Air pressure
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Discussion

silverfoxcc

Original Poster:

8,371 posts

174 months

Monday 26th May 2014
quotequote all
On a normal aircraft wing, what is the difference in pressure between the airflow underneath to that flowing over the top?
E.g. if normal atmospheric pressure is 14.7psi 'pushing up', what is pushing down?

Although real high tech answers would be helpful

Depends on altitude,speed,design of wing etc, it needs to be put ins way a seven yr old would understand,( he is at the why stage now) and whilst I have got him just about grasping steam loco boiler pressure, this one was thrown at me.

Thanks

Eric Mc

125,606 posts

294 months

Monday 26th May 2014
quotequote all
I don't have actual numbers but the pressure difference is dependent on a number of factors -

airspeed
shape of wing
size of wing
efficiency of wing

Look at the difference between the wing of a Lockheed F-104 Starfighter and that of a competition sailplane.

MartG

22,755 posts

233 months

Monday 26th May 2014
quotequote all
Take the weight of the aircraft and divide by the area of the wing - should get you fairly close wink

anonymous-user

83 months

Monday 26th May 2014
quotequote all
MartG said:
Take the weight of the aircraft and divide by the area of the wing - should get you fairly close wink
At a basic level yes, but modern aircraft use supercritical wing profiles that gain a larger percentage of their lift from a change in momentum of the air, as opposed to pure pressure lift (they effectively divert a large volume of air downwards, resulting in a lift force (and a more rewards CoP)
Added to which, you need to include the lift generated by the bodyform and the horizontal stabiliser surfaces too!

Also, whilst lift = weight in a static condition, planes are not static devices..... ;-)

AER

1,145 posts

299 months

Tuesday 27th May 2014
quotequote all
The only way the aircraft can change the momentum of the air is by applying pressure to it though, Max.

Mass * acceleration / wing area is a good estimate of the net differential pressure between the upper and lower surfaces. In reality the pressure distribution is not uniform by any stretch.

anonymous-user

83 months

Tuesday 27th May 2014
quotequote all
AER said:
The only way the aircraft can change the momentum of the air is by applying pressure to it though, Max.

Mass * acceleration / wing area is a good estimate of the net differential pressure between the upper and lower surfaces. In reality the pressure distribution is not uniform by any stretch.
Indeed. The point i was trying to get to, and somewhat poorly ;-) was exactly your point about non uniform distribution. The classic text books basically say, assume the upper surface of the wing has pressure x, and the lower surface pressure y, where x<y. In reality, that's a long way from the true "average" pressure distribution probably

CanAm

13,885 posts

301 months

Tuesday 27th May 2014
quotequote all
A useful statistic that I heard that may be of use to a seven year old, is that it is the equivalent to a a baby sucking on a straw.

Simpo Two

92,672 posts

294 months

Tuesday 27th May 2014
quotequote all
CanAm said:
A useful statistic that I heard that may be of use to a seven year old, is that it is the equivalent to a a baby sucking on a straw.
Those 747s must be lighter than they look!

AER

1,145 posts

299 months

Wednesday 28th May 2014
quotequote all
Max_Torque said:
The classic text books basically say, assume the upper surface of the wing has pressure x, and the lower surface pressure y, where x<y.
Classic text books ignore the differential pressure entirely and rely on dynamic pressure and a fiddle-factor called lift coefficient, C_L

anonymous-user

83 months

Wednesday 28th May 2014
quotequote all
AER said:
Max_Torque said:
The classic text books basically say, assume the upper surface of the wing has pressure x, and the lower surface pressure y, where x<y.
Classic text books ignore the differential pressure entirely and rely on dynamic pressure and a fiddle-factor called lift coefficient, C_L
That makes it even more impressive that they designed planes like this:




with slide rules and basic maths (and fiddle factors!) ;-)

chuntington101

5,733 posts

265 months

Wednesday 28th May 2014
quotequote all
Max_Torque said:
That makes it even more impressive that they designed planes like this:




with slide rules and basic maths (and fiddle factors!) ;-)
But it leaked! lol