Fluid flow

Pore size distribution effects on electrokinetic phenomena in semipermeable membranes

Engineering / Membrane Science / Theory / Ultrafiltration / Membrane transport / Membrane Separation / Fluid flow / CHEMICAL SCIENCES / Surface Charge / Flow Rate / Electroosmosis / Streaming Potential / Zeta Potential / Membrane Separation / Fluid flow / CHEMICAL SCIENCES / Surface Charge / Flow Rate / Electroosmosis / Streaming Potential / Zeta Potential

Direct measurement of porous media local hydrodynamical permeability using gas MRI

Cognitive Science / Biomedical Engineering / Petroleum / Magnetic Resonance Imaging / Nuclear Magnetic Resonance / Rheology / MRI / Porosity / Permeability / Porous Media / Measurement / Technique / Three Dimensional Imaging / Fluid flow / Spatial Distribution / Clinical Sciences / Theoretical Models / Porous Medium / Flow Rate / Nuclear Magnetic Resonance Imaging / Heterogeneous porous media / Magnetic resonance image / Rheology / MRI / Porosity / Permeability / Porous Media / Measurement / Technique / Three Dimensional Imaging / Fluid flow / Spatial Distribution / Clinical Sciences / Theoretical Models / Porous Medium / Flow Rate / Nuclear Magnetic Resonance Imaging / Heterogeneous porous media / Magnetic resonance image

Direct measurement of porous media local hydrodynamical permeability using gas MRI

Cognitive Science / Biomedical Engineering / Petroleum / Magnetic Resonance Imaging / Nuclear Magnetic Resonance / Rheology / MRI / Porosity / Permeability / Porous Media / Measurement / Technique / Three Dimensional Imaging / Fluid flow / Spatial Distribution / Clinical Sciences / Theoretical Models / Porous Medium / Flow Rate / Nuclear Magnetic Resonance Imaging / Heterogeneous porous media / Magnetic resonance image / Rheology / MRI / Porosity / Permeability / Porous Media / Measurement / Technique / Three Dimensional Imaging / Fluid flow / Spatial Distribution / Clinical Sciences / Theoretical Models / Porous Medium / Flow Rate / Nuclear Magnetic Resonance Imaging / Heterogeneous porous media / Magnetic resonance image

Chaotic-Dynamical Conceptual Model to Describe Fluid Flow and Contaminant Transport in a Fractured Vadose Zone

Environmental Science / Algorithms / Design / Nonlinear dynamics / Evaluation / Chaos Theory / Temporal dynamics / Contaminant Transport / Planning / Environmental Sciences / Transport / Geometric model / Geosciences / Spatial Heterogeneity / Chaotic Dynamics / Non Linear Dynamics / Conceptual Model / Field Experiment / Soils / Contamination / Basalt / Fluid flow / Preferential Flow / Model Evaluation / Travel Time / Spatial Variability / Action Plan / Environmental Conditions / Moisture Content / Design Evaluation / Subsurface Flow / Vadose Zone Modeling / Radioactive waste / Chaos Theory / Temporal dynamics / Contaminant Transport / Planning / Environmental Sciences / Transport / Geometric model / Geosciences / Spatial Heterogeneity / Chaotic Dynamics / Non Linear Dynamics / Conceptual Model / Field Experiment / Soils / Contamination / Basalt / Fluid flow / Preferential Flow / Model Evaluation / Travel Time / Spatial Variability / Action Plan / Environmental Conditions / Moisture Content / Design Evaluation / Subsurface Flow / Vadose Zone Modeling / Radioactive waste

A Chaotic-Dynamical Conceptual Model to Describe Fluid flow and Contaminant Transport in a Fractured Vadose zone

Environmental Science / Algorithms / Design / Decision Making / Nonlinear dynamics / Evaluation / Chaos Theory / Temporal dynamics / Contaminant Transport / Planning / Environmental Sciences / Transport / Geometric model / Geosciences / Spatial Heterogeneity / Chaotic Dynamics / Laboratory experiment / Non Linear Dynamics / Conceptual Model / Field Experiment / Soils / Contamination / Basalt / Fluid flow / Preferential Flow / Model Evaluation / Travel Time / Spatial Variability / Action Plan / Environmental Conditions / Moisture Content / Design Evaluation / Dynamic Model of WSN / Water Flow / Subsurface Flow / Vadose Zone Modeling / Experimental Data / Radioactive waste / ENVIRONMENTAL SCIENCE AND MANAGEMENT / Evaluation / Chaos Theory / Temporal dynamics / Contaminant Transport / Planning / Environmental Sciences / Transport / Geometric model / Geosciences / Spatial Heterogeneity / Chaotic Dynamics / Laboratory experiment / Non Linear Dynamics / Conceptual Model / Field Experiment / Soils / Contamination / Basalt / Fluid flow / Preferential Flow / Model Evaluation / Travel Time / Spatial Variability / Action Plan / Environmental Conditions / Moisture Content / Design Evaluation / Dynamic Model of WSN / Water Flow / Subsurface Flow / Vadose Zone Modeling / Experimental Data / Radioactive waste / ENVIRONMENTAL SCIENCE AND MANAGEMENT

Renormalized transport of inertial particles

Fluid Dynamics / Transport Properties / Numerical Simulation / Mathematical Sciences / Chaotic Dynamics / Physical sciences / Surface Waves / THERMAL DIFFUSIVITY / Fluid flow / Fluctuations / Trajectories / Ballistic Transport / Numerical computation / Velocity Field / Deflection / Asymptotic Properties / Random Field / Physical sciences / Surface Waves / THERMAL DIFFUSIVITY / Fluid flow / Fluctuations / Trajectories / Ballistic Transport / Numerical computation / Velocity Field / Deflection / Asymptotic Properties / Random Field

Near-critical CO2 liquid--vapor flow in a sub-microchannel. Part II: Flow regimes

Engineering / Multiphase Flow / Fluid and Solid interaction / Slug Flow / Fluid flow / Free Energy / Lattice Boltzmann Method / Flow Regime / Mass Conservation / Boundary Condition / Moving Contact Line / Free Energy / Lattice Boltzmann Method / Flow Regime / Mass Conservation / Boundary Condition / Moving Contact Line

Liquid-liquidtwo-phaseflowpatternsandmasstransfercharacteristicsinrectangular glassmicroreactors

Mass Transfer / Multiphase Flow / Interfacial Tension / Slug Flow / Fluid flow / Microstructures / Flow Pattern / Reynolds Number / Mass Transfer Coefficient / Microstructures / Flow Pattern / Reynolds Number / Mass Transfer Coefficient

An unsteady-state model to predict concentration polarization in commercial spiral wound membranes

Engineering / Membrane Science / Fluid flow / CHEMICAL SCIENCES / Reverse osmosis / Concentration polarization / Finite Difference / Operant Conditioning / Numerical Stability / Fouling of Membrane / Mass Balance / Concentration polarization / Finite Difference / Operant Conditioning / Numerical Stability / Fouling of Membrane / Mass Balance

Solar photoreactors comparison based on oxalic acid photocatalytic degradation

Engineering / Solar Energy / Fluid flow / Solar Collector / Lumping Kinetic Model / Oxalic acid

Relativistic mean field model for entrainment in general relativistic superfluid neutron stars

Quantum Physics / Fluid Dynamics / Relativity and Gravitation / Fluid flow / Equation of Motion / Relativistic Mean Field Theory / Nuclear matter / Relativistic Mean Field Theory / Nuclear matter

Transport of solid particles in fluids

Fluid flow / Navier Stokes / Fractional differential equation / Phase Space / Equation of Motion / Theoretical Framework / Velocity Field / Active Transport / Kinetic Equation / Theoretical Framework / Velocity Field / Active Transport / Kinetic Equation

Closed-loop fluid flow control using a low dimensional model

Mechanical Engineering / Applied Mathematics / Robust control / Drag Reduction / Real Time Control / Active Control / Model Reduction / Fluid flow / Phase Space / Time Dependent / Numerical Model / Mathematical and Computer Modelling / Numerical Analysis and Computational Mathematics / Dynamic System / Degree of Freedom / Active Control / Model Reduction / Fluid flow / Phase Space / Time Dependent / Numerical Model / Mathematical and Computer Modelling / Numerical Analysis and Computational Mathematics / Dynamic System / Degree of Freedom

Parallel distributed computing using Python

Environmental Engineering / Civil Engineering / Distributed Computing / Water resources / Finite Element / Fluid flow / Message Passing / High performance / Parallel Computer / Message Passing Interface / Large Scale / Algorithms and Data Structure / Fluid flow / Message Passing / High performance / Parallel Computer / Message Passing Interface / Large Scale / Algorithms and Data Structure

Ion exclusion by sub-2-nm carbon nanotube pores

Materials Science / Water / Membranes / Carbon / Electrostatics / Carbon Nanotube / Capillary electrophoresis / Multidisciplinary / Ion Channels / Transport / Porosity / Nanofiltration / Plasma Treatment / Hydrodynamics / Seawater / Fluid flow / Reverse osmosis / Valence / Electrophoresis / Length scale / Functional Group / Osmosis / Ion Transport / Flow Rate / Ionic Strength / Ions / Static Electricity / Nanotubes Carbon / Carbon Nanotube / Capillary electrophoresis / Multidisciplinary / Ion Channels / Transport / Porosity / Nanofiltration / Plasma Treatment / Hydrodynamics / Seawater / Fluid flow / Reverse osmosis / Valence / Electrophoresis / Length scale / Functional Group / Osmosis / Ion Transport / Flow Rate / Ionic Strength / Ions / Static Electricity / Nanotubes Carbon

A parallel second-order adaptive mesh algorithm for incompressible flow in porous media

Multidisciplinary / Reactive transport modeling / Porous Media / Fluid flow / Adaptive Mesh Refinement / Second Order / Relative permeability / Incompressible Flow / Adaptive Algorithm / Adaptive Mesh / Second Order / Relative permeability / Incompressible Flow / Adaptive Algorithm / Adaptive Mesh
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