Razvoj i primena integralnih matematičko - eksperimentalnih metoda modalne analize i strukturne modifikacije u optimizaciji dinamičkog ponašanja sistema slobodnih i međusobno povezanih rotirajućih lopatica

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Razvoj i primena integralnih matematičko - eksperimentalnih metoda modalne analize i strukturne modifikacije u optimizaciji dinamičkog ponašanja sistema slobodnih i međusobno povezanih rotirajućih lopatica (en)
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Razvoj i primena integralnih matematičko - eksperimentalnih metoda modalne analize i strukturne modifikacije u optimizaciji dinamičkog ponašanja sistema slobodnih i međusobno povezanih rotirajućih lopatica (sr_RS)
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Publications

INVESTIGATION OF THE TURBULENT SWIRL FLOWS IN A CONICAL DIFFUSER

Benišek, Miroslav; Ilić, Dejan; Čantrak, Đorđe; Božić, Ivan

(Univerzitet u Beogradu - Institut za nuklearne nauke Vinča, Beograd, 2010)

TY  - JOUR
AU  - Benišek, Miroslav
AU  - Ilić, Dejan
AU  - Čantrak, Đorđe
AU  - Božić, Ivan
PY  - 2010
UR  - https://machinery.mas.bg.ac.rs/handle/123456789/1132
AB  - Results of the theoretical and experimental investigations of the turbulent mean swirl flows characteristics change along straight conical diffuser of incompressible fluid (air) are presented in this paper. The main swirl flow characteristics review is given. In addition: the specific swirl flow energy, the energy loss, the mean circulation, the swirl flow parameter, the ratio between the swirl and axial flow loss coefficients change along the diffuser are presented. Among other values: the Boussinesq number, outlet Coriolis coefficient and swirl flow loss coefficient dependences on inlet swirl flow parameter are also given. The swirl flow specific energy and outlet Coriolis coefficient calculation procedure are presented in this paper, as well as experimental test bed and measuring procedures. The swirl flow fields were induced by the axial fan impeller. Various swirl parameters were achieved by the impeller openings and rotational speeds.
PB  - Univerzitet u Beogradu - Institut za nuklearne nauke Vinča, Beograd
T2  - Thermal Science
T1  - INVESTIGATION OF THE TURBULENT SWIRL FLOWS IN A CONICAL DIFFUSER
EP  - S154
SP  - S141
VL  - 14
DO  - 10.2298/TSCI100630026B
ER  - 
@article{
author = "Benišek, Miroslav and Ilić, Dejan and Čantrak, Đorđe and Božić, Ivan",
year = "2010",
abstract = "Results of the theoretical and experimental investigations of the turbulent mean swirl flows characteristics change along straight conical diffuser of incompressible fluid (air) are presented in this paper. The main swirl flow characteristics review is given. In addition: the specific swirl flow energy, the energy loss, the mean circulation, the swirl flow parameter, the ratio between the swirl and axial flow loss coefficients change along the diffuser are presented. Among other values: the Boussinesq number, outlet Coriolis coefficient and swirl flow loss coefficient dependences on inlet swirl flow parameter are also given. The swirl flow specific energy and outlet Coriolis coefficient calculation procedure are presented in this paper, as well as experimental test bed and measuring procedures. The swirl flow fields were induced by the axial fan impeller. Various swirl parameters were achieved by the impeller openings and rotational speeds.",
publisher = "Univerzitet u Beogradu - Institut za nuklearne nauke Vinča, Beograd",
journal = "Thermal Science",
title = "INVESTIGATION OF THE TURBULENT SWIRL FLOWS IN A CONICAL DIFFUSER",
pages = "S154-S141",
volume = "14",
doi = "10.2298/TSCI100630026B"
}
Benišek, M., Ilić, D., Čantrak, Đ.,& Božić, I.. (2010). INVESTIGATION OF THE TURBULENT SWIRL FLOWS IN A CONICAL DIFFUSER. in Thermal Science
Univerzitet u Beogradu - Institut za nuklearne nauke Vinča, Beograd., 14, S141-S154.
https://doi.org/10.2298/TSCI100630026B
Benišek M, Ilić D, Čantrak Đ, Božić I. INVESTIGATION OF THE TURBULENT SWIRL FLOWS IN A CONICAL DIFFUSER. in Thermal Science. 2010;14:S141-S154.
doi:10.2298/TSCI100630026B .
Benišek, Miroslav, Ilić, Dejan, Čantrak, Đorđe, Božić, Ivan, "INVESTIGATION OF THE TURBULENT SWIRL FLOWS IN A CONICAL DIFFUSER" in Thermal Science, 14 (2010):S141-S154,
https://doi.org/10.2298/TSCI100630026B . .
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