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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. 12 …Fort Worth Star-Telegram, Photographs of Balloon Debris, July 9, 1947 17. Satement, Lt. Col. Sheridan…
  • p. 13 …Fort Worth Star-Telegram, Photographs of Balloon Debris, July 9, 1947 2. Organizational Chart, Watson Laboratories…
  • p. 30 …These locations include Fort Worth, Texas, the home of the Eighth Air Force Headquarters; possibly Sandia…
  • p. 34 …DC; Federal Records Center, Ft Worth, TX; the INSCOM Archives, Fort Meade, MD; National Air and…
  • p. 38 …in the famous photos (Atch 16) in Fort Worth was that of a radar target normally…
  • p. 39 …were told was a flying saucer to Fort Worth. The people on board included ... and Maj…
  • p. 40 …Newton was a weather officer assigned to Fort Worth, who was on duty when the Roswell…
  • p. 45 …photographs taken at the time by the Fort Worth Star-Telegram, that depicted Ramey and Marcel…
  • p. 46 …the wreckage prior to its getting to Fort Worth. This organization reported on July 20, 1994…
  • p. 51 …After the autopsies, conspiracy theorists said the bodies were flown to Fort Worth and then to…
  • p. 75 …Some of the debris was flown to Fort Worth, ..as where the Commander of the Eighth…
  • p. 101 …Center (WNRq or the Southwest Regional Depository (Fort Worth, Texas). Recommendations Because the records management policy…
  • p. 151 16 Fort Worth Star-Telegram Photographs of Balloon Debris July 9, 1947
  • p. 159 …taken to Eighth AU- Force Headquarters in Fort Worth where it was subsequently identified as a…
  • p. 167 …Marcel took it to Fort Worth. Yeah that's the ... RW: ·Yeah. That doesn't look…
  • p. 168 …into Wright-Pat and Kirtland, or to Fort Worth. Back and forth, loaded up, with very…
  • p. 174 …Then it said: "After Marcel had gone to Fort Worth and came back Marcel challenged the…
  • p. 176 …O.K."Marcel would take some ofthe sample to Fort Worth to show Ramey. In the…
  • p. 179 normal course of his duty was sent to Washington not 8th Air Force in Fort Worth…
  • p. 254 …But the Roswell morning paper clearly showed that there was a knowledgeable person in Fort Worth…
  • p. 266 …Headquarters by a news photographer of the Fort Worth Star Telegram. It's four pictures that…
  • p. 309 …I was the only weather forecaster on duty in the Fort Worth base weather and flight…
  • p. 318 …flown to Eighth Air Force Headquarters at Fort Worth AAF, TX, for his personal inspection. Upon…
  • p. 326 …Before the announcement was made, the "disc" was flown to Fort Worth AAF, at the direction…
  • p. 327 …giant thermos jug" was allegedly transported from Fort Worth AAF to Wright Field. 38 This description…
  • p. 329 designs on it."41 Furthermore, the Fort Worth Army Airfield Weather Officer, Irving Newton, who was…
  • p. 333 Fort Worth Star-Telegram Photographs of Balloon Debris July 9, 1947 1
  • p. 640 …Similarly, the Fort Worth Sub-Committee established a procedure for flights made within the Fort V1orth…
  • p. 707 …Air Coordinating Committee, Fort Worth Regional Airspace Subcommittee. Subject: Obstructions to ·air navigation ••••.•••••••••••••••••••••••••• 43 Memorandum from…
  • p. 713 …Secretary a SUBJECT AIR COORDINATING COMMITTEE FORT WORTH REGIONAL AIRSPACE SUBCOMMITTEE P. O. BOX 1689 FORT…
  • p. 715 …BOX 1689 FORT WORm 1_ mxAS September 2, 1947 C1-tairman, Ft. Worth Regional Airspace Subcommittee…
  • p. 812 …Arrived in Fort Worth about 9 EDST. Off again to Big Springs, Texas, where forced to…
132
BALLAST INI.IT TUBE
FIG. 2.. \utomatic ballast valve.
a diaphragm-operated needle valve which jettisons
liquid ballast whenever the balloon is below the alti-
tude at which the control is actuated. This is shown in
fig. 2. The ballast reservoir (fig. 3), in general, can
hold 15 kilograms of the liquid ballast-usually com-
pass fluid, a highly refined kerosene-type petroleum
product. When the atmospheric pressure outside the
diaphragm is 5 millibars above the internal pressure,
160 grams of ballast per minute flow under a one-foot
head. When the automatic ballast valve is wide open,
which is after 6.5 millibars increase over the internal
pressure, 300 grams per minute flow. These values may
be compared with a diffusion loss of lift of the order
of magnitude of 10 grams per hour from the thicker
15-ft balloon described below. Quite positive altitude
control can be obtained.
Efforts are made to cause the static rate of leakage,
i.e., the leakage which proceeds when the automatic
ballast valve is closed, to exceed slightly the rate of
loss of lift due to the diffusion of the lifting gas from
the balloon. To facilitate setting the fixed leak, a
manually operated ballast valve, consisting of a leak
adjustable by means of a fine needle valve, is added to
the ballast-release assembly. 4
C. lJ;finimum pressure switch.-0bvious1y, the auto-
matic ballast valve must not be in operation while the
balloon is rising, as this would be a waste of ballast.
Therefore the automatically operated needle valve is
closed until the balloon reaches altitude. This is ac-
complished by having the loaded diaphragm of the
altitude control open to the atmosphere until the
balloon descends from a minimum pressure ..-\t this
time, an electrical contact is made and a squib6 cuts a
' Since this manuscript was written, the procedure has been
simplified. Only a simple fixed leak is used for daytime flights.
The automati~ ballast valve is used alone for Rights through
sunset or sunnse.
1 A small electrically detonated charge.
VoLUME 5
restraining cord and allows a needle valve to seal off
the diaphragm from any further access to the air
(fig. 2). The capsule then contains a volume of air
which has been trapped at the existing pressure an'd
temperature, at the time of operation of the sealing
switch. Thereafter the aneroid will withdraw the
ballast-control needle valve when the ambient pressure
increases to the point where the entrapped air is com-
pressed below this volume.
Fig. 4 shows the minimum pressure switch which
makes the electrical contact at the time of seal-off. It
consists of a trapped volume of air that is allowed to
escape through a mercury pool as long as the outside
pressure is decreasing. As soon as the exterior pressure
increases once more, however, mercury is drawn into
the tube, making the seal-off contact between two
electrodes.
4. Height determination
Up to the present time, the standard radiosonde has
been used in order to determine the altitude at which
the balloon is flying. This permits a regular radiosonde
ascent to be obtained during the period that the bal-
loon is rising. Thereafter, as the balloon remains at
approximately the same altitude, it becomes somewhat
difficult to identify the radiosonde contact, but utiliz-
ing both the temperature and pressure indication, this
is possible. A special radiosonde modulator of the
Olland type has been designed (fig. 5). The pressure
BATTERY BOX
VENT TUBE
DISCHARGE TUBE
FIG. 3. Ballast-release assembly.

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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.