator
    • flap
    • spoileron
    • stabilator
    • stabilizer
    • trim tab
    • warping
  • Wing
    • blended
    • canard
    • circulation control
    • flying
    • tip
    • tip device
  • Fixed-wing
    • configuration
    • planform
    • delta
    • forward-swept
    • swept
    • tandem
  • Variable wing
    • camber
    • incidence
    • oblique
    • sweep
  • Tail assembly
    • cruciform
    • twin
    • twin boom
    • tailplane
    • T-tail
    • V-tail
Boats
  • Propeller
  • Rudder
  • Stabilizer
  • Hydrofoil
  • Keel
    • bulb
    • canting
    • twin
    • winged
  • Centreboard
    • bilgeboard
    • daggerboard
    • leeboard
  • Sail
    • gaff rig
    • genoa
    • head
    • jib
    • lateen
    • main
    • royal
    • sail parts
    • sail plan
    • sail twist
    • spinnaker
    • square rig
  • Submarine sail
    • diving plane
Other
  • Annular fin
  • Arrow fletch
  • Boomerang
  • Car tail fin
    • downforce
    • roof flap
    • spoiler
    • wing
  • Heat transfer fin
  • Flying disc
  • Foil board
  • Foil kite
  • Glider
  • Hang glider
  • Grid fin
  • Parafoil
  • Rocket fin
  • Solar sail
  • Surfboard fin
  • Swim fin
  • Water rocket fin
  • Turbine blade
    • water
    • wind
  • Wing suit
Physics
  • Aerodynamics
  • Aeroelasticity
  • Coandă effect
  • Flight dynamics
  • Forces on sails
  • Lift
  • Lift-induced drag
  • Magnus effect
  • Wingtip vortices
Related
  • Aircraft flight control system
  • Aquatic locomotion
  • Bat wing development
  • Origin of avian flight
  • Fish locomotion
  • Fin and flipper locomotion
  • Flight feather
  • Flying animal
  • Points of sail
  • Reefing
  • Rigging
  • Sailcloth
  • Samara
  • Tradeoffs for locomotion in air and water
  • Undulatory locomotion

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