Physical Review Fluids
Journal
Physical Review Fluids (PRFluids) is dedicated to publishing innovative research that will significantly advance the fundamental understanding of fluid dynamics. PRFluids embraces both traditional fluid dynamics topics and newer areas, such as bio-related fluid dynamics, micro- and nanoscale flows, fluid mechanics of complex fluids and soft materials, and geophysical and environmental flows. Source
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| Scope | National |
|---|---|
| Language | English |
| Country | United States of America |
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| Accepts contributed content | Yes |
Recent Articles
Search ArticlesCapturing multiscale interactions in fluid flow via Lagrangian coherent structures and modal analysis
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Noise-robust temporal super-resolution of three-dimensional turbulent flow using an attention-enhanced convolutional LSTM network
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Transition from dripping to jetting of a film flowing down a vertical fiber
Film flow on vertical fibers has been studied for the past 30 years. However, it is only recently that the influence of the nozzle on the film and bead dynamics has been demonstrated. Consequently, similar to the regimes observed with a faucet, both a dripping and a jetting regime have been reported for film flow on fibers.
Scalar and momentum transfer in a low-Reynolds-number channel flow after a rough-to-smooth step change
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Cascade of mesostrophy in turbulence with reduced vortex stretching
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Statistics of energy dissipation rate and enstrophy in high-resolution direct numerical simulation of turbulence in a periodic box
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Criticality of the viscous to inertial transition near jamming in non-Brownian suspensions
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How elasticity affects bubble pinch-off
The pinch-off of bubbles in viscoelastic liquids is a fundamental process that has received little attention compared to viscoelastic drop pinch-off. While these processes exhibit qualitative similarities, the dynamics of the pinch-off process are significantly different. When a drop of a dilute polymer solution pinches off, a thread is known to develop that prevents breakup due to the diverging polymer stresses.
Impact of saturation edge and breakthrough effects on colloid distribution during slow drying in a thin porous medium
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Interaction between small particles and quantum vortex lines in superfluid He II thermal counterflow
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