NASA-TN-D-6866-1972 Summary of design considerations for airplane spin-recovery parachute systems《飞机旋转降落伞系统的设计要素总结》.pdf
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1、NASA TECHNICAL NOTE=O!ZI-.,.,=ZNASA TN D-6866CASE FILECOPYSUMMARY OF DESIGN CONSIDERATIONSFOR AIRPLANE SPIN-RECOVERYPARACHUTE SYSTEMSby Sanger M. Burk, Jr.Langley Research CenterHampton, Va. 23365NATIONALAERONAUTICSAND SPACEADMINISTRATION WASHINGTON,D. C. AUGUST 1972Provided by IHSNot for ResaleNo r
2、eproduction or networking permitted without license from IHS-,-,-Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-1. Report No, 2. GovernmentAccessionNo. 3. RecipientsCatalogNo.NASA TN D-68664, Title and SubtitleSUMMARY OF DESIGN CONSIDERATIONS FOR AI
3、.RPLANESPIN-RECOVERY PARACHUTE SYSTEMS7. Authors)Sanger M. Burk, Jr.9. PerformingOrganizationNameand AddressNASA Langley Research CenterHampton, Va. 2336512. SponsoringAgencyName and AddressNational Aeronautics and Space AdministrationWashington, D.C. 205465. Report DateAugust 19726. PerformingOrgan
4、izationCode8. PedormiogOrganizationReport No.L-821910. Work Unit No.136-62-02-03“11.Contract or Grant No,13. Type of Report and PeriodCoveredTechnical Note14. SponsoringAgencyCode15. SupplementaryNotes16. AbstractA compilation of design considerations applicable to spin-recovery parachute systemsfor
5、 military airplanes has been made so that the information will be readily available topersons responsible for the design of such systems. This information was obtained from astudy of available documents and from discussions with persons in both government andindustry experienced in parachute technol
6、ogy, full-scale and model spin testing, and relatedsystems.17. Key Words (Suggestedby Authoris)Spin-recovery parachute systemsParachutesSpinning18. DistributionStatementUnclassified - Unlimited19. SecurityClaccif.(of thisreportUnclassified20. SecurityClessif.(of thispage 21. No. of PagesUnclassified
7、 55Q For saleby the National Technical Information Service,Springfield, Virginia 2215122. Price*$3.00Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-Provided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-CON
8、TENTSPageSUMMARY . 1INTRODUCTION 1SYMBOLS . 2TYPICAL CHARACTERISTICS OF SPIN AND RECOVERY 4Fully Developed Spin 4Spin Recovery 4SPIN-RECOVERY PARACHUTE . 5Design Approach 5Operating Environment . 6Wake Effects 6Parachute Requirements 8Parachute Type . 8Parachute Diameter and Riser Length . 8SPIN-REC
9、OVERY PARACHUTE INSTALLATION AND OPERATION 10Parachute Compartment 10Deployment Bag and Packing Methods . ilParachute Deployment Methods . 11PILOT PARACHUTE . 13Requirements and Types 13Pilot Parachute Diameter and Bridle Length 13Pilot Parachute Deployment Methods 14DEPLOYMENT MECHANISM DESIGN CONS
10、IDERATIONS 16Basic Methods of Deployment and Jettison . 16Emergency Power 17Basic Attachment Methods . 17Cockpit Control Arrangement 18SPIN-RECOVERY PARACHUTE LOADS . 19FUSELAGE LOADS 19QUALIFICATION AND MONITORING OF RECOVERY SYSTEMS 21Free-Drop Tests 21Laboratory Tests 21Airplane Ground Tow Tests
11、. 22iiiProvided by IHSNot for ResaleNo reproduction or networking permitted without license from IHS-,-,-PageInflight Deployment Tow Tests . 22Deployment Tests in Developed Spin 22Parachute Drag Measurements . 23Photography . 23CONCLUSIONS . , . . 24APPENDIX A - ALTERNATE SPIN-RECOVERY DEVICES . 27R
12、ockets . 27Wing-Tip-Mounted Parachutes . 29APPENDIX B - ADDITIONAL CONSIDERATIONS WITH REGARD TOTHE SPIN-RECOVERY PARACHUTE . 30Design of Parachute Compartment . 30Packing . 31REFERENCES . 33TABLE 36FIGURES . 37ivProvided by IHSNot for ResaleNo reproduction or networking permitted without license fr
13、om IHS-,-,-SUMMARY OF DESIGN CONSIDERATIONS FOR AIRPLANESPIN-RECOVERY PARACHUTE SYSTEMSBy Sanger M. Burk, Jr.Langley Research CenterSUMMARYA compilation of design considerations applicable to spin-recovery parachute sys-tems has been made so thatthe information willbe readily availabletothose respon
14、siblefor the design of such systems. The information was obtained from a study of availabledocuments and from discussions with persons in both government and industry experiencedinparachute design, full-scaleand model spin testing,and related systems. This surveyindicatedthatthe technology was best
15、defined for tacticaland trainer military airplanes,and was not considered applicableto other classes ofairplanes, especially lightgeneralaviation airplanes. Even for the military airplanes, however, there are gaps in the tech-nology where one must rely on the judgment of experts based on their relat
16、ed experience.Hence, the present paper isnot a handbook for the design of spin-recovery parachutesystems, but is simply a summary ofthe statusof the technology and a discussion ofapproaches thathave proven successful,or unsuccessful, in the past. One main conclu-sion evolves from thissurvey; thatis,
17、there are three distinctfieldsoftechnologyinvolved: parachutes, airplane spinning,and airplane systems. Specialistsinallthesefieldsshould be consulted or participateinthe design ofthe spin-recovery parachutesystem from the very beginning.INTRODUCTIONThe armed services require a contractor to demonst
18、rate by full-scale flight teststhe spin and recovery characteristics of certain types of airplanes, such as fighter, attack,and trainer airplanes, as a standard part of the flight demonstration acceptance program.(See refs. 1 and 2.) During these spin demonstrations, the airplane is generally equipp
19、edwith a tail-mounted spin-recovery parachute system as an emergency recovery device incase recovery from the spin cannot be effected by the airplane control surfaces. TheU.S. Navy recently has added a new requirement to the full-scale spin demonstrations“(ref. 2) which states that the emergency spi
20、n-recovery device must be tested in a criticalspin condition during the spin demonstration tests. Although spin-recovery parachutesystems have been used for many years, the technology for system design and qualificationProvided by IHSNot for ResaleNo reproduction or networking permitted without lice
21、nse from IHS-,-,-is very inadequatelydocumentedand few guidelines exist in this area. There have been,andcontinueto be, failures associatedwith spin-recovery parachute systems; manyofthese failures appear to be causedby the lack of understandingof the basic aerodynamiccharacteristics and mechanicsof
22、 the spin and also to lack of experiencewith spin-recovery parachute systems. This situation exists becausethere hasbeenlittle conti-nuity in the designteams over the years with respect to spin-recovery parachute systems.The purposeof this paper is to summarize the design considerations for spin-rec
23、overy parachutesystems sothat the information will be readily available to thoseresponsible for the designof such systems. The information that is presentedhereinwas obtainedfrom a study of available documents(refs. 3 to 19),and from discussionswith persons experiencedin parachutetechnology,full-sca
24、le and model spin testing, andrelated systems. Personnel from the following organizations were consulted: (1) U.S.Air Force Flight DynamicsLaboratory, (2) U.S.Naval Air SystemsCommand,(3) CessnaAircraft Company,(4) General Dynamics, Fort Worth Division, (5) GrummanAerospaceCorporation, (6) Irvin Ind
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