TRANSMITTAL OF BALLOON INFORMATION

Document Type: 
Collection: 
Document Number (FOIA) /ESDN (CREST): 
05415894
Release Decision: 
RIPPUB
Original Classification: 
U
Document Page Count: 
55
Document Creation Date: 
December 28, 2022
Document Release Date: 
February 15, 2017
Sequence Number: 
Case Number: 
F-2008-00941
Publication Date: 
October 23, 1956
File: 
Body: 
Approved for Release: 2016/10/24 COSS Approved for Release: 2016/10/24 C05415894 (b)(3) 2016/10/24 C05415894s '134410'"41-17' LApproved for Release 2016/10/24 C05415894. 4 Approved for Release: 2016/10/24 C05415894 his document consists of /3 copies, serials fr- mNita. 263P TECHNICAL REPORT Contract No. Nonr 875(00) Annex IV PREPARED FOR THE OFFICE OF NAVAL RESEARCH WASHINGTON,, D. C. Prepared by: 3. C. Warren Date: 30 September 1954 Report No. 1332 GENERAL MILLS,, INC. Mechanical Division ENGINEERING RESEARCH AND DEVELOPMENT 2003 E. Hennepin Ave. Minneapolin 13, Minn. of rages and is /amber , and the following attach: attrid.) Approved for Release: 2016/10/24 005415894 Approved for Release: 2016/10/24 C05415894 Table of Contents Page SUMMARY 0000000 004000000000000 1 THE FEW DESIGN 00000000000000 1 _ . A. Theory of the Natural Shape .-. 000000000 1 B. Selection of Proper Shape 000000000 2 III.TIHA1GABTESTooaaoasaoeoaaaaaaaa 3 le Objectives a 00000000000000060 2. Details of Testing a 00000000000000 3 3. Conclusions OOO 00.0000006000 14. IV. TlfllGllTTESTaaaaeaaaaaaoaaaaoaa 11 le Objectives aaaaaeaaaaaaaaaaa4 2, Details of Testing 00000000000000 4 3. Conclusions a a 00000660000000000 APPENDIX Time/Altitude Flight 1140 Trajectory Flight 1140 Gross Load vs. Altitude 263P 263P Drawings Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 e Ittifta844-- A personnel-carrying balloon with a volume of 80o0 cubic feet was designed acoording to "Natural Shape" specifications. The design was subjected to it hangar test on 17 February 1954 and was flown successfully on 6 May 1954. This report will cover both experimente. INTRODUCTION A study of the sphere cone envelopes previously used resulted in the finding of both horizontal and vertical stress concentrations in the envelopes. In the "Natural Shape" balloon, circumferential-stresses are eliminated. This concept motivated the redesign of personnel-carrying balloons. II. TEE NEW DESIGN A. Theory of the Natural Shape Since ballbons can be manufactured in any desired shape of closed surface, it is clear that there is a most desired shape. The principal consideration was stresses, the consequent strain and the relationship between surface area and volnma contained. Stresses on the surface area arise from (1) supporting the payload. and (2) gas pressure. Those stresses Which hive a direction which is tangent to the surface and which lie in a vertical plane are called meridional etresses. Tests have shown that the meridional stresses are transferred from the tepee onto the surface area uniformly. Curvature in a stresses surface produces an inward force per unit area. In a balloon, this force ia opposed by the difference in pressure of gas inside and outside. If the inward force created by the meridional stress is nullified everywhere by the gas pressure, the balloon is said to have a "Natural Shape" and has zero circumferential tension. These ideas Were conceived and reduced to practice by General Mills, Inc. under Air Force sponsorship in 1951. Since then, much of the work done on balloon design has been implemented by the University of Minnesota Balloon Physics Group development of design nomographs from use of the analog computer. Each shape is characterized by a value of the "balloon fabric parameter ZE ", esherea. is a dimensionless parameter that enters the differential equations when the effect of finite fabric weight is taken into account. The method of obtaining the shapes from the differential equations is as follows: Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 ' Nine different values ofZ were chaaen, and for each value the differential eqUations were solved using the analog computer. These nine shapes were then nermalized to give the shape coordinates T, Z, S for balloons of unit gore length, where r and Z. give the profile of the balloon and S is.the-distance of a point on the profile from the bottom apex (measured up along the gore). Since the .5. value is a ratio of the gross load to balloon weight, the design becomes unique for each case. The following design is based on a maximum load-and provides ample material for the envelope to assume its natural shape. B. Selection of Proper Shape 1. Each shape is characterized by a value of 2E , where 4E = 0 corresponds to the so-called "weightless natural shape", and larger corresponding to the more 'oblate shape with heavier fabric weight. The proper value of lE is uniquely determined by the following quantities. V = Volume L = Payload suspended from bottom apex. W = Weight of fabric material per unit area. /2, = .028 Approved for Release. 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 - - Using the University of Minnesota nomograph, curve #2 was selected where = .05. This ajf value produces an envelope profile as shown in Figure Note: The nine different values of2 chosen were from zero to .40 in .05 increMenti; Since the opt/Mum value (.028) lie between curve for 0 and .05, .05 was selected. This means there is slightly more material than needed for the envelope to assume its natural ahape with existing loads. 2. Tailoring of the shape selection consisted Of the following. � a. The gore layout was modified at stations #19 and. #29 so that the profile would be symmetrical. b. To provide for a, two point suspension at the bottom apex of the balloon, tiro gores were tailored in the following manner, A line was drawn from a point; corresponding to the desired width at the base of the balloon, tangent to the gore. The resulting pattern provided the necessary width at the balloon base and precluded the inclusion of separate wedge gores. This device in no way affected the balloon diameter; and the minimum addition had only a negligible effect on the volume of the balloon. III. THE HANGAR TEST 1, Objectives A balloon was fabricated on the basis of the foregoing specifications and hangar-tested on 17 February 1954. Objectives of the test were as follows: a. Test the new design. b. Determine effects of tailored gores to provide a two point suspension. c. Measure M1 plastic value capacity in a stable atmosphere. d. Confirm the design volume. 2. Details of Testing The following pictures show the balloon at 200 pounds of lift, 400 pounds of lift and when full at 517 pounds of lift. At full inflation the syetem was lifted off the ground and thrown down again several tithes sending shock waves up and down the fabric and creating a whipping action. Two tests of the value, one for one minute and the other for five minutes, were made. Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 _or rt Approved for Release: 2016/10/24 C05415894 - Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 CO5415894- Approved for Release: 2016/10/24 C05415894 3m Conclusions and Recanaendations a. Generally, the new design proved very efficient, remaining un- damaged under conditions more severe than those expected in flight. b. It was decided to apply tapes to the wedge gore. This will provide symmetry to load-bearing members on the balloon. c. The M1 plastic value loss of lift in pounds per mlnu consistent in both testing periods at 1k lbs./min, d. The groes lead of 517 pounds, using helium as the lifting gas, confirmed the design volume at 7900 cubic feet. IV, THE MOT TEST le Objectives A manned balloon flight, GMI #lil-0,was made on 6 May 1954. Objectives of the flight were as follows: a. To flight-test the new 263P balloon. b, To determine the flight capabilities of the 263P balloon. c. To approve the 263? balloon for production. d. To test the hydroneal generator. 2. Details of Testing The inflation and launching was accomplished without any real difficulty except that it was not possible to meet the time schedule because of difficulties with the hydroneal generator. Surface winds remained less than 5 MPH during most of the period, which simplified handling the balloon over the three and one-half hour inflation period. Take-off-was made at 0750 with the balloon rising at Wo F.P.M. to its ceiling of 5000 feet. The flight was characterized by the instability that was evidenced shortly after the balloon had reached its ceiling. The pilot was kept buny riding .out the series of up and down drafts. A total ballast of 29 poUnde was required to keep the system in a safe altitude range. Total valving time for the four hour duration was only 1 1/4 minutes with the major portion of this being required for landing. Indicative of the instability was the pilot's notation at 1130. "Small brown leaf observed in air near balloon - altitude 3200 feet". The first attempt at a landing resulted in the balloon being caught in a downdraft over a wooded area. The balloon descended into tree tops approximately 10 feet above the base of the balloon. Numerous tears in the balloon were observed� The balloon then rose above the tree and was valved to landing a few Minutes later. A � � roved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 - 5 - 3 Conclusions and ReCoMmendations a. The 263P balloon withstood a severe test flight and performed excellently under existing conditions. b. The 263P, as designed, is an acceptable item and ready for production. c. The hydroneal generator did not produce the 4000 CFH as indicated but gave 3000 CFH, prolonging inflation over 1 1/2 hours. d. That the hydroneal gas has a distinct ammonia odor was evidenced by the pilot in flight and the crew members during inflation, Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 APPENDIX Approved for Release: 2016/10/24 C05415894 -SErvivx- Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 � . � Approved for Release: 2016/10/24 C05415894 _Approved for Release : 2.016/10/24 C05415894 / r: Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 Approved for Release: 2016/10/24 C05415894 -'-' 263? DRAWINGS A-15352 Inflation Tube and Duct A-15351-B Duct Installation A-15394-B Reefing Sleeve A-15350-B DUct Attachment A-16596-B Gore Pattern A-16749-B Loaation of Wedge Gore Tapes A-16621-0 Valve and Rip Panel Instaflation A-17232-C 263P Assembly A-30004-A RiP Panel Bolt A-30005-A Rip Panel Nut A-30006-A Rip Panel Gasket A-11877-A Suepension Harness A-30704-B Fibre Bushing installation A-11876-B Attachment Pad A-30708-B Balloon Base A-120724i Seal thru Balloon Baas A-16883-A One Way ClJp A-16619-B Device for Securing Duct A-16618-C Rip Device for Balloon Base Valve Drawings A-16525-A Valve Spring A-16524-A Stud A-16523-B V Seat Mtg. Disk A-16553-B Valve Seat A-16521-C Valve Plate A-16554-C ValVe 8-Crean A-16552-C Valve Gasket A-16551-C Valve Ring A-16555-C Valve Assembly Approved for Release: 2016/10/24 C05415894 r-4 Approved for Release: 2016/10/24 C05415894 pproved for Release: 2016/10/24 C0541589 aE8PRESIrrt WAP,111�0. trig proved for Release: 2016/10/24 C05415894 \' < Ii- 1 I ll ,.. 1,. 1/4)..k1 .� H C tjl 16 ,i_ I rn jr.\ N ' I �-t1/443 N u , .""t pproved for Release: 2016/10/24 C0541589 Approved for Release: 2016/10/24 C05415894,: roved for Release: 2016/10/24 C0541589 IffetZLIalaWrrattra.2.11Wwka, Approved for Release: 2016/10/24 C05415894' 1, Approved for Release: 2016/10/24 CO5415894 , � ---"tT"'"."-r 4 rr Approved for Release: 2016/10/24 C05415894 LJ 10 X 10 TO THE '1 INCH 359-111_ KLUFFEL. & ESSE.R CO. f4i.� u U.S A. Approved for Release: 2016/10/24 C05415894 NM! ASS' Y. OWGS. co------ _ _ In In - .22 .5 9-- E (pt./A-TOE TWO 6'90 LOAD TA PES TAPEPTOWARDLI CENTER' OF WEDGE COPE AT TI-71E- ZSAL LOOA/ EQUATOR THEW ._5r2A/6/97- TO TOP) OF EBALLCON REVISIONS ea8ECT-111.� MATI... SPEC. A/O TED (./ C W APP. CH. APP. DATc!...iv915...4z SCALE NAME LOCATION _OF 2016/10/24 C05415894, /N. iN Lfre /-1.47:1-7 � VALI/C. /1/0�4V 7/N Approved for Release 41.1C HINE c)CPEW /ego Lacy) 7A,ors (Prergrzems /71.0 ENC.A5 HEW \ N C,CitSkr7r cisar_vw ILVID PING O'S) LOAD TAPE AXIBLEZ) LACK ,564' FULL OZZE wz,vezeve earr. resr An-tov.coRo Approved for Release: 2016/10/24 C05415894 \ Approved for Release: 2016/10/24 C05415894 - N N ASKE XS 300064 towzfivE .sv-rry- A-Aor UT 3C005 A 77*0 444/N c55,0 R/P PANEL TAPES, �'------"PriLVETHrLENE EOLT 30004A PIP PAIVEL TAPES EXTEND ----DOWN 7-0 LLOOA' ECR./A7o.e AND ARE 45 FEET LONG RIPSINEL Lzeve 50 er 0�00# TE,Yr AO-ZON ct7eD OCT 1 1954 11111111Approved for Release: 2016/10/24 C0541589411.111111101111r A/662/ C REVISIONS Approved for Release: 2016/10/24 C05415894 PLA577C CORES LOAD TAPEJ DIXT murAtLArrees/ A77,404/1/1ENT PAD A/1676 PLASTIC VALVE Aget.15 /1001710A1 OF Werve4-16749- saea 74 PE S P PANEL 416.621 HARN ELY 4/A977 BALLOON aeLIE I .430708 RAIN DEFLECTOR. /0 22 4 /VKLON Z. /NEU TO se 4.042.04c (544"P'EtOPED tenc-rH) cr-soo La. 763r AinoN sran PCS d CENTE'R LlNEJ rtor Be A5- toNa pen-tops.o zavany rioRE 8W/4/NG /A/JTALLAriONA-307 k71/4407- W/77-I / V KA/070' ACTE - .500 LB. 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