Discussion
There was article from New Scientist talks about using plasma strips on planes and cars to replace flaps and rudders.
If they were put on an F1 car you could have a wing which was naturally stalled and unstall it by activating the plasma to attach the lamina flow.
Would this be legal under F1 rules?
It should be. It would look very cool at Singapore.
Simon
If they were put on an F1 car you could have a wing which was naturally stalled and unstall it by activating the plasma to attach the lamina flow.
Would this be legal under F1 rules?
It should be. It would look very cool at Singapore.
Simon
here is a link, you may need a subscription to view it.
http://www.newscientist.com/article/mg21729071.900
http://www.newscientist.com/article/mg21729071.900
cool.
http://etd.nd.edu/ETD-db/theses/available/etd-0417...
interesting stuff, by turning on the actuator you can reattach flow to a stalled wing, and that thesis says:
"It resulted in a L
improvement of as much as 340%."
which is pretty amazing.
of course it's not a movable aerodynamic device, but then neither was a mass damper...
http://etd.nd.edu/ETD-db/theses/available/etd-0417...
interesting stuff, by turning on the actuator you can reattach flow to a stalled wing, and that thesis says:
"It resulted in a L
improvement of as much as 340%." which is pretty amazing.
of course it's not a movable aerodynamic device, but then neither was a mass damper...
RealSquirrels said:
cool.
http://etd.nd.edu/ETD-db/theses/available/etd-0417...
I want this chap to come and play with my race car!!!!!!..
http://etd.nd.edu/ETD-db/theses/available/etd-0417...
I want this chap to come and play with my race car!!!!!!..
aycee said:
Not only do the plasma actuators act like regular flaps/slats, butEliminating the hinge gaps will have a direct effect on the form drag component of the viscous drag on the wing. By present estimates used in the wing and tail design, this
would result in a 10% drag decrease[16]. T
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