Langley Memoir on Mechanical Flight, Parts I and II: Smithsonian Contributions to Knowledge, Volume 27 Number 3, Publication 1948, 1911Langley, S. P. (Samuel Pierpont)
History
Langley Memoir on Mechanical Flight, Parts I and II: Smithsonian Contributions to Knowledge, Volume 27 Number 3, Publication 1948, 1911
Langley, S. P. (Samuel Pierpont)
Aeronautics; Flight
Besides these “conventional” forms of wings, various other types
were tested on the whirling-table. The data of these tests are not
given, as in the rough preliminary tests the results were so entirely
negative in character that accurate quantitative tests were never
made. However, since in work of this kind the greatest delay is
experienced in learning what not to do, and in ridding one’s self of
freak notions which are continually suggesting themselves, it may
be well here to describe sufficiently at least one of these types
of wing to enable others to avoid any loss of time in experiments
with it. Since the principal disadvantages of a wing possessing
considerable width in the fore and aft direction are due to the great
extent through which the center of pressure [p194] shifts when the
velocity of advance or angle of incidence is changed, and to the
further fact that a wide surface does not support proportionately as
much per square foot as a long and narrow one, it was thought that
some advantage might be gained by making the covering of the wing
in the form of strips, the edges of which would be perpendicular
to the direction of motion, or by making this covering in more or
less slat-like form, which would permit the air which had already
been acted upon by the leading slat to slip through between the rear
edge of the first slat and the leading edge of the succeeding one.
In the tests on the whirling-table, however, it was found that this
type of construction not only did not possess any advantages, but
was even less effective than a similar one in which the covering was
continuous. The difference was probably due to the fact that the air
which passed between the slats reduced the suction on the upper side
of the following slat, and also to the fact that the distance between
the slats was not sufficient to gain the effect of having each slat
act on air which had not already been partially deflected by the
preceding one.
In view of the results of these tests on various types of wings,
it was decided that in constructing the first set of wings for the
large aerodrome it would be best to employ the “single-tier” type,
which had proved successful with the models, and that after getting
a successful flight with these the superposed wings would be tried
in order to get, if possible, the advantage which they possessed
of being structurally stronger and more compact. It was therefore
clear that any gain in the strength and rigidity of the first set
of wings, as a whole, would have to be obtained by improvements in
the construction of its integral parts, that is, in the main and
cross-ribs which made up its framework.
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