Documents / FOIA release

roswell

Office of the Secretary of Defense · 993 pages · text from the file's own layer

The Roswell Report: Fact versus Fiction in the New Mexico Desert was published in 1995 by Headquarters United States Air Force. It was written in response to Representative Steven H. Schiff's request and a General Accounting Office audit, and it contains Col. Richard L. Weaver's report and 1st Lt. James McAndrew's synopsis, along with attachments, appendices and photographs. The report says researchers found no evidence of an extraterrestrial craft or crew. It concludes that the 1947 debris came from a Project MOGUL balloon train.

  • p. 43 …to the sun for only a few days. The plasticizers and antioxidants in the neoprene would…
  • p. 205 …ashes after exposure to the sun for only a few days. The balloon material and radar…
  • p. 221 …to the sun. Q: Is this the neoprene type or the ••• A: That's the neoprene…
  • p. 230 …such as the balloon material degraded, and maybe fused in the hot sun? 14 A: I…
  • p. 282 …We worked in the old Sun newspaper building in downtown Baltimore. Q: They had intelligence personnel…
  • p. 465 …the values of superheat ob- tained by the gas when the balloon is in the sun…
  • p. 484 …Superheat and Its Effects The effect of the heatin~ of lifting gas by the sun's…
  • p. 489 …Since the effect of the sun in heating the lifting gas decreases the effect of different…
  • p. 524 …when the ex- ternal temperature was measured, since no adequate protection from the sun was available…
  • p. 525 …Daytime flights had the added advantage or heating from the sun. The temperature of the lifting…
  • p. 541 …in the aneroid val~e as intermittent clouds shut off' the sun, and (3) the overcompensation…
  • p. 547 …stmset, and the balloon took on superheat whioh was lost_when the sun went down. ntis…
  • p. 558 …the transmitter was not insulated, and there was no heat to be gained .from the sun…
  • p. 570 …Since the sun had set between the third and -40-
  • p. 579 during the sunset descent (caused when the superheated helium lost the sun's heating ei'i…
  • p. 591 …that seen earlier with the balloon gas being warmed by the sun to acquire a superheat…
  • p. 666 …the changing buoyancy of the balloon as cloud masses intermittently shielded it from the sun's…
  • p. 736 …the subst;q.uent descent, superheating of the balloons by the nsmg sun would cause the…
  • p. 739 …Flight termination was usually due to deteriora- tion of the balloon caused by the sun. In…
  • p. 740 …the ambient tem- perature after the sun had risen. The automatic ballast valve operates. when the…
  • p. 801 …April 14 Sun. Down to lab this am with Joe looking for G9A files. Jim Peoples…
  • p. 802 …Discussed with Crane possibilities of getting sound through the ground part of the ocean sound channel…
  • p. 803 …Over to Jim and Rowes tonight and to Euzzards Bay bowling, l'ay 5 Sun. L…
  • p. 806 …Stayed at Amarillo - at Clinton Hotel Jan 19 Sun Left Amarillo about 1130 CST IC.ent…
  • p. 808 …Correlated between the ~ower and Dona sites for se·reral sources. 'o!orked total travel times…
  • p. 810 …April 6 Sun. Checked clocks. Cleaned out hanger and emptied trash out at East White Sands…
  • p. 811 …April 20 Sun. Worked on plans for bombing runs and V2 monitoring. April 21 Mon. Alamogordo…
  • p. 812 …All equipment loaded on plane this pm. ~ay J-4 Sat, Sun. Left Alamogordo about 9…
  • p. 815 …29 June (Sun) NYU personnel and some of Watson Lab men working today with equipment in…
  • p. 816 …July 1a Sun. to cabins in Ohio just out of Springfield. July 1 Mon. To cabins…
  • p. 852 …4C.~~~ies• .tJi~J.tl~e ..• a 'telemeteririg ·device to indicate· the rate of ballast flow…
  • p. 861 …a sun- set. (3) By adding altitude control equipment, it is possible to maintain the balloon…
AuGusT 1948 ATHELSTAN F. SPILHAUS, C. S. SCHNEIDER, AND C. B. MOORE 131
was controlled by a baroswitch arrangement which
dropped a bag by igniting a fuse when the altitude fell
below any one of four different levels between 25,000
and 5000 ft. In addition, a delay mechanism consisting
of a two-minute fuse was arranged between successive
switches so that after ballast was dropped, two minutes
would be allowed for the balloon to regain its altitude;
if it did not regain in this time another bag of ballast
would be dropped. The system was inefficient because
if any one of the thirty-six fuse arrangements failed,
no more ballast was dropped.
The second type of Japanese balloon was similar,
in general, but slightly larger; it was made of oiled
silk and therefore would stand a greater internal
pressure (approximately six inches of water). The
higher the internal pressure that the balloon can
stand, the less gas need be valved under conditions of
superheating or altitude fluctuations. The Japanese
released many balloons of these types from their
islands and estimated five to seven per cent of those
released reached the west coast of this country. The
balloons floated between the surface and 30,000 ft
above sea level; those which reached the west coast
must have remained aloft from four to ten days. While
the altitude maintained was not constant, these bal-
loons were highly successful for the time they remained
in the air.
An attempt in this country was made in 1943 by the
Dewey and Almy Company, to obtain constant-level
balloons which would float at altitudes up to 15.,000
ft. An ordinary 350-gram meteorological balloon was
used but its volume was controlled by a nonextensible
shroud around it. With this method a flight at about
5000 ft was obtained at fairly constant altitude for
about an hour and a half.
3. Design of controlled-altitude balloons
As a result of the Japanese and other expeiiments,
the use of a nonextensible envelope for the balloons
was indicated. If a perfectly nonextensible balloon
could be built with no diffusion through the walls, and
which could withstand a high internal pressure, it
would automatically stay at a constant density where
the buoyancy of the full balloon equaled the load. In
practice, control devices are needed to offset the leak-
age and diffusion of gas, to compensate for vertical
currents in the atmosphere, to correct for the motion
of the balloon due to diurnal changes of the balloon's
temperature, and to compensate for the valving of gas
which is necessary to prevent rupture of the envelope.
It was decided to use a plastic as the balloon fabric,
as some modern plastics are quite transparent to radia-
tion, strong, easily fabricated, and relatively inexpen-
sive as compared with coated fabrics.
A. Choice of plastics.-ln the selection of a plastic
material of which to make the balloons, the desirable
properties are: (a) low brittle temperature, (b) low
permeability, (c) high tensile strength, (d) high tear
resistance, (e) chemical stability, (f) high radiation
transmission or reflection. Polyethylene soon recom-
mended itself for use, with its brittle temperature of
below -80F. It is apparently unaffected by ultraviolet
and ozone. The permeability through one mil of thick-
ness and one square meter of area for 24 hours is ten
liters for hydrogen and seven liters for helium, at
normal atmospheric temperature and pressure.
FIG. I. Polyethylene balloon, 20-ft diameter.
Polyethylene is also relatively easy to fabricate. It
has an ultimate tensile strength of 1,900 pounds per
square inch at 2SC, which, in a 15-ft balloon made out
of four-mil fabric, represents a working pressure of
about 2.3 inches of water. The tensile strength at the
temperatures at which the balloon flies at high altitude
may be more than three times the value quoted above.
Fig. 1 shows a polyethylene balloon2 flown success-
fully in Flight 26 described below. Another film in-
vestigated is Saran, which has ten times the tensile
strength of polyethylene-three times the strength
across the seams. Saran has a higher transparency and
one-thirtieth the permeability of polyethylene. The
effective brittle temperature of Saran for this work is
not known reliably.
B. Ballast valve.-The altitude control is an auto-
matic ballast-dropping device3 consisting essentially of
2 Made by General Mills, Inc.
1 Made by Kollsman Instrument Division of Square D Com-
pany.

Cases discussed

About this file

FOIA release, from the osd collection. The PDF is mirrored here; the original link is under it. 993 pages are in the text index: search them above, or from the library's search.