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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. 15 …Gen Roger M. Ramey Col William H. Blanchard Maj Gen Clements McMullen Brig Gen Donald N…
  • p. 33 …Additionally, this history showed that the 509th Commander, Colonel Blanchard, went on leave on July 8…
  • p. 34 the supposed first ever recovery of extraterrestrial materials. (Detractors claim Blanchard did this as a ploy…
  • p. 43 …Additionally, it seems that there was overreaction by Colonel Blanchard and Major Marcel in originally reporting…
  • p. 65 …William Blanchard, the Public Information Officer, Walter G. Haut, issued a news release that the Amry…
  • p. 87 …on 8 July 1947. Colonel W. H. Blanchard, Commanding Officer went on leave. Lt Colonel Charles…
  • p. 88 …Colonel Oliver LaFarge, Air Reserve Corps, at Santa Fe, made arrangements for Colonel Blanchard to visit…
  • p. 89 …Colonel Blanchard spoke on the future of the Air Force, and the talk was very well…
  • p. 135 …Colonel Blanchard. RW: Oh yeah. Excuse me, Colonel Blanchard. SC: He was the Wing Commander of…
  • p. 138 …The first picture is actually with Jesse Marcel and that's General Blanchard and... SC: I…
  • p. 143 …Colonel William Blanchard and the other officer suggested that Marcel and CIC agent accompanied Brazel to…
  • p. 145 …O.K. "Blanchard, who was still at the base...ordered Marcel to accompany the rancher back…
  • p. 147 …Albuquerque rather than Fort Worth and although Blanchard outranked the CIC agent (meaning yourself) a phone…
  • p. 154 …time and we don't know if Blanchard knew about that or not: (we don't…
  • p. 155 …crash at the request of Marcel; maybe Blanchard, and I probably took Rickett with me. We…
  • p. 160 …The things that Ramey and Blanchard used to! Blanchard came over to the Philippines. I think…
  • p. 219 …What about then Colonel Blanchard and General Ramey? Do you think they may have had any…
  • p. 855 ## CHAPTER XIII # VISITORS and EXECUTIVE CALENDAR 3 September 1947 - Colonel Blanchard and Lt. Haut went to…
  • p. 864 …Roger M. Ramey and Col. William H. Blanchard. Brig. Gen. Roger M. Ramey was the Commanding…
  • p. 865 …As commander of Roswell Army Airfield and the 509th Bomb Group, Blanchard is alleged to have…
weight of equipment and balloon, the distribution of density in the atmosphere and the buoyancy of the lifting gas. Assuming that the lifting gas is helium, Graph 3 in Appendix II summarizes the relationship between gross load and floating level for balloons of several diameters. To use this graph to find the floating level of a balloon of given size and load, enter with the required buoyancy (equal to the gross load). Go vertically to the diagonal line corresponding to the balloon size and then horizontally to the extreme left-hand edge and read the altitude. The volume of the balloon is related to density by the use of the molar volume in this chart. Assuming observed pressure and temperature distributions over selected stations and the N. A. C. A. standard atmosphere, the molar volume is given as well as the altitudes. Table 1 of Appendix II gives the N. A. C. A. Standard Atmosphere relating pressure with altitude, and Table 2 gives the variation of temperature with altitude. For local conditions more exact measurements may be made using the temperature and pressure distribution indicated by a sounding rather than the standard. To do this, it is necessary to compute the molar volume from this relationship

$$
\mathrm {m o l a r v o l u m e} _ {z} = 3 5 9 \mathrm {f t}. ^ {3} \mathrm {x} \frac {\mathrm {T} _ {z}}{2 7 3 ^ {\circ} \mathrm {C}} \mathrm {x} \frac {1 0 1 3 . 3 \mathrm {m b}}{P _ {z}}
$$

Example: Find the molar volume at 30,000 feet MSL where the reported temperature is $ - 3 0^{\circ} \mathrm{C} $ , and the reported pressure is 300 mb.

$$
\mathrm {m o l a r v o l u m e} _ {3 0, 0 0 0} = 3 5 9 \mathrm {f t}. ^ {3} \times \frac {(2 7 3 - 3 0) ^ {\circ} \mathrm {C}}{2 7 3 ^ {\circ} \mathrm {C}} \times \frac {1 0 1 3 \mathrm {m b}} {3 0 0 \mathrm {m b}} = 1 0 8 0 \mathrm {f t}. ^ {3}
$$

This is the volume of a pound mol of any gas at those conditions.

By plotting several points of this curve of molar volume versus altitude, it is possible to locate very exactly the altitude which corresponds to the molar volume to which the balloon will go (found from Graph 3 or as follows). This density or molar volume to which a balloon will rise is given by the following formula:

$$
\text{Molar volume} = \frac{\text{Balloon volume}}{\text{Gross load}} \quad \text{Gas Lift/mol}
$$

$$
\mathrm {G a s l i f t / m o l} = 1 1. 1 \mathrm {k g / m o l} (\mathrm {u s i n g H e l i u m})
$$

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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.