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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. 12 …Fort Worth Star-Telegram, Photographs of Balloon Debris, July 9, 1947 17. Statement, Lt. Col. Sheridan…
  • p. 13 …Fort Worth Star-Telegram, Photographs of Balloon Debris, July 9, 1947 2. Organizational Chart, Watson Laboratories…
  • p. 27 …These locations include Fort Worth, Texas, the home of the Eighth Air Force Headquarters; possibly Sandia…
  • p. 31 …DC; Federal Records Center, Ft Worth, TX; the INSCOM Archives, Fort Meade, MD; National Air and…
  • p. 35 …in the famous photos (Atch 16) in Fort Worth was that of a radar target normally…
  • p. 36 …were told was a flying saucer to Fort Worth. The people on board included...and Maj…
  • p. 37 …Newton was a weather officer assigned to Fort Worth, who was on duty when the Roswell…
  • p. 42 …photographs taken at the time by the Fort Worth Star-Telegram, that depicted Ramey and Marcel…
  • p. 43 …the wreckage prior to its getting to Fort Worth. This organization reported on July 20, 1994…
  • p. 47 …After the autopsies, conspiracy theorists said the bodies were flown to Fort Worth and then to…
  • p. 65 …to Fort Worth. "Flying disc." Some of the debris was flown to Fort Worth. as where…
  • p. 84 …Center (WNRC) or the Southwest Regional Depository (Fort Worth, Texas). ## Recommendations Because the records management policy…
  • p. 131 …taken to Eighth Air Force Headquarters in Fort Worth where it was subsequently identified as a…
  • p. 138 …And I obviously...Marcel took it to Fort Worth. Yeah that's the... RW: Yeah. That…
  • p. 139 …into Wright-Pat and Kirtland, or to Fort Worth. Back and forth, loaded up, with very…
  • p. 145 …Then it said: "After Marcel had gone to Fort Worth and came back Marcel challenged the…
  • p. 147 …O.K."Marcel would take some of the sample to Fort Worth to show Ramey. In…
  • p. 150 normal course of his duty was sent to Washington not 8th Air Force in Fort Worth…
  • p. 219 …But the Roswell morning paper clearly showed that there was a knowledgeable person in Fort Worth…
  • p. 231 …Headquarters by a news photographer of the Fort Worth Star Telegram. It's four pictures that…
  • p. 263 …I was the only weather forecaster on duty in the Fort Worth base weather and flight…
  • p. 269 …flown to Eighth Air Force Headquarters at Fort Worth AAF, TX, for his personal inspection. Upon…
  • p. 277 …Before the announcement was made, the "disc" was flown to Fort Worth AAF, at the direction…
  • p. 278 …giant thermos jug" was allegedly transported from Fort Worth AAF to Wright Field. $ ^{38} $ This description…
  • p. 280 designs on it." $ ^{41} $ Furthermore, the Fort Worth Army Airfield Weather Officer, Irving Newton, who was…
  • p. 283 1 Fort Worth Star-Telegram Photographs of Balloon Debris July 9, 1947
  • p. 549 …Similarly, the Fort Worth Sub-Committee established a procedure for flights made within the Fort Worth…
  • p. 616 …Air Coordinating Committee, Fort Worth Regional Airspace Subcommittee. Subject: Obstructions to air navigation...43 5. Memorandum…
  • p. 655 …5/15/47 Office of the Secretary Fort Worth Sub-Committee on Air Space Civil Aeronautics…
  • p. 715 …Arrived in Fort Worth about 9 EDST. Off again to Big Springs, Texas, where forced to…
# CONTROLLED-ALTITUDE FREE BALLOONS

By Athelstan F. Spilhaus, C. S. Schneider, and C. B. Moore

College of Engineering, New York University

(Manuscript received 4 December 1947)

## ABSTRACT

The results of an experimental program to develop balloons with associated control devices, which will float at constant pressure in the atmosphere, are given. Newly developed plastic balloons and automatic ballast equipment are described. Examples of successful controlled-altitude flights are shown, together with a preliminary analysis of their trajectories. The constant-level balloon may provide data not obtainable from an ordinary pilot-balloon network. Future possibilities and plans for its use are indicated.

## 1. Purpose

Drift bottles have been used for many years in the study of ocean currents and have provided interesting data. In meteorology, no corresponding device has been available. It is evident, however, that a balloon which is free to move with the air currents, and yet whose altitude can be controlled, has many important applications in meteorology, as well as in other fields, where it may be desired to keep instruments at altitude for considerable lengths of time. An example is in the investigation of cosmic rays; here, clusters of ordinary extensible meteorological balloons have been used, but the constancy of altitude obtained is not sufficient for many meteorological applications. The purpose of the present investigation was to develop a balloon with a control system which would fly at a predetermined constant level for periods of many hours. Such a balloon has wider application than the ocean drift bottle, because, whereas the latter is limited to surface (or near surface) currents, controlled free balloons may be set to drift at any pressure elevation desired, or along other thermodynamically defined surfaces, as long as the element defining the surface changes in a monotone fashion in the vertical.

In addition to the uses for maintaining instruments at high elevations, there are numerous potential applications of these balloons. Direct measurements of air trajectories and of lateral diffusion become possible. The balloons may also be used as vehicles to convey and drop radiosondes over ocean areas. One problem in this application is to obtain an absolute altitude tie-in point, as it will be difficult to identify the point at which the radiosonde reaches the sea surface.

## 2. Earlier attempts

There have been numerous attempts for various purposes to get a balloon or group of balloons to stay at a fairly constant altitude. Meisinger was interested

in the meteorological aspects of this, using a manned balloon. In the investigation of cosmic rays, as for example, by Clarke and Korff (1941), clusters of ordinary meteorological balloons, 350-gram or 700-gram size, numbering anywhere from twenty to nearly seventy, were utilized. No altitude-control devices were used; the balloons were merely given different amounts of inflation. Thus the whole train ascended to an altitude where certain of the more highly inflated balloons burst until the remainder just balanced the load; thereafter, the assembly descended slowly due to loss of lift by the diffusion of gas. The only provision for having the system regain altitude if it descended too low was by arranging the launching before dawn, so that after the bursting of the first balloon and the subsequent descent, superheating of the balloons by the rising sun would cause the whole assembly to rise again, thereby increasing the duration of the flight. The system does not have sufficient control for many purposes.

The much-publicized use of balloons by the Japanese in the last war represents an attempt which must be considered highly successful from the point of view of the length of time which the balloons stayed in the air. Here the objective was not to obtain any critical altitude control, but rather to insure that the balloons remained floating. The Japanese nonextensible balloons were of two types. One type was of heavy paper, coated to minimize diffusion, of spherical shape, about 25 to 30 ft in diameter, and containing about 19,000 cubic feet of gas. A solid-ballast control system was utilized and gas was valved at a low internal pressure (about two inches of water) to prevent the balloons from rupturing due to the increase of the internal pressure by altitude fluctuations or radiation changes. Such a valve tends to conserve the lifting gas but acts as a safety device to prevent damage of the envelope due to too great an internal pressure.

The solid-ballast system was complex; approximately 900 pounds of sand was used on each balloon, distributed in thirty-six bags. The dropping of ballast

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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.