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Reverie Universal Fit Motorsport Dual Element 300mm + 150mm Chord Rear Wing Data

Designed for ReVerie by aerodynamics writer and designer Simon McBeath (author of Competition Car Aerodynamics) using Flowizard CFD software. Data and images generated by the CFD software are displayed below. The wing profile was designed to give a range of downforce levels from moderate to reasonably high, depending on the deployed angle of attack and chosen span, with very good efficiency in terms of downforce to drag ratio.

ORDERING INFORMATION

The wings feature internal longitudinal stringers and end spars with 2x M6 threaded inserts for mounting between supports or for affixing end plates. The wing comes supplied with support tabs, rivets and adhesive for post or pillar mounting. Alternatively the end plates can be removed & the wing mounted between wing uprights.

Also specify any special end-mount fixing details when ordering.

You may also like to order the optional 5mm or 10mm high gurney flaps. These can improve the lift / drag performance and reduce the onset of stall at higher angles of attack. These can be bonded on with adhesive or in some cases a high strength double-sided tape with suitable surface preparation. These can be purchased at a later date if required. Replacement end plates are also available separately.

RESULTS

Forces on Wing at Different Angles & Spans
Single Element
Calculated forces at different spans and angles, taking into account efficiencies at different spans
Air speed 44.7m/s (100mph) freestream

  1000mm Wingspan 1245mm Wingspan
AoA Downforce (N) Drag (N) L/D BHP Absorbed Downforce (N) Drag (N) L/D BHP Absorbed
9.5 831 145 5.7 8.7 1034 181 5.7 10.8
13.5 908 179 5.1 10.7 1130 222 5.1 13.3
17.5 1019 223 4.6 13.3 1269 277 4.6 16.5
21.5 1139 273 4.2 16.3 1418 340 4.2 20.3
  1400mm Wingspan 1700mm Wingspan
AoA Downforce (N) Drag (N) L/D BHP Absorbed Downforce (N) Drag (N) L/D BHP Absorbed
9.5 1163 203 5.9 12.1 1412 247 5.7 14.7
13.5 1271 250 5.1 14.9 1543 304 5.1 18.1
17.5 1427 312 4.6 18.6 1733 379 4.6 22.6
21.5 1594 382 4.2 22.8 1936 464 4.2 27.7
Dual Element Technical
Technical 1