Improvement of the central ejector efficiency under nonoptimal operating modes

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Authors:

A.H. Butenko, Cand. Sci. (Tech.), Associate Professor, State Higher Educational Institution “Odessa National Polytechnic University”, Senior Lecturer of the Department of Applied Ecology and Fluid Dynamics, Odessa, Ukraine.

S.Yu. Smyk, State Higher Educational Institution “Odessa National Polytechnic University”, Senior Instructor of the Department of Applied Ecology and Fluid Dynamics, Odessa, Ukraine.

Abstract:

Purpose. The study aimed the improvement of thе central ejector efficiency under nonoptimal operating modes, in particular low coefficients of ejection.

Methodology. The purpose of the study was implemented by means of mathematical modeling in the SOLID WORKS COSMOS FLO software environment and by experimental studies on the physical model.

Findings. The data about kinematic structure of the stream in the mixing chamber of the central ejector were obtained. They showed that at low ratios of ejection the separation of the flow away from the walls occurs. A method of eliminating separation zones – replacing of their existence areas by hard surfaces was proposed.

Originality. It was proved that separation zones arise under small coefficients of ejection in the mixing chamber of the central ejector. They are characterized by a high level of dissipative processes. On maintaining of these processes some part of mechanical energy of the stream is expended, leading to a decrease in efficiency of the ejector as a whole. The conditions of separation zones and their geometrical parameters were defined. It made possible to replace the area of their existence by solids introduced into the mixing chamber of the ejector. Mathematical and physical modeling showed improving of ejectors efficiency with replacement bodies within a wide range of operating modes.

Practical value. Central ejectors are widely used in various industries. Their main drawback is poor performance. This is especially true when working in the low coefficients of ejection. The conducted studies have provided a way to improve efficiency of ejectors working in such conditions. The method is simple, economical, does not require additional operating costs; it can be implemented by the staff in manufacturing.

References:

1. Бутенко А.Г. Комбинированная система очистки воздуха / А.Г. Бутенко, С.Ю. Смык // Энерготехнологии и ресурсосбережение. – 2010. – №. 6. – C. 66–69.

Butenko, A.G. (2010), “Combined air-filtering system”, Energotehnologii i resursosberezhenie, no. 6, pp. 66–69.

2. Бутенко А.Г. Гідравлічний розрахунок комбінованої системи очищення повітря / А.Г. Бутенко, С.Ю. Смык // Труды Одесского политехнического университета: Научный и производственно-практический сборник по техническим и естественным наукам. – 2011. – Вып. 1(35). – C. 190–194.

Butenko, A.G. and Smyk, S.Yu. (2011), “Hydraulic calculation of the combined air cleaning system”, Trudy Odesskogo Politehnicheskogo Universiteta, no. 1(35), pp. 190–194.

3. SolidWorks. Компьютерное моделирование в инженерной практике /[ Алямовский А.А., Собачкин А.А, Одинцов Е.В. и др.] – СПб.: ВХВ-Петербург, 2005. – 800 с.

Alyamovskiy, A.A., Sobachkin, A.A., and Odintsov, Ye.V. (2005), Kompyuternoye modelirovaniye v inzhenernoy practike [SolidWorks. Computer Modeling in Engineering Practice], VHV – Peterburg, St.-Petersburg, Russia.

4. Дунчевский Г.М. Гидравлический расчет гидроструйных насосов и систем. Теория, справочный материал, программное обеспечение.Ч.1. / Г.М. Дунчевский // Одесса: ОПИ, 1992. – 66 с.

Dunchevsky, G.M. (1992), [Hydraulic Calculation Jetting Pumps and Systems. Theory, Reference Material, Software], Part 1., OPI, Odessa, Ukraine.

5. Интенсификация работы газовой турбины за счет совершенствования аэродинамических процессов / В.А. Арсирий, Е.ААрсирий, А.С. Мазуренко, В.И. Кравченко // Forum Energetykow GRE-2012, Opole, Poland, 2012. – С.25–30.

Arsiry, V.A., Arsiry, E.A. and Mazurenko, A.S. “Intensification of the gas turbine by improving aerodynamic processes”, Forum Energetykow GRE-2012, Opole, Poland, pp. 25–30.

 

6. Arsiry, V. and Arsiriy, E. (2008), “Reduction of Noise and Vibration of Turbo Machinery due to Improvement of Flowing Part”, International Symposium on Compressor & Turbine Flow Systems – Theory & Application Areas “SYMKOM’08”, Institute of Turbomachinery Technical University of Lodz, September, pp. 15–17.

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ISSN (print) 2071-2227,
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