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Liquid toroidal drop in compressional Stokes flow
Michael Zabarankin
, Olga M. Lavrenteva
, Avinoam Nir
Department of Mathematical Sciences
Stevens Institute of Technology
Research output
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peer-review
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Dive into the research topics of 'Liquid toroidal drop in compressional Stokes flow'. Together they form a unique fingerprint.
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Keyphrases
Torus
100%
Stokes Flow
100%
Toroidal Drop
100%
Capillary number
75%
Stationary Pattern
75%
Numerical Simulation
25%
Surface Tension
25%
Boundary Integral Formulation
25%
Viscous Force
25%
Dynamic Simulation
25%
Viscous Flow
25%
Viscosity
25%
Simply Connected
25%
Stationary Solution
25%
Non-uniqueness
25%
Drop Shape
25%
Quasi-stationary
25%
Toroidal Geometry
25%
Circular Cross-section
25%
Normal Velocity
25%
Critical Capillary number
25%
Circular Torus
25%
Elliptic Cross Section
25%
Quasi-dynamic Simulation
25%
Stationary Dynamics
25%
Mathematics
Cross Section
100%
Stoke Flow
100%
Approximates
33%
Stationary Solution
33%
Nonuniqueness
33%
Good Agreement
33%
Viscous Force
33%
Computer Simulation
33%
Physics
Stokes Flow
100%
Viscous Flow
50%
Tension Surface
50%
Interfacial Tension
50%
Numerical Simulation
50%