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
S9-4: Interaction with walls (wetting, rebound, splash)
Time:
Thursday, 15/May/2025:
10:30am - 12:30pm

Session Chair: Sébastien Tanguy
Location: Spot


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Presentations
10:30am - 10:50am

Numerical Investigation of a High-speed Droplet Impact onto a Rigid Surface

Erin Burrell, Eric Johnsen

University of Michigan, United States of America

Burrell-Numerical Investigation of a High-speed Droplet Impact onto a Rigid Surface-128.pdf


10:50am - 11:10am

Numerical Investigation on Effect of Liquid Viscosity in Droplet Impact on Surfaces with Different Wettability

Tianyi Wei, Kenya Kitada, Ryoichi Kurose

Kyoto University, Japan

Wei-Numerical Investigation on Effect of Liquid Viscosity-381.pdf


11:10am - 11:30am

Effect of stiffness of the base on impact-induced liquid jet velocity

Ishin Kikuchi1, Yuto Yokoyama2, Hiroaki Kusuno3, Hiroya Watanabe1, Kohei Yamagata1, Yoshiyuki Tagawa1

1Tokyo University of Agriculture and Technology, Japan; 2Okinawa Institute of Science and Technology Graduate University, Japan; 3Kansai University, Japan

Kikuchi-Effect of stiffness of the base on impact-induced liquid jet velocity-383.pdf


11:30am - 11:50am

Numerical investigations of droplet impact on solid surfaces with high contact angle hysteresis

Pengfei Zhao1, Wei Ding1, Uwe Hampel1,2

1Helmholtz-Zentrum Dresden-Rossendorf (HZDR), Institute of Fluid Dynamics, Germany; 2Technische Universität Dresden, Institute of Power Engineering, Germany

Zhao-Numerical investigations of droplet impact on solid surfaces with high contact angle-415.pdf


11:50am - 12:10pm

Drop impact onto a very thin liquid film

Guillaume Riboux, José Manuel Gordillo

Universidad de Sevilla, Spain

Riboux-Drop impact onto a very thin liquid film-441.pdf


12:10pm - 12:30pm

Investigation on Complex Breakup in Droplet Impact on an Inclined Superhydrophobic Surface

Kuan-Ling Huang, Meng-Rong Wen, Hsiang-Chi Hsieh

National Central University, Taiwan

Huang-Investigation on Complex Breakup in Droplet Impact-551.pdf


 
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