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Titel:

Shock driven bubble collapse near tissue like material for drug delivery processes

Dokumenttyp:
Zeitschriftenaufsatz
Autor(en):
Wang, Wanli; Lunkov, Aleksandr; Adami, Stefan; Adams, Nikolaus A.
Abstract:
The paper demonstrates the phenomenology of shock-driven air bubble and triple-layer microbubble collapse near tissue-like gelatin by direct numerical simulation. We validate the numerical method by comparison with experimental data for water jet generated by shock-driven bubble collapse near a gelatin interface. Coupled dynamics of bubble collapse and gelatin deformation is revealed during the early stages of the process. As the shock wave overpressure decreases, the coupling effect becomes mor...     »
Stichworte:
Computational fluid dynamics, Shock waves, Bubble dynamics
Dewey Dezimalklassifikation:
620 Ingenieurwissenschaften
Zeitschriftentitel:
Physics of Fluids
Jahr:
2024
Band / Volume:
36
Heft / Issue:
11
Nachgewiesen in:
Scopus
Sprache:
en
Volltext / DOI:
doi:10.1063/5.0235543
WWW:
https://pubs.aip.org/aip/pof/article/36/11/116102/3318620/Shock-driven-bubble-collapse-near-tissue-like
Verlag / Institution:
AIP Publishing
E-ISSN:
1070-66311089-7666
Hinweise:
Funding text W.W. is supported by the Sino-German (CSC-DAAD) Postdoc Scholarship Program (No. 57607866). N.A.A: acknowledges funding from the European Research Council (ERC) under the European Union Horizon Europe research and innovation program (project no. 101094463). The authors gratefully acknowledge the Gauss Centre for Supercomputing e.V. for funding this project by providing computing time on the GCS Supercomputer Super-MUC-NG at LeibnizRechenzentrum.
Publikationsdatum:
01.11.2024
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