Bubble kinematics in a sheared foam
Yuhong Wang, Kapilanjan Krishan, Michael Dennin
Abstract
We characterize the kinematics of bubbles in a sheared two-dimensional foam using statistical measures. We consider the distributions of both bubble velocities and displacements. The results are discussed in the context of the expected behavior for a thermal system and simulations of the bubble model. There is general agreement between the experiments and the simulation, but notable differences in the velocity distributions point to interesting elements of the sheared foam not captured by prevalent models.
Create a lesson
Related papers
Optimal Transport of an Anisotropic Tracer in Dense Active Suspensions
Chandranshu Tiwari, Sunil P. Singh
Linear stability and viscoelastic response in weakly jammed frictional granular systems
Masanari Shimada, Yusuke Hara, Shihori Koyama et al.
Experimental Observation of Mesoscopic Dynamic Fluctuations in Water-Alcohol Mixtures
Yukio Kajihara, Nanako Shibata, Masanori Inui1
Geometry-Controlled Dynamic Tensiometry Resolves Intrinsic Surfactant Adsorption Kinetics
Camille Brigodiot, Boxin Deng, Christine Dalmazzone et al.
Shape Evolution and Dynamics of Deformable Ring
Arun Kumar, Partha Sarathi Mondal, Pritha Dolai et al.
Tunable Pathway Selection in Coupled Multistable Snap-Through Systems
Weicheng Huang, Ke Huang, Jiaying Zhang et al.