Conference Agenda

Overview and details of the sessions of this conference. Please select a date or location to show only sessions at that day or location. Please select a single session for detailed view (with abstracts and downloads if available).

 
 
Session Overview
Session
S9-7: Cavitation/Nucleation
Time:
Thursday, 15/May/2025:
10:30am - 12:30pm

Session Chair: Keita Ando
Location: Ariane 1


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Presentations
10:30am - 10:50am

Compressible large eddy simulations for sheet-to-cloud cavity transition on a NACA0015 hydrofoil

Seungnam Kim1,2, Krishnan Mahesh1

1Center for Naval Research and Education (CNRE), University of Michigan Ann Arbor; 2Currently at Hongik University, S. Korea

Kim-Compressible large eddy simulations for sheet-to-cloud cavity transition-1267.pdf


10:50am - 11:10am

TRIGGERING PHASE CHANGE IN INTERFACE-CAPTURING SCHEMES

José Rodolfo Chreim1, Mauro Rodriguez Jr.2, Tim Colonius1

1California Institute of Technology, United States of America; 2Brown University, United States of America

Chreim-TRIGGERING PHASE CHANGE IN INTERFACE-CAPTURING SCHEMES-1031.pdf


11:10am - 11:30am

Effect of the heated wall on the cavitation phenomenon inside a 2D nozzle

Ippei Oshima1, Noritsune Kawaharada2, Jun Ishimoto1

1Tohoku University, Japan; 2National Traffic Safety and Environment Laboratory, Japan

Oshima-Effect of the heated wall on the cavitation phenomenon inside a 2D nozzle-1012.pdf


11:30am - 11:50am

Investigation of cloud cavitation for a super-hydrophobic foil

Céline Gabillet

IRENav, France

Gabillet-Investigation of cloud cavitation for a super-hydrophobic foil-845.pdf


11:50am - 12:10pm

An investigation of the effect of surface nanobubbles on the cavitation threshold of walls

chang chen, yawen gao, chao sun

Center for Combustion Energy, Key laboratory for Thermal Science and Power Engineering of Ministry of Education, Department of Energy and Power Engineering, Tsinghua

chen-An investigation of the effect of surface nanobubbles-641.pdf


12:10pm - 12:30pm

Numerical study of Cavitating flow in hydrofoil and propeller using DES approach

Rahul Jayakumar, Sandeep Mouvanal, Midhun Murali Mohan

Flowthermolab Ltd, United Kingdom

Jayakumar-Numerical study of Cavitating flow in hydrofoil and propeller using DES-1130.pdf


 
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