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roswell

Office of the Secretary of Defense · 993 pages · text from the file's own layer

The Roswell Report: Fact versus Fiction in the New Mexico Desert was published in 1995 by Headquarters United States Air Force. It was written in response to Representative Steven H. Schiff's request and a General Accounting Office audit, and it contains Col. Richard L. Weaver's report and 1st Lt. James McAndrew's synopsis, along with attachments, appendices and photographs. The report says researchers found no evidence of an extraterrestrial craft or crew. It concludes that the 1947 debris came from a Project MOGUL balloon train.

  • p. 326 …The fact it descended there was not unusual. Over the course of Project MoGUL, several balloons…
  • p. 427 …This switch completes a circuit through a relay operated ballast valve whenever the balloon system descends…
  • p. 429 …Whenever the balloon system subsequently descends past control altitude~ ballast is made to flow, maintaining the…
  • p. 441 …When the system again descends to 2.5 11 ()(X), the pen arm comes into contact…
  • p. 445 …ft.) to float for another hour before descending. The advantages of this type .t'light for…
  • p. 468 …on ascent; as the balloon began to descend to a region ot higher pressure. a minimum…
  • p. 472 …oration of the electrolyte) and the balloon descends, simple displacement control becomes effect when the high…
  • p. 473 …Then, with both controls operating, bilast will flow only on the descending and floating portions of…
  • p. 479 …rapid descent after the balloon system has descended to some critical value, say 20,000 feet…
  • p. 480 …Through this rupture, the lifting gas can es- cape, and the balloon descends, using the upper…
  • p. 490 …If a system in equilibrium in the stratosphere were to lose lift and descend. the compression…
  • p. 538 …Released trom .Alamogordo, New Mexico, 0509 MST, July 2, 1947 Descended at Cloudcroft, Hew Mexico Using…
  • p. 548 …will not cause the bal- loon to descend as long as the remaining buoyancy is equal…
  • p. 549 …seen descending 18 hours after release. Figure 13 balloons probably several hours, as One balloon was…
  • p. 557 …The finder reported seeing the balloon descend 35 hours after release. Sinoe the ballast flowing to…
  • p. 558 …The .001" polyethylene balloon was observed descending 22 hours later a.f.ter traveling mo!"e…
  • p. 562 Fligllt 6~z Released from Alamogordo, New Mexico, 1116 MST, Kay 13, 1948 Descended at Alamogorde…
  • p. 570 …A ballast meter waa in use, and no ballast flow was recorded until the balloon descended…
  • p. 572 …S.T.) Figure 34 Since the balloon ttid not descend far enough below its maximum altitude…
  • p. 573 …N.M.- 0511 MST, 10 AUG 1948 DESCENDED AT ROSWELL,N.M.- 1630 MST, 10 AUG…
  • p. 576 …Figure 38 the balloon was slowly descending, the temperature of the gas increased with respect to…
  • p. 580 …Flight 90, since the balloon had already descended to the activation level of the auto- matic…
  • p. 583 …one hour of floating it began to descend at an accelerating rate. After falling about 2000…
  • p. 585 …In this system, ballast flow was excited at any altitude if the balloon descended at a…
  • p. 591 …Figure 51 the balloon continued to descend. In both cases the token ballast f'low on…
  • p. 632 …the train will descend. Although this method was used in early experimental flights it proved to…
  • p. 640 …Sealed in with the squib, which is fired electrically ~hen the cell descends below 20.000…
  • p. 665 …In flight 7, however, the cluster rose till the lifters were cut off, descended until sufficient…
  • p. 667 …14,000 feet from which it slowly descended. Since the blowout patch was set to act…
  • p. 668 …known to have lasted for ten hours, descending at Marietta, Oklahoma. Flight 22, included an earlier…
  • p. 669 …It was observed descending 50 miles north of Toronto, Ontario, Canada, 14 hours later. ihe average…
  • p. 670 …at 50,700 feet and began to descend immediately. Flight 38 (see figure 55) was observed…
  • p. 713 …the Universit,y that balloons have been descending outside of the area in the vicinity of…
  • p. 715 …When the balloon descends to 20-000 feet, it not in the clear, positions will be…
  • p. 725 …VIas it observed descending? If so. when? 4. Di_d it float dawn slowly or fall…
  • p. 736 …The only provision for having the system regain altitude if it descended too low was by…
  • p. 738 …open to the atmosphere until the balloon descends from a minimum pressure ..-\t this time, an…
  • p. 739 …ft where it leveled off, then slowly descended to 9000 ft due to diffusion losses. At…
  • p. 740 …For the ballast valve to function, the balloon had to descend to a pressure which would…
  • p. 741 …When the original 2700-gram ballast was expended, the balloon descended rapidly. Even had the auto…
  • p. 777 …e which drops ballast whenever the balloon descends below a preset altitude. The specifications for the…
  • p. 778 …Once the balloon sta.rtE descending (due to loss of hydrot;en by diffusion or by…
  • p. 784 …The remaining train thereupon descended as fast as it bad climbed (1,000 ft. per minute…
  • p. 870 …After reaching maximum altitude, the balloons all exhibit a tendency to float then descend at an…
  • p. 874 will cause the balloon to descend. Third, as a consequence of the previous limi te.tion…
  • p. 878 …WHEN THE BALLOON DESCeNDs THE PEN ARM RIDES DOWN ON CoMMUTATOR UNDER THE SHELF, CLOSING THE…
  • p. 892 …Was it observed descending? If so, at what timet 4. Did it float down slowly or…
  • p. 988 …Due to the prevailing westerlies, MOGUL balloons often descended in the vicinity of Roswell after launch…
AuGusT 1948 AT HE L STAN F. S PI L H AU S, C. S. SCHNEIDER, AND C. B. M 0 0 R E 135
s
so
FIG. 7. Height-time curve of balloon Flight 17. Released at
Alamogordo, New Mexico, on 9 September 1947 at 1647 MST
(105th meridian). Recovered near Pratt, Kansas, 530 miles
distant.
constant leakage held the balloon at 16,800 ± 700ft
for 7 hours. The duration of the flight was 9i hours.
When the original 2700-gram ballast was expended,
the balloon descended rapidly. Even had the auto-
matic ballast valve been functioning, the constancy of
altitude would have been the same. This seems to indi-
cate that only a minimum of automatic control is
needed, provided that diffusion losses are slightly
overcompensated by a constant ballast leak.
Other flights also indicate the importance of a check
valve in the balloon appendix to prevent dilution of
the lifting gas with air. If this is not done, the altitude
reached is far under the theoretical altitude deter-
mined by the displacement and gross load.
7. Control systems
Two systems of control are possible with the equip-
ment as described. The balloon is controlled between
an upper level (ceiling), where the full balloon buoy-
ancy just equals the load, and a lower level (floor),
below which the automatic ballast valve operates.
Schematic curves for these two systems of control are
shown in fig. 6.
In the first system of control the rate of static ballast
leakage is greater than the diffusion loss of lift, and
the balloon will stay at the ceiling. If it is displaced
above the ceiling the buoyancy is insufficient to bal-
ance the load and it will descend again. Provided the
rate of ballast discharge is greater than the rate of lift
by loss of gas this ceiling will slowly rise by valving of
gas, and as gas is lost by diffusion. The less the amount
of gas the lower the pressure (higher ceiling) must be
for the gas to fully distend the envelope. Unnecessary
valving is undesirable and may, in part, be minimized
by use of a restraining safety valve set in the appendix,
which will allow some slight pressure to be carried in
the balloon, preventing gas loss at the peaks of minor
oscillations but still valving gas before the balloon
ruptures due to too great an internal pressure.
In this system of control, the automatic valve is not
sealed off until the balloon starts a descent due to
cooling or other changes in lift, as when night falls.
Upon descent the valve is activated and starts drop-
ping ballast 'immediately; this continues until the
balloon is no longer losing lift at a rate greater than
the diffusion losses. The balloon will then rise above
its former ceiling to a height determined by the weight
of ballast dropped, and remain there as long as there
is ballast to compensate for lift losses. Flight 17, repro-
duced in fig. 7, used a low-leakage balloon and is an
actual case of ceiling control. It may be compared with
the idealized time-altitude curves in fig. 6.
In the second system of control the static rate of
leakage is less than the diffusion loss of lift. hi this
case the balloon will descend to the floor, where the
automatic control operates and the balloon floats at
an equilibrium altitude where the rate of ballast re-
lease exactly balances the rate of loss of lift. Floor
control conserves ballast, since only that needed for
altitude control is released. However, the altitude of
the floor varies diurnally as the temperature of the
entrapped air in the automatic ballast valve is affected
by solar radiation. Two methods are being investigated
to circumvent this undesirable feature. One is to
w
s
FIG. 8. Wind vectors at 16,000 feet for El Paso (EO), Albu-
querque (AB), and Roswell (THJ), at 03h, 09h and 15h (MST) on
7 July 1947, in connection with balloon Flight 11, mean motion
of which is shown by the balloon vector. Cross-hatched sector
contains all wind vectors at these three stations for the three
observation hours and for the three levels, 14,000, 16,000, and
18,000 feet.

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FOIA release, from the osd collection. The PDF is mirrored here; the original link is under it. 993 pages are in the text index: search them above, or from the library's search.