Researchers create simpler models to predict complex fluid behaviors efficiently.
― 6 min read
Cutting edge science explained simply
Researchers create simpler models to predict complex fluid behaviors efficiently.
― 6 min read
Researchers unveil the mechanics behind the swimming of tiny organisms using cilia and flagella.
― 7 min read
Spinners interact and synchronize on a vibrating liquid surface, revealing fascinating behaviors.
― 5 min read
A look at how the BGK model simplifies the study of gas behavior.
― 5 min read
Exploring how elastic turbulence improves mixing in viscoelastic fluids.
― 5 min read
This study explores how medical foam absorbs water to stop bleeding during emergencies.
― 6 min read
This article explores unique properties of solutions in quasilinear elliptic equations.
― 5 min read
Examining how equations model complex systems over time.
― 4 min read
New insights into particle dynamics in confined fluids and their applications.
― 6 min read
A look into how machine learning improves the study of material flow.
― 6 min read
Introducing TFPONets for solving interface problems with deep learning techniques.
― 6 min read
Introducing ComFNO, a method for tackling complex differential equations using deep learning.
― 5 min read
Examining how rotation influences fluid stability between moving plates.
― 4 min read
Study reveals unexpected interactions of particles in viscous fluids near walls.
― 5 min read
Exploring how liquid droplets move on solid surfaces and the effects of temperature and friction.
― 6 min read
Examining the interplay of fluids, magnetism, and spin in high-energy environments.
― 6 min read
This study reveals how droplets form intricate patterns during evaporation.
― 6 min read
Exploring the breakup of liquid jets and its implications for various industries.
― 6 min read
A new method enhances moisture representation in weather models.
― 4 min read
A new method speeds up fluid simulations using a blend of machine learning and CFD.
― 6 min read
This research advances modeling of turbulent flows in rotating systems.
― 5 min read
New insights into controlling tiny particles for various applications.
― 6 min read
Study reveals how critical Casimir forces levitate colloids above patterned surfaces.
― 5 min read
New AI techniques improve fluid dynamics modeling accuracy and efficiency.
― 6 min read
A look into how different fluid components interact within superfluids.
― 6 min read
Learn how viscoelastic fluids behave in various applications.
― 5 min read
Examining long-time tails in classical and quantum particle interactions.
― 6 min read
This study examines how collapsing vapor bubbles affect nearby solid materials.
― 5 min read
This study explores how particles influence fluid movement in turbulent conditions.
― 5 min read
This study investigates the interplay between fluids and flexible structures.
― 7 min read
Machine learning refines predictions for gas turbine performance and efficiency.
― 5 min read
Combining neural and diffusion models improves accuracy in turbulence predictions.
― 6 min read
Research reveals new methods for studying complex fluid behaviors under rapid rotation.
― 5 min read
This study examines how correlation functions reveal system behaviors in response to environmental changes.
― 7 min read
A look into the least action principle and its role in physics.
― 5 min read
This study highlights the effects of heating direction on carbon dioxide flow and heat transfer.
― 5 min read
A look at how intruders affect granular materials and their movement.
― 4 min read
Exploring chaotic behavior in fluid dynamics through Taylor-Couette flow findings.
― 4 min read
Explore the role of Lattice Boltzmann Method in studying multiphase flows.
― 5 min read
A novel approach unites solid and fluid dynamics through particle flow maps.
― 5 min read