Engineering Journal: Science and InnovationELECTRONIC SCIENCE AND ENGINEERING PUBLICATION
Certificate of Registration Media number Эл #ФС77-53688 of 17 April 2013. ISSN 2308-6033. DOI 10.18698/2308-6033
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Article

Analysis of the impact of high temperature supersonic jets in low-thrust engines

Published: 06.12.2018

Authors: Kudinov A.S., Yurchenko I.I., Klimenko A.G., Isakov D.V.

Published in issue: #12(84)/2018

DOI: 10.18698/2308-6033-2018-12-1831

Category: Aviation and Rocket-Space Engineering | Chapter: Aerodynamics and Heat Transfer Processes in Aircrafts

The paper analyses power, heat and pollution impact of overexpanded jets of simulated low-thrust engines with different correlations of kerosene oil and oxygen expenditure in simulated chamber, flowing out into the atmosphere. The research dedicated to the impact of jets of simulated low-thrust engines was conducted in a testing complex at SSC FSUE Keldysh Research Center. Descriptions of experimental facility, test schedule and methods of measurements were introduced. We received the distribution of pressure and heat flows on the inclined plate, mounted behind the nozzle edge in comparison with the results of similar researches of air jets. Nanostructural observation of soot remains in chamber and on the outer plate in the jet was conducted. The paper observes the abilities of computational simulation of the impact of a real jet on a plate with the help of programme complex SolidWorks Flow Simulation


References
[1] Dharavath M., Chakraborty D. Numerical Simulation of Supersonic Jet Impingement on Inclined Plate. Defence Science Journal, 2013, vol. 63, no. 4, pp. 355–362, DOI: 10.14429/dsj.63.2545
[2] Dickmann D.A. Jet in Supersonic Crossflow on a Flat Plate. 25th AIAA Aerodynamic Measurement Technology and Ground Testing Conference. 5–8 June 2006, San Francisco, California. AIAA, 2006-3451.
[3] Dettfel G. Plume Flow and Plume Impingement Space Technology. Progress in Aerospace Sci., 1991, vol. 28, pp. 1–71.
[4] Lamont P.J., Hunt B.L. The impingement of underexpanded, axisymmetric jets on perpendicular and inclined flat plates. J. Fluid Mech., 1980, vol. 100, part 3, pp. 471–611.
[5] Chen P., Li S., Luo S., Ni Z. Flow Visualization on Lateral Multiple Jet Interaction with Freestream. Journal of Flow Control, Measurement & Visualization, 2014, vol. 2, pp. 7–11. DOI: 10.4236/jfcmv.2014.21002
[6] Varnier J. Experimental Study and Simulation of Rocket Engine Free jet Noise. AIAA Journal, 2001, vol. 39, no. 10, pp. 1851–1859.
[7] Chanegaonkar P.M., Ramanujachari V., Vijaykant S. Experimental investigation on the supersonic jet impingement. Indian Journal of Engineering and Material Science, 2004, vol. 11, pp. 100–106.
[8] Haeseler D., Mading C., Gotz A., Roubinski V., Khrissanfov S., Berejnoy V. Recent Developments for Future Launch Vechicle LOX/HC Rocket Engines. 6th International Symposium Propulsion for Space Transportation of the XXI Century, 13–17 May 2002, Versailles, France. AAF-02-100.
[9] Yagodnikov D.А., Аntonov Yu.V., Vorozheeva O.А., Masalskiy N.L., Novikov А.O., Chertkov K.O. Inzhenerny vestnik — Engineering Bulletin, 2014, no. 10. Available at: http://engbul.bmstu.ru/doc/739755.html
[10] Rudnev B.I., Povalikhina O.V. Nauchnye trudy Dalrybvtuza — Scientific Journal of DALRYBVTUZ (Far Eastern State Technical Fisheries University), 2014, vol. 33, pp. 49–54.
[11] Ivanov N.N., Ivanov А.N. Vestnik FGUP NPO im. S.А. Lavochkina — Vestnik NPO imeni S.A. Lavochkina (Journal of Lavochkin Association), 2010, no. 2, pp. 24–29.
[12] Rudnev B.I., Povalikhina O.V. Nauchnye trudy Dalrybvtuza — Scientific Journal of DALRYBVTUZ (Far Eastern State Technical Fisheries University), 2015, vol. 36, pp. 86–92.
[13] Nagata Y., Nonomura T., Fujii K., Yamamoto M. Analysis of Acoustic-Fields generated by Supersonic Jet Impinging on an Inclined Flat Plate and a Curved Plate. APCOM & ISCM, 11–14th December, 2013, Singapore. 8 p.
[14] OOO «Sistemy dlya mikroskopii i analiza» — Systems for microscopy and analysis. Available at: http://www.microscop.ru (accessed October 19, 2018).