Abstract
This paper presents a scientific development aimed at improving the efficiency of tur-bomachines through the joint use of rotary-vane and vortex workflows. In the well-known Euler turbine, the rotor flow channels represent a set of curved pipes. The authors propose to consider in more detail the possibilities of using such rotating pipes in the implementation of an ejection (vor-tex) workflow. A hybrid pump was considered with the conclusion that its workflow can be de-scribed using two Euler equations. The results of computer simulation indicate that hybrid tur-bomachines are promising. The use of additive technology allowed the creation of micromodels of the Euler turbine with various rotor designs. Laboratory hydraulic tests showed that the liquid inlet to the rotor is possible in pulse mode. Laboratory tests of micromodels using compressed air showed that gas (or liquid) motion through curved pipes could be carried out from the rotor pe-riphery to its center and then back, albeit through another curved pipe. The research results demon-strated that the scientific and technical potential of the Euler turbine is not yet fully unlocked, and research in this direction should continue. The study results are applicable in various industries including the energyeconomy, robotics, aviation, and water transport industries.
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Sazonov, Y. A., Mokhov, M. A., Gryaznova, I. V., Voronova, V. V., Mulenko, V. V., Tumanyan, K. A., … Balaka, N. N. (2021). Prototyping and study of mesh turbomachinery based on the euler turbine. Energies, 14(17). https://doi.org/10.3390/en14175292
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