REFLECTOR:Lower Winglets

Al Gietzen reflector@tvbf.org
Mon, 26 Jan 2004 23:27:20 -0800


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About 7-8" was added to the top of N97XL's winglets

to compensate for the lost lower winglet area.

 

I guess I may as well add my 2-bits worth of theory on this issue as
well.  

 

>From an aerodynamics standpoint, I don't think adding height to the
tipsail bears much relation to removing the bottom extension (lower
winglet).  It may add a bit to the yaw stability because of the
additional inward force, and can add to rudder effectiveness if you also
lengthen the rudder.

 

Note that the tipsail (OK, winglet) is an airfoil with its top toward
the fuselage.  it does three things, provides a lateral force for yaw
stability, accelerates the air over the wing near the tip which enhances
lift out there a bit, and in the process 'pushes' air outward which is
counter to the normal vortex direction coming off the tip of the wing,
thereby conserving some energy lost is the vortex.  Ok, four things - it
also provides a place to put the rudder.

 

One notable feature of the Velocity lower winglet is the airfoil is
backwards; i.e., the airfoil should be the other way, the camber on the
outside (Check out Rutan's design, and you'll see that is the case).
Even as it is, the lower winglet can help stability by reducing the
'spill' off the tip enhancing the lift at the tip just a bit, and
further reducing the vortex.  With the camber on the outside it would do
more than just stop the spill, it 'pushes' the air inboard, more
effectively eliminating tip vortex, and maybe some other good things.

 

In either case it has little to do with spanwise flow; which there is
very little of under, or over the wing; except under separated flow.
Yes, as the air flows over the swept wing it does shift outward as it
separates for the wing to pass, but does not constitute spanwise 'flow',
and isn't really in issue at our speeds.  And in any case, the winglets
effect on airflow on the wing is quite local at the end of the wing.

 

In visualizing airflow on our airplanes, it can be helpful to change our
frame of reference from the plane to the air.  We are so used to
thinking in terms of the air flowing past the plane, and along with that
we visualize it having some inertia in that direction.  But the air is
standing still and along comes an airplane and pushes it around.
Basically, other than effects near the surface, the air will move away
from high pressure and go toward low pressure.  And it has some inertia
in those directions - high pressure at the leading edge of the wing it
moves away and up forming low pressure, then overcomes inertia and goes
back toward low pressure above the wing, but by then the wing has gone
by and the inertia carries down further than from where it started.  Net
effect, air has been pushed/pulled downward, the plane has been lifted
up.  Bernoulli's principal in a nutshell - well, OK there is other stuff
going on.

 

Pressure distribution for an eze attached.  Would be nice to have one of
these for the Velocity.

 

Al (up past my bedtime again!)


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<div class=3DSection1>

<p class=3DMsoPlainText><font size=3D2 face=3DNimrod><span =
style=3D'font-size:11.0pt'>About
7-8&quot; was added to the top of N97XL's winglets</span></font></p>

<p class=3DMsoPlainText><font size=3D2 face=3DNimrod><span =
style=3D'font-size:11.0pt'>to
compensate for the lost lower winglet area.</span></font></p>

<p class=3DMsoPlainText><font size=3D2 face=3DVerdana><span =
style=3D'font-size:11.0pt;
font-family:Verdana'>&nbsp;</span></font></p>

<p class=3DMsoPlainText><font size=3D2 face=3DVerdana><span =
style=3D'font-size:11.0pt;
font-family:Verdana'>I guess I may as well add my 2-bits worth of theory =
on
this issue as well. &nbsp;</span></font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>&nbsp;</span><=
/font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>From an =
aerodynamics
standpoint, I don&#8217;t think adding height to the tipsail bears much
relation to removing the bottom extension (lower winglet). &nbsp;It may =
add a
bit to the yaw stability because of the additional inward force, and can =
add to
rudder effectiveness if you also lengthen the rudder.</span></font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>&nbsp;</span><=
/font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>Note that the =
tipsail
(OK, winglet) is an airfoil with its top toward the fuselage.&nbsp; it =
does
three things, provides a lateral force for yaw stability, accelerates =
the air
over the wing near the tip which enhances lift out there a bit, and in =
the
process &#8216;pushes&#8217; air outward which is counter to the normal =
vortex
direction coming off the tip of the wing, thereby conserving some energy =
lost
is the vortex.&nbsp; Ok, four things &#8211; it also provides a place to =
put
the rudder.</span></font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>&nbsp;</span><=
/font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>One notable =
feature of
the Velocity lower winglet is the airfoil is backwards; i.e., the =
airfoil
should be the other way, the camber on the outside (Check out =
Rutan&#8217;s
design, and you&#8217;ll see that is the case). &nbsp;Even as it is, the =
lower
winglet can help stability by reducing the &#8216;spill&#8217; off the =
tip enhancing
the lift at the tip just a bit, and further reducing the vortex.&nbsp; =
With the
camber on the outside it would do more than just stop the spill, it =
&#8216;pushes&#8217;
the air inboard, more effectively eliminating tip vortex, and maybe some =
other
good things.</span></font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>&nbsp;</span><=
/font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>In either =
case it has
little to do with spanwise flow; which there is very little of under, or =
over
the wing; except under separated flow.&nbsp; Yes, as the air flows over =
the
swept wing it does shift outward as it separates for the wing to pass, =
but does
not constitute spanwise &#8216;flow&#8217;, and isn&#8217;t really in =
issue at
our speeds.&nbsp; And in any case, the winglets effect on airflow on the =
wing is
quite local at the end of the wing.</span></font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>&nbsp;</span><=
/font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>In =
visualizing airflow
on our airplanes, it can be helpful to change our frame of reference =
from the
plane to the air. &nbsp;We are so used to thinking in terms of the air =
flowing
past the plane, and along with that we visualize it having some inertia =
in that
direction. &nbsp;But the air is standing still and along comes an =
airplane and
pushes it around. &nbsp;Basically, other than effects near the surface, =
the air
will move away from high pressure and go toward low pressure. &nbsp;And =
it has
some inertia in those directions &#8211; high pressure at the leading =
edge of
the wing it moves away and up forming low pressure, then overcomes =
inertia and
goes back toward low pressure above the wing, but by then the wing has =
gone by and
the inertia carries down further than from where it started.&nbsp; Net =
effect, air
has been pushed/pulled downward, the plane has been lifted up.&nbsp; =
Bernoulli&#8217;s
principal in a nutshell &#8211; well, OK there is other stuff going =
on.</span></font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>&nbsp;</span><=
/font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>Pressure =
distribution
for an eze attached.&nbsp; Would be nice to have one of these for the =
Velocity.</span></font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>&nbsp;</span><=
/font></p>

<p class=3DMsoPlainText><font size=3D2 color=3Dblack =
face=3DVerdana><span
style=3D'font-size:11.0pt;font-family:Verdana;color:black'>Al (up past =
my bedtime
again!)</span></font></p>

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