In this @PhysRevFluids paper, we quantify numerically the Stokes drift and Eulerian viscous streaming contributions to the Lagrangian mean flow generation, offering new insights into orbital sloshing wave dynamics beyond traditional inviscid models. https://t.co/NuAUddtgr1
We are pleased to announce that
"Quasi-linear homogenization for large-inertia laminar transport across permeable membranes" by Kevin Wittkowski, Alberto Ponte, Pier Giuseppe Ledda and Giuseppe Antonio Zampogna has been published in @JFluidMech !
https://t.co/ThIpW0nBKY
🚀 Internship Opportunity: Data-based Control of Turbulent Flows Using Tools from Statistical Physics
Passionate about aerospace engineering and research? Join us at @onera_fr! You'll explore techniques for feedback control theory of turbulent flows:
https://t.co/ZVNrX1gBKi
A bubbles is not just trapped air, it’s a tiny testament to the complex and beautiful mechanics of our natural world. Our entry to @apsfluiddynamic Gallery of Fluid Motion based on our work on Galloping Bubbles with @saifulitamim and @PhysMathLab is live!
https://t.co/fiegriJCzd
Combining methods from statistical mechanics and machine learning with data from highly resolved turbulence simulations, a low-dimensional dynamical model is constructed that successfully captures the hallmarks of small-scale turbulence https://t.co/xh7nZqZv2G
🚀 Internship Opportunity: Data-based Control of Turbulent Flows Using Tools from Statistical Physics
Passionate about aerospace engineering and research? Join us at @onera_fr! You'll explore techniques for feedback control theory of turbulent flows:
https://t.co/ZVNrX1gBKi
🏆Didn't get the Physics Nobel Prize this year, but really excited to share that I've been named one of the #FWIS2024@FondationLOreal-@UNESCO French Young Talents alongside 34 amazing young researchers! This award recognizes my research on deep learning theory #WomenInScience 👩💻
Newbies but goldies 😌: “Keep the Momentum: Conservation Laws beyond Euclidean Gradient Flows” with @gabrielpeyre and @RemiGribonval.
We study conservation laws during the (euclidean or not) gradient or momentum flow of neural networks.
https://t.co/Im6VH3QVkg
In this @PhysRevFluids paper, we study a randomly forced flow past the onset of a pitchfork bifurcation. After reducing the dynamics to its normal form, tools from statistical mechanics are applied to determine transition statistics. https://t.co/RFIch4nWjn
Swirling with a rotating magnetic field! In their new paper, Horstmann et al. study interfacial waves induced by rotating magnetic fields in two-phase swirling flows. Low-frequency RMFs drive wave patterns resembling hyperbolic paraboloids. https://t.co/w2mEKRnxTj #fluiddynamics
Numerical study on buoyancy-driven annular disks reveals how varying central hole diameter impacts stability and trajectories in free-fall. From vortex rings to recirculating regions, explore the fascinating dynamics with Corsi & co-authors! https://t.co/H7MWWOGBau #fluiddynamics
Check out our @PhysRevFluids paper, where we present a physics-inspired mathematical model based on linear eigenmode projections to solve the nonlinear relaxation dynamics of liquid oscillations with hysteretic contact line motions. @lfmi_epfl@APSphysics https://t.co/oJEOmBp9YN
The pinning-depinning dynamics of a circular moving contact line are studied at the single-slip resolution using a mesoscale experimental framework https://t.co/HuTz60VW5J
🌀 An Album of Computational Fluid Motion 🌀
👉 https://t.co/ntaSJSod7U
This website is an ongoing effort towards developing a CFD counterpart of the classic 1982 book “An Album of Fluid Motion” by professor Milton van Dyke.
🌎 Source: Stein Stoter
Read a new #openaccess article in #JFMRapids: "Boundary-layer approach to the linear karren instability" by Simeon Djambov and François Gallaire.
📚 https://t.co/TBXmcuPx4D
#OA#JFM#JFMRapids
Reflecting on another great year of fluids research. In our 2023 #YearInReview, we celebrate groundbreaking research, stellar collaborations, and the unwavering passion of our community. #fluiddynamics
Music from #Uppbeat: https://t.co/3ykTXhSjFI, License code: WLRGGETAMHAH3VSP