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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…
Temperature effects were discussed previously in this report. Those discussions on superheat and adiabatic temperature change will apply to the general equation. In general, temperature of the free air and lifting gas can be measured to a fair degree of accuracy.

Balloon volume at any time is a function of original full balloon volume plus the summation of all the changes in volume due to pressure and temperature changes and loss of lifting gas. It will also be affected by loss or gain of air by the balloon through diffusion and intake of air through the appendix. The nonextensible balloon will have a maximum volume and thus any changes tending to increase the gas volume to a value greater than the balloon volume will result in a valving of the excess lifting gas into the air, or (in the case of a balloon which will carry internal pressure) a pressure increase of the lifting gas.

It is for this reason that a non-extensible balloon is said to be in a state of stable equilibrium in a direction of greater altitude when it is full. However, in a direction of lesser altitude, and with the case of a partially full floating balloon, the system is in a state of neutral equilibrium.

Composition of the lifting gas will change due to contamination of the lifting gas by the entry of air into the balloon, either by the flow of air through the appendix opening or by diffusion of air into the balloon. We may then modify our term for density of the lifting gas to include a term for the pure gas and a term for the contaminating air. Using the method of partial volumes, we may equate the density of the lifting gas at any time by:

where:

$$
\rho_ {g} = \frac {P _ {g}}{V _ {b} T _ {g}} \left(\frac {V _ {p}}{R _ {p}} + \frac {V _ {a}}{R _ {a}}\right)
$$

$ P_{g} $ pressure of the lifting gas

$ V_{b} $ = total lifting gas volume

$ V_{\mathbf{p}} $ volume of pure lifting gas in balloon

$ V_{\sigma} $ volume of air in balloon

$ R_{g}= $ specific gas constant of pure lifting gas

$ R_{a} $ specific gas constant of air

Then, calling $ \frac{V_{p}}{V_{b}}=x_{p} $ and $ \frac{V_{a}}{V_{b}}=x_{a} $ (here we see that since

$ V_{p}+V_{a}=V_{b}, $ $ x_{p}+x_{a}=1 $ we may equate:

$$
P _ {g} = \frac {P _ {g}}{T g} \left(\frac {x _ {p}}{R _ {p}} + \frac {x _ {a}}{R _ {a}}\right)
$$

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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.