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Criteria base of the jet ejector operating process

https://doi.org/10.25206/2588-0373-2025-9-2-78-85

EDN: WBOYVJ

Abstract

The article considers the question of creating a criterion base of the jet ejector operating process on the basis of a closed mathematical model. The basic parameters affecting the degree of ejection and total pressure rise at the discharge from the mixing chamber of the jet ejector are determined. Finding dimensionless complexes using the modeling theory allows determining the criterion base of the operating process of the jet ejector. At full geometrical similarity, without considering heat exchange and using “natural” and “model” gas, the number of similarity criteria is reduced to Reynolds number.

About the Authors

V. I. Kuznetsov
Omsk State Technical University
Russian Federation

Viktor I. Kuznetsov - Doctor of Technical Sciences, Professor, Professor of the Aircraft and Rocket Building Department, Omsk State Technical University (OmSTU).

Omsk, Mira Ave., 11, 644050

AuthorID (RSCI) 161955

ResearcherID N-9618-2016



I. O. Kuznetsova
Omsk Institute of Water Transport – Branch of the Siberian State University of Water Transport; Siberian Institute of Business and Information Technology
Russian Federation

Irina O. Kuznetsova - Candidate of Technical Sciences, Associate Professor of the Natural Sciences and Information Technologies Department, Omsk Institute of Water Transport – Branch of the Siberian State University of Water Transport; Associate Professor of the Full-time Education Department, Siberian Institute of Business and Information Technologies.

Omsk, Ivan Alekseev St., 4, 644099; Omsk, 24-ya Severnaya St., 196/1, 644116

AuthorID (RSCI) 486124



D. D. Shpakovskiy
Omsk State Technical University; Omsk Engine Design Bureau – Branch of the Public Joint Stock Company “UEC-Saturn”
Russian Federation

Denis D. Shpakovskiy - Candidate of Technical Sciences, Leading Design Engineer, Omsk Engine Design Bureau — Branch of the Public Joint Stock Company “UEC-Saturn”; Associate Professor of the Aircraft and Rocket Building Department, OmSTU.

Omsk, Mira Ave., 11, 644050; Omsk, Okruzhnaya Doroga St., 3, 644021

AuthorID (RSCI) 162092



References

1. Kalinovskiy A. A., Chuprynin Yu. V., Novikov A. A. Modelirovaniye i otsenka effektivnosti ezhektsionnogo otsosa pyli vykhlopnymi gazami v glushitele sel’skokhozyaystvennoy mashiny [Modeling and evaluation of efficiency of the dust ejection suction by exhaust gases in the agricultural harvester damper]. Mekhanika mashin, mekhanizmov i materialov. Mechanics of Machines, Mechanisms and Materials. 2018. No. 2 (43). P. 17–23. EDN: XQCTID. (In Russ.).

2. Lazarev E. A., Salov A. Yu. Soglasovaniye rezhimov raboty i kharakteristika sistemy «turbokompressor–okhladitel’ezhektor» v dizele s nadduvom [Characteristic of turbocharger-intercooler-ejector system, an at diesel engine]. Vestnik Yuzhno-Ural’skogo gosudarstvennogo universiteta. Seriya «Mashinostroyeniye». Bulletin of the South Ural State University. Series “Mechanical Engineering Industry”. 2016. Vol. 16, no. 4. P. 23–31. DOI: 10.14529/engin160403. EDN: XDYESH. (In Russ.).

3. Arkadov Yu. K. Novyye gazovyye ezhektory i ezhektsionnyye protsessy [New gas ejectors and ejection processes]. Moscow, 2001. 333 p. ISBN 5-94052-025-1. (In Russ.).

4. Loytsyanskiy L. G. Mekhanika zhidkosti i gaza [Fluid and gas mechanics]. 7th ed., rev. Moscow, 2003. 840 s. ISBN 5-7107-6327-6. (In Russ.).

5. Rostami zadeh E., Majd A., Arbabian S. Effects of Electromagnetic Fields on Seed Germination in Urtica Dioica L. International Journal of Scientific & Technology Research. 2014. Vol. 3, Issue 4. P. 365–368.

6. Kartas S. S., Panchenko V. I., Aleksandrov Yu. B. Chislennoye modelirovaniye i eksperimental’noye issledovaniye zhidkost’-zhidkostnogo ezhektora s krivolineynym nachal’nym uchastkom kamery smesheniya i s pryamolineynoy kameroy smesheniya [Numerical modeling and experimental research of a liquid-liquid ejectors with a curved initial mixing chamber area and with direct mixing camera]. Vestnik Permskogo natsional’nogo issledovatel’skogo politekhnicheskogo universiteta. PNRPU Aerospace Engineering Bulletin. 2020. No. 60. P. 88–95. DOI: 10.15593/2224-9982/2020.60.10. EDN: SAQCAR. (In Russ.).

7. Kuznetsov V. I., Makarov V. V., Shander A. Yu. Fiziko-matematicheskaya model’ rabochego protsessa struynogo ezhektora [Physical and mathematical model of working process of jet ejector]. Omskiy nauchnyy vestnik. Ser. Aviatsionno-raketnoye i energeticheskoye mashinostroyeniye. Omsk Scientific Bulletin. Series Aviation-Rocket and Power Engineering. 2021. Vol. 5, no. 3. P. 75–82. DOI: 10.25206/2588-0373-2021-5-3-75-82. EDN: LNTRTZ. (In Russ.).

8. Abramovich G. N. Prikladnaya gazovaya dinamika. V 2 ch. [Applied gas dynamics. In 2 parts]. 5th ed., rev. and suppl. Moscow, 1991. Part 1. 600 p. ISBN 5-02-014015-5. (In Russ.).

9. Sankar L. N., Bharadvaj B. K., Tsung F.-L. Three-dimensional Navier–Stoces/full-potantional coupled analysis for viscous transonic flow. AJAA Journal. 1993. Vol. 31, no. 10. P. 1857–1864. DOI: 10.2514/3.11859.

10. Kallinderis Y., Ward S. Prismatic grid generation for three-dimensional complex geometries. AJAA Journal. 1993. Vol. 31, no. 10. P. 1850–1856. DOI: 10.2514/3.11858.

11. Uss A. Yu., Chernyshev A. V., Atamasov N. V. Razrabotka metoda rascheta i sozdaniye vikhrevogo struynogo ustroystva dlya upravleniya potokami gaza. [Development of calculation method and creation of vortex jet device to control gas flow]. Omskiy nauchnyy vestnik. Ser. Aviatsionno-raketnoye i energeticheskoye mashinostroyeniye Omsk Scientific Bulletin. Series Aviation-Rocket and Power Engineering. 2019. Vol. 3, no. 2. P. 78–86. DOI: 10.25206/2588-0373-2019-3-2-78-86. EDN: DNZZBK. (In Russ.).


Review

For citations:


Kuznetsov V.I., Kuznetsova I.O., Shpakovskiy D.D. Criteria base of the jet ejector operating process. Omsk Scientific Bulletin. Series Aviation-Rocket and Power Engineering. 2025;9(2):78-85. (In Russ.) https://doi.org/10.25206/2588-0373-2025-9-2-78-85. EDN: WBOYVJ

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ISSN 2588-0373 (Print)
ISSN 2587-764X (Online)