“Headquarters”32 pages
- 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…
This relationship is expressed as:
$$
\Delta p = \Delta z \left(\frac {d p}{d z}\right) _ {\mathrm {a i r}} (1 - B)
$$
where $ B=\frac{M_{g}}{M_{q}} $ $ M_{g}\& M_{q} $ are molecular weights of lifting gas and air, respectively.
Since, for a full balloon, $ \Delta z $ is constant at any altitude, and B (for our discussion) is a constant:
$$
Q \propto \sqrt {\frac {\left(\frac {d p}{d z}\right) _ {\mathrm {a i r}}}{d _ {g}}}
$$
The mass rate of flow is equal to the density of the lifting gas multiplied by the volumetric rate of flow:
$$
L = Q d _ {g} \propto \sqrt {\left(\frac {d p}{d z}\right) _ {\mathrm {a i r}} d _ {g}}
$$
Since the number of openings will not change with altitude, equation (7) expresses the relationship for mass rate of flow from a full balloon for any altitude. The leakage at any altitude may be expressed as a function of leakage at sea level:
$$
\frac {L _ {z}}{L _ {0}} = \left(\frac {\left(\frac {d p}{d z}\right) _ {\mathrm {a i r} - z}}{\left(\frac {d p}{d z}\right) _ {\mathrm {a i r} - \theta}} \frac {d g _ {z}}{d g _ {0}}\right) ^ {\frac {1}{2}}
$$
As an example, let us compare the leakage rates of a lifting gas through a full balloon at sea level, at 40,000 feet and at 100,000 feet.
Altitude (dp/dz)air dg
0 $\frac{1}{27}$ $\frac{1013}{288R}$
40,000 $\frac{1}{112}$ $\frac{188}{218R}$
100,000 $\frac{1}{1880}$ $\frac{10.9}{218R}$