CFD Analysis of the Tractor Propulsion Concepts for an Inverted Joined Wing Airplane

Author:

Dziubiński Adam1ORCID

Affiliation:

1. Łukasiewicz Research Network – Institute of Aviation , Al. Krakowska 110/114, 02-256 Warsaw

Abstract

Abstract Efficiency is a crucial parameter for an airplane to reduce both cost of operations and emission of pollutants. There are several airplane concepts that potentially allow for increasing the efficiency. A few of them were not investigated thoroughly enough yet. The inverted joined wing configuration, with the upper wing in front of the lower one is an example of such concept. Therefore, a project consisting of development of an experimental scaled demonstrator, and its wind tunnel and flight testing, was undertaken by consortium: Institute of Aviation, Warsaw University of Technology, Air Force Institute of Technology and a MSP company. Results led to a conclusion, that the inverted joined wing configuration allows to build an airplane with excellent performance, but its advantage against the conventional airplane is marginal because of large trimming drag of the configuration with relatively high position of the thrust vector in pusher configuration. It was applied because the demonstrator was a flying model of manned airplane and the tractor configuration would affect the pilot’s field of observation. However, in case of the UAV, this reason becomes insignificant. Therefore two configurations of tractor propulsion were tested to see, if their performance is better than the performance of original design.

Publisher

Walter de Gruyter GmbH

Reference35 articles.

1. [1] Prandtl, L., 1924, „Induced drag of multiplanes”, NACA TN 182.

2. [2] Wolkovitch, J., 1986, „The joined wing - An overview”, Journal of Aircraft, 23(3), pp. 161-178.

3. [3] Danilecki, S., 1988, „The joined wing – advantages and disadvantages (I)”, Technika Lotnicza i Astronautyczna (Aerospace Technology), 9, pp. 4-6. (in Polish).

4. [4] Danilecki, S., 1988, „The joined wing – advantages and disadvantages (II)”, Technika Lotnicza i Astronautyczna (Aerospace Technology), 10, pp. 8-10. (in Polish).

5. [5] Galinski, C., 1992, „Results of Testing of Models of Joined-Wing Utility Class Aircraft”, SAE paper No. 921013.

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