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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…
$$
\mathrm {(1)} \quad \mathrm {M V} = \frac {\mathrm {B a l l o o n V o l u m e x G a s L i f t}}{\mathrm {G r o s s L o a d}}
$$

[It may be noted from this equation that a balloon can float at molar volumes less than that computed for maximum balloon volume (i.e., when it is not full). However, under these conditions the balloon would be in neutral equilibrium, since any vertical force would cause it to rise or fall until a force in the opposite direction stopped it. This is also the case with floating extensible balloons.]

To convert from molar volume to equivalent altitude we must know the pressure-temperature distribution of the atmosphere in which the balloon will float. Since it is difficult to obtain an accurate distribution for each flight, the atmospheric model as drawn up by NACA standards has been used. In general the error obtained in using the NACA standard is not great, but if greater refinement is desired, data obtained from averaged radiosonde observations over a given launching site can be used.

From such knowledge of the distribution of pressure and temperature, we may plot a curve of molar volume vs. altitude by use of the following equation:

$$
M V _ {z} = 3 5 9 \frac {f t ^ {3}}{l b m o l} \times \frac {T _ {z}}{2 7 3 ^ {\circ} K} \times \frac {1 0 1 3 . 3 m b}{p _ {z}} \frac {f t ^ {3}}{l b m o l}
$$

By use of such a plot we easily find the floating altitude of a full non-extensible balloon by use of equation (1) to find molar volume, and then of the plot of equation (2) to find altitude.

The two equations have been combined and graphed in the form of an altitude vs. gross load chart with helium as the lifting gas for various balloon sizes and various release sites in the "Operations" section of this technical report (Part II, page 108).

For the NACA standard atmosphere we may derive an equation for altitude sensitivity by use of the molar volume-altitude relationship. This is most easily done by plotting molar volume vs. altitude on semi-logarithmic paper, since the curve of molar volume vs. altitude from 40,000 to 105,000 feet (where a constant lapse rate of zero is assumed) is approximately a straight line on semi-log paper. The general form of the equation for this portion of the atmosphere is $ y=a e^{b z} $ where y is the molar volume and z the altitude.

It is possible to determine empirically the constants a and b. For example, using the molar volume at 50,000 feet, we find from

*359 ft $ ^{3} $ = Molar volume of air at standard conditions ( $ 2 7 3^{\circ} \mathrm{K} $ , 1 atm. pressure)

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