Documents / Report
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.
“Gross”27 pages
- p. 118 …Robert Gross and Mr. Maher of Lockheed
11:55 A.M. Gen. Sam Anderson
12:00…
- p. 393 …in the form of an altitude vs. gross load chart with helium as the lifting gas…
- p. 394 …4}{\text {Gross Load}} = \frac {K}{W}
$$
In turn, $ \frac{K}{W}=a e^{-0. 4…
- p. 395 …free lift in pounds and G is gross lift in pounds.
Although this equation was derived…
- p. 400 …By equation (10), with a gross load of 52 kg., the unbalance caused by loss of…
- p. 412 …or a gross buoyancy of 450 lb., the maximum allowable inflation of a 30' diameter, .001…
- p. 479 …accelerating force equal to 5% of the gross load (52 kg) was acting to bring the…
- p. 552 …000 feet.
In one step, this becomes:
Gross Lift/Balloon = (Balloon Volume) x (Difference in molecular…
- p. 555 …of rise in feet per minute
G = gross lift in grams
For our purposes, we wish…
- p. 559 …G) ^ {\frac {2}{3}}
$$
(Approximate)
where G = gross load
A chart, Figure 24, has beendrawn up…
- p. 561 …where $ \triangle G= $ loss of lift
G = gross load (balloon weight plus equipment load)
$ \triangle T…
- p. 562 …not including balloon or its integral parts.
Gross load: Load on the gas at release (Balloon…
- p. 635 …Serial No. ___
description ___ ___
Line length ___
Banner description ___ ___
Ballast assembly - description ___ ___
Eallast. ___
Total Equipment Weight. ___
Gross Load ___
- p. 636 …Gross Load . . . ___
Assumed Gross Lift (Gross Load + 10%) G ___
G 2/3 ___
Free Lift - F = $ (\frac…
- p. 649 …theoretical altitude determined by the displacement and gross load.
## 7. Control systems
Two systems of control…
- p. 681 …By adjusting the gross load to be supported by the gas to equal the total lift…
- p. 691 …A chart showing the relation between altitude, gross lift, and balloon size has been found necessary…
- p. 775 …The gross load reported should be accurate to the nearest 200 grams. The amount of lifting…
- p. 777 500 gm DRAG CHUTES
300 " BANNER
2000 " PAYLOAD
4500 " BALLOON
7300 " GROSS LOAD
## NOTE:
Use low…
- p. 779 …bubble length and resultant inflated volume, using gross lift as an expression of volume. It will…
- p. 781 …in Appendix II summarizes the relationship between gross load and floating level for balloons of several…
- p. 817 …A can of sand is made to weigh the same amount as the required gross lift…
- p. 825 …the balloon with the equipment load attached.
Gross Lift: Lift of all of the gas in…
- p. 830 …Serial No. ___
description ___
Drag chute ___ ___
Banner description ___ ___
Ballast assembly - description ___ ___
Ballast ___
Total Equipment Weight . ___
Gross Load . . . . . . . . . . . . . . . . ___
- p. 831 …waiting___ grams
Actual balloon lift . . . . . . . . . . . ___ "
AActual gross lift (Balloon lift & balloon wt.) . . . . . ___ "
Number Helium tanks required…
- p. 835 …Gross Lift vs. Bubble Length . . . . . . . 107
Graph 3: Buoyancy vs. Altitude . . . . . . . . . . 108
Graph 4: Gross Load…
- p. 847 …Estimated Gross Load Limit kg. Altitude Range ft.
7 200 0.6 1.5 to 5…
pending upon the speed of rotation of the modulator motor. The pressure signal appears at any point along the record between or overlapping the references depending upon the pressure. A sample record of this sort is shown in Figure 32.
The Olland cycle acts as a switching unit for the test oscillator (see Figure 33) whose signal is fed into the Brush amplifier and finally to the recorder. By adjusting the resistors in the test circuit, the frequency of oscillation may be adjusted. Since within the usual range, the frequency of oscillation is approximately additive when the two signals overlap, the suggested frequencies are about 4 cycles per second for pressure and 8 cycles per second for reference. When overlapping signals are being recorded the frequency will be about 12 cycles per second which is easily recognizable on the record.
The calibration of the modulator unit should be in steps of 25 to 30 millibars in order to have at least three points within each turn of the helix.
Evaluation of the record is accomplished with the aid of a nomogram divided into 100 equal parts. The record is laid on the nomogram with the leading edge of the first reference on the zero line and the leading edge of the second reference on the 100th line. The position of the leading edge of the pressure signal is then read to the nearest third of a division on the nomogram. If one complete turn of the spiral represents 75 millibars, it is thus possible to read the pressure to an accuracy of one-three-hundreth of 75 or about one-quarter millibar.
In evaluating the record the tape should be kept parallel to the horizontal lines on the nomogram or perpendicular to the zero line in order to avoid errors in interpretation.
The total motion of the pen arm of the modulator is normally 12 to 14 turns of the spiral. Therefore, there will be the same number of points at which the pressure and reference signals overlap. The calibration curve (Figure 34) is drawn to show pressure from zero to surface pressure (about
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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.