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The Roswell Report: Fact vs. Fiction in the New Mexico Desert

USAF / The Black Vault · 1995 · 882 pages · text by OCR

The Roswell Report: Fact versus Fiction in the New Mexico Desert was published by Headquarters United States Air Force in 1995. The Black Vault distributes this copy. It reproduces the report by Col. Richard L. Weaver and the synopsis by 1st Lt. James McAndrew, both written after a General Accounting Office inquiry requested by Representative Steven Schiff. The Air Force search found no evidence of an extraterrestrial craft or crew. It concluded that the Roswell debris most likely came from NYU Flight No. 4, a Project MOGUL balloon train.

  • p. 3 # THE ROSWELL REPORT # Fact versus Fiction in the New Mexico Desert Headquarters United States Air Force…
  • p. 8 Clinical Investigations and Life Sciences Division, Headquarters Air Force Medical Operating Agency, Bolling AFB, DC; John…
  • p. 25 …the disc had been "flown to higher headquarters." That same story also reported that a Roswell…
  • p. 27 …These locations include Fort Worth, Texas, the home of the Eighth Air Force Headquarters; possibly Sandia…
  • p. 61 # DEPARTMENT OF THE AIR FORCE HEADQUARTERS UNITED STATES AIR FORCE MEMORANDUM FOR SAF/AA FROM: AF…
  • p. 65 …DuBose says officials at the Headquarters of the Eighth Air Force were directed to tell the…
  • p. 70 # DEPARTMENT OF THE AIR FORCE HEADQUARTERS UNITED STATES AIR FORCE WASHINGTON DC MEMORANDUM FOR SAF/AAZ…
  • p. 86 HEADQUARTERS 509TH BOMB GP (VH) ROSSELL AFFY AIR FIELD ROSSELL, NEW MEXICO GENERAL ORDERS) NUMBER 9…
  • p. 87 …Arner per Paragraph 3, Special Order, #139, Headquarters, Roswell Army Air Field, dated 18 July 1947…
  • p. 89 …Arner per paragraph 3, SO #139, Headquarters, this station, dated 18 July 1947. 1st Lt. Lewis…
  • p. 90 …Colonel Loberg, Headquarters, Eighth Air Force, arrived this date to coordinate with S-3 and check…
  • p. 91 …Boatright, Headquarters, Eighth Air Force, arrived to coordinate with Statistical Control on cost analysis. 16 July…
  • p. 110 # HEADQUARTERS, ARMY AIR FORCES WASHINGTON SUBJECT: Issuance of Orders ## TO: NND760168 Commanding General Air Material Command…
  • p. 119 …where we haven't squadron or group headquarters should take their people away. 1:55 P…
  • p. 131 …I did not make a report of this incident to my headquarters since I felt that…
  • p. 136 …700 CIC was the CIC Headquarters.
  • p. 137 …700 CIC was the Headquarters? SC: Yes, I don't think I even made a report…
  • p. 138 …I think this was taken at the Headquarters at Carswell. RW: Yeah, that's right. That…
  • p. 139 …I took it to 8th Air Force Headquarters, General Ramey was excited; they were going to…
  • p. 148 …I don't even want 700 CIC Headquarters to know we wasted our time on it…
  • p. 149 …And if anybody from headquarters CIC came in I'm positive they would have checked in…
  • p. 192 …I was assigned, believe it or not, to Headquarters, Air Force... I still have the Headquarters…
  • p. 230 …on the basis of orders out of Headquarters Army Air Force. Q: While you were operating…
  • p. 231 …These are the pictures taken in General Ramey's office, 8th Air Force Headquarters by a…
  • p. 246 …Then after I left the headquarters of ARDC in Baltimore, I spent four years at the…
  • p. 269 …debris be flown to Eighth Air Force Headquarters at Fort Worth AAF, TX, for his personal…
  • p. 278 …Andrews AAF was headquarters of the Army Air Forces Weather Service. It is also interesting to…
  • p. 306 …this local headquarters of the AMC under the Walton Laboratories group, who have headquarters at Red…
  • p. 325 HEADQUARTERS FITZWILLIAM FORWARD c/o Commander, Task Group 7.2 APO 187, c/o Postmaster San…
  • p. 327 …Reports of results were made to Headquarters FITZWILLIAM FORWARD and to AFMSW-1. Results of the…
  • p. 855 …Brady, all from Headquarters. Eighth Air Force, arrived here for a conference and inspecting and coordination…
  • p. 873 …Marcellus Duffy eliminated it and several others from the project when Headquarters U.S. Army Air…
FIG. 2. Automatic ballast valve.

a diaphragm-operated needle valve which jettisons liquid ballast whenever the balloon is below the altitude 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 compass 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. Minimum pressure switch. Obviously, the automatic 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 accomplished by having the loaded diaphragm of the altitude control open to the atmosphere until the balloon descends from a minimum pressure. At this time, an electrical contact is made and a squib $ ^{5} $ cuts a

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 and 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 compressed 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 balloon is rising. Thereafter, as the balloon remains at approximately the same altitude, it becomes somewhat difficult to identify the radiosonde contact, but utilizing both the temperature and pressure indication, this is possible. A special radiosonde modulator of the Olland type has been designed (fig. 5). The pressure

FIG. 3. Ballast-release assembly.

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Report, cited by the archive. The PDF is mirrored here; the original link is under it. The text was read from the page images by an OCR model; expect the odd misread word. 882 pages are in the text index: search them above, or from the library's search.