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Structural Aspects of the Do 31 Jet-Lift VTOL Aircraft

Published online by Cambridge University Press:  04 July 2016

M. Flemming*
Affiliation:
Dornier GMBH, Friedrichshafen

Summary

The special structural problems of VTOL aircraft are examined, taking the Do 31 as a basis and it is shown how these problems can be solved without significant weight penalties.

After a short description of the aircraft and the systems associated with aircraft testing, the structural design of the Do 31 is described.

The effect of special VTOL load cases on the individual aircraft components are illustrated and it is shown where these are critical. The methods used in the calculations are explained briefly and theoretical results are compared with tests.

Special emphasis is given to the lift pod structure and its structural analysis.

There are special problems with VTOL aircraft which must be considered during the structural design phase. The effects of temperature on the engine pods, wing and fuselage are shown and the solution of the associated design problems are indicated. The results obtained are compared with a number of Do 31 test results.

If conventional British or US fire requirements are applied to the design of lift pods, there is a possibility of some weight penalties. Fire problems and fire requirements for lift pods are discussed with reference to test results. Recommendations for minimising the danger of explosions and for the use of fire detecting devices are also made.

A great advantage of VTOL aircraft is their ability to use unprepared sites. Debris may be thrown up by the downward deflected jet exhausts and strike the aircraft. Calculations and test results show the effect of impact velocities, stone shape, etc. Structural optimisation for withstanding debris impact is considered.

Noise problems have to be investigated during the aircraft design phase because of the high engine thrust installed in a VTOL aircraft. Results of the Do 31 tor near field noise levels are given. Particular attention is given to the proportion of overall noise level which affects the airframe.

Type
Supplementary Paper
Copyright
Copyright © Royal Aeronautical Society 1968 

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References

1. Birrenbach, R. and Flemming, M. Die statische Berechnung der Do 31-Hubtriebwerksgondel. WGLR-Festigkeitsausschusssitzung, Juni 1967. DORNIER-Bericht (unpublished).Google Scholar
2. Ebner, H. Die Beanspruchung dünnwandiger Kastenträger auf Drillung bei behinderter Querschnittsverwölbung. DVL-Jahrbuch, 1933, Seite 572.Google Scholar
3. Argyris, J. H. and Kelsey, S. Structural Analysis by the Matrix Force Method with Application to Aircraft Wings. WGL-Jahrbuch, 1956.Google Scholar
4. Argyris, J. H. Recent Advances in Matrix Methods of Structural Analysis. Progress in Aeronautical Sciences, Volume 4, Pergamon Press, 1964.Google Scholar
5. Rose, D. Über die Kopplung von Flugzeugbauteilen. WGLR-Festigkeitsausschusssitzung, Juni 1967. DORNIER- Bericht (unpublished).Google Scholar
6. Abteilung Statik und Rechenzentrum der DORNIER GMBH. Das FOMAX-System und seine Anwendung DORNIER-Bericht 66/11. Teil I und II (unpublished).Google Scholar
7. Flemming, M. Temperaturprobleme an Hubgondeln für VTOL-Transporter. WGLR-Festigkeitsausschusssitzung, Dezember 1966. Schriftenreihe der “Deutschen Luftund Raumfahrt”. WGLR-Bericht.Google Scholar
8. Flemming, M. and Rose, D. Temperaturprobleme an der Struktur von VTOL-Strahltransportern. WGLR\ DGRR-Jahrestagung, Oktober 1967.Google Scholar
9. Schabronath, H. V. Bonin Molerus. Modellrezirkulationsmessungen an der Do 31, April 1966. DORNIER-Bericht VT 464-B3 (unpublished).Google Scholar
10. Handtmann, G. and Lang J., Winter J. Messung von Materialtemperaturen in der Hubtriebwerksgondel Do 31-GS November 1966. DORNIER-Bericht VF 465-B6 (unpublished.)Google Scholar
11. Rose, D. Über die Berechnung von Temperaturspannungen nach der Verschiebungsmethode, Oktober 1967. DOR NIER-Bericht (unpublished.)Google Scholar
12. Flemming, M. Warmespannungsberechnung nach der Balkentheorie, August 1967. DORNIER-Bericht (unpublished.)Google Scholar
13. Giencke, E. Wärmespannungsberechnung Vorlesung für Konstruktionslehre Techn. Universität Berlin (unpublished.)Google Scholar
14. Flemming, M. Die matrizielle Berechnung von Querschnittswerten und Einheitsspannungen bei beliebiger Querschnittsform. Zeitschrift für Flugwissenchaften, 1964, Heft 5.Google Scholar
15. Goodall, D. G., Townsend, F. and Ingle Roberts, R. Dornier Do 31 RB 162 Lift Installations Fire Precautions Research Brochure F5, December 1964. Roll-Royce Report DMB/Gdl.I/IEB.Google Scholar
16. Flemming, M., Handtmann, G., Haupts, G. and Rose, D. Die Do 31-Hubgondel-Brandversuche Oktober 1967. DORNIER-Bericht (unpublished.)Google Scholar
17. Bartels, P., Flemming, M. and Scholten, R. Zellenbeschädigung durch Steinschlag. DORNIER-Bericht (unpublished.)Google Scholar
18. Bartels, P., Flemming, M., Kaufmann, D. and Scholten, R. Untersuchung von Partikelbewegungen im Triebwerksswandstrahl, August 1967. DORNIER-Bericht Nr. 67/11 (unpublished.)Google Scholar
19. Flemming, M., Willshire, A. J. u. a. Zellenbeschädigung durch vom Triebwerksstrahl erfasste Teile, November 1965. DORNIER-Hawker Siddeley-Bericht (unpublished.)Google Scholar
20. Rolls-Royce Ltd. Debris Scatter Tests using a vertical RB 108 Lift Jet Engine, February 1966.Google Scholar
21. Bartels, P., Flemming, M., Scholten, R. and Langbein, G. Steinschlagversuche fiir das Projekt eines V/STOL-Strahltransporters Dezember 1966. DORNIER-Bericht 66/19 (unpublished.)Google Scholar
22. Lighthill, M. J. On sound generated aerodynamically. Proc Roy Soc, A, Vol 211, 1952, Vol 222, 1954.Google Scholar
23. Bartels, P., Flemming, M., Göhringer, M., Reid, W. B., Scholten, R. and Willshire, A. J. Ermittlung von Schall- pegelkonturen im Freiflugfeld, November 1965. DOR NIER-Hawker Siddeley-Bericht 65/19 (unpublished.)Google Scholar
24. Rolls-Royce Ltd. Noise Pressures on Aircraft Structures, C.P.R. 1727, 1964.Google Scholar
25. Scholten, R. Schalldruckerhöhung an der Zelle der Do 31 durch den Bodeneinfluss, Oktober 1967. DORNIER-Bericht 15031-03-0568 (unpublished.)Google Scholar
26. Szlenkier, T. K., Bishop, A. W. and Hartmann, A. Initial Studies of Jet Lift Systems with Fan-Like Exhaust Characteristics for V/STOL Transport Aircraft, AGARD Meeting 1967 (Göttingen).Google Scholar
27. Bayerdörfer, G. Schallfestigkeitsversuche an Flugzeugbauteilen, Jahrbuch WGLR 1965.Google Scholar