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Titel:

Direct numerical simulation of spherical and non-spherical bubble dynamics using the ALPACA compressible multiphase flow solver

Dokumenttyp:
Zeitschriftenaufsatz
Autor(en):
Nagy, Dániel; Adami, Stefan; Hegedűs, Ferenc
Abstract:
Bubbles play a crucial role in various engineering and scientific applications, ranging from sonochemistry and ultrasonic water treatment to medical procedures and cavitation erosion. The simulation of complex bubble dynamics phenomena such as acoustically driven non-spherical oscillations requires both the accurate calculation of inertia and capillary forces. This paper presents a comprehensive study using the ALPACA compressible multiphase flow solver to simulate both spherical and non-spheric...     »
Stichworte:
Multiphase flow Compressible flow Interface capturing Surface instability Surface modes Sonochemistry
Dewey Dezimalklassifikation:
620 Ingenieurwissenschaften
Zeitschriftentitel:
International Journal of Multiphase Flow
Jahr:
2025
Seitenangaben Beitrag:
105287
Nachgewiesen in:
Scopus
Sprache:
en
Volltext / DOI:
doi:10.1016/j.ijmultiphaseflow.2025.105287
Verlag / Institution:
Elsevier BV
E-ISSN:
0301-9322
Hinweise:
Acknowledgment This research was supported by the EKÖP, Hungary funded by the National Research Development and Innovation Fund under grant number EKÖP-24-3-BME-84. The authors gratefully acknowledge the Gauss Centre for Supercomputing e.V. (www.gauss-centre.eu ) for funding this project by providing computing time on the GCS Supercomputer SuperMUC-NG at Leibniz Supercomputing Centre (www.lrz.de). Project no. TKP-6-6/PALY-2021 has been implemented with the support provided by the Ministry of C...     »
Eingereicht (bei Zeitschrift):
07.01.2025
Angenommen (von Zeitschrift):
13.05.2025
Publikationsdatum:
30.05.2025
TUM Einrichtung:
Lehrstuhl für Aerodynamik und Strömungsmechanik
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