Yue Sun @yuesun.bsky.social · 12/03/2026If you're coming to Denver for the APS March Meeting, or if you're around Denver, please join us for Squishy Science Sunday! We will have a live demo of paper marbling and explore the "marbelous" fluid dynamics! Mar. 15, 10am–2:30pm Denver Museum of Nature and Science summit.aps.org/events/EVS-G... 020
Reposted by Yue SunFani Derveni @faniderveni.bsky.social · 15/09/2025🚀The Scalable MetaStructures Laboratory at Cornell University is hiring! 📅Preferred start: Spring or Fall 2026 📌Deadline for official Cornell application: November 1, 2025 📎Application details at Fani Derveni’s LinkedIn: link post in the comments 112
Yue Sun @yuesun.bsky.social · 30/01/2025🎉 Happy to share that my longest Ph.D. project, “A fully-integrated lattice Boltzmann method for fluid–structure interaction”, is online! We develop a fully Eulerian method to simulate many squishy solids in fluids. (1/3) 📑 Paper: authors.elsevier.com/c/1kWjb508I1-63 👩🏻💻 Code: github.com/yue-sun/lbrmt 2113
Yue Sun @yuesun.bsky.social · 22/11/2024Our paper on our 2023 GFM video "The hydrodynamics of marbling art" is online! Watch the fluid dynamics in motion in the video linked in the paper. And thanks to my collaborators John Bush, @sespagnolie.bsky.social, and Chris Rycroft! doi.org/10.1103/Phys...doi.orgHydrodynamics of marbling artThis paper is associated with a video winner of a 2023 American Physical Society's Division of Fluid Dynamics (DFD) Milton van Dyke Award for work presented at the DFD Gallery of Fluid Motion. The ori... 0205
Reposted by Yue SunGiovanni Bordiga @giovannibordiga.bsky.social · 22/11/2024📣 Check out our latest paper on how textile hinges enable mechanism-like behaviors in large kirigami, providing a scalable platform for kinematic-based shape-morphing designs (even 3D). 📜 Paper: doi.org/10.1002/adfm... (no paywall arxiv.org/abs/2408.16059) 👨💻 Repository: github.com/bertoldi-col...doi.orgTextile Hinges Enable Extreme Properties of Kirigami MetamaterialsTextile hinges provide a scalable platform for creating kirigami metamaterials with mechanism-like behaviors, bridging the gap between computationally based kinematic design strategies and existing f.... 0112