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The search for an appropriate condensation model to simulate wet steam transonic flows

  • Hakim Sabzevari University
  • Andong National University

Wyniki badań: Wkład do czasopismaArtykułrecenzja

14 Cytowania z bazy Scopus

Abstrakt

Purpose: The purpose of this study is to model steam condensing flows through steam turbine blades and find the most suitable condensation model to predict the condensation phenomenon. Design/methodology/approach: To find the most suitable condensation model, five nucleation equations and four droplet growth equations are combined, and 20 cases are considered for modelling the wet steam flow through steam turbine blades. Finally, by the comparison between the numerical results and experiments, the most suitable case is proposed. To find out whether the proposed case is also valid for other boundary conditions and geometries, it is used to simulate wet steam flows in de Laval nozzles. Findings: The results indicate that among all the cases, combining the Hale nucleation equation with the Gyarmathy droplet growth equation results in the smallest error in the simulation of wet steam flows through steam turbine blades. Compared with experimental data, the proposed model’s relative error for the static pressure distribution on the blade suction and pressure sides is 2.7% and 2.3%, respectively, and for the liquid droplet radius distribution it totals to 1%. This case is also reliable for simulating condensing steam flows in de Laval nozzles. Originality/value: The selection of an appropriate condensation model plays a vital role in the simulation of wet steam flows. Considering that the results of numerical studies on condensation models in recent years have not been completely consistent with the experiments and that there are still uncertainties in this field, further studies aiming to improve condensation models are of particular importance. As condensation models play an important role in simulating the condensation phenomenon, this research can help other researchers to better understand the purpose and importance of choosing a suitable condensation model in improving the results. This study is a significant step to improve the existing condensation models and it can help other researchers to gain a revealing insight into choosing an appropriate condensation model for their simulations.

Język oryginałuangielski
Strony (od–do)2853-2876
Liczba stron24
CzasopismoInternational Journal of Numerical Methods for Heat and Fluid Flow
Tom33
Numer wydania8
Identyfikatory DOI
Status publikacjiOpublikowano - 22 cze 2023

Obszary tematyczne ASJC Scopus

  • Mechanika obliczeniowa
  • Inżynieria lotnicza i kosmiczna
  • Inżynieria (różne)
  • Inżynieria mechaniczna

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