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Boundary layer flows under solitary wave
P.L.-F. LIU, Y.S. PARK
Research output
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Contribution to journal
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Article
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peer-review
1
Citation (Scopus)
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Keyphrases
Analytical Solution
100%
Solitary Waves
100%
Boundary Layer
100%
Boundary Layer Flow
100%
Fluid Particles
100%
Particle Velocity
100%
Turbulent Boundary Layer Flow
100%
Wave Propagation
50%
Momentum Equation
50%
Long Waves
50%
Flow Characteristics
50%
Horizontal Component
50%
Nonlinear Inertia
50%
Inertia Force
50%
Deceleration Phase
50%
Bottom Stress
50%
Engineering
Layer Flow
100%
Boundary Layer
100%
Solitary Wave
100%
Fluid Particle
66%
Particle Velocity
66%
Turbulent Boundary Layer
66%
Transients
33%
Momentum Equation
33%
Flow Characteristics
33%
Horizontal Component
33%
Inertia Force
33%
Physics
Boundary Layer Flow
100%
Solitary Wave
100%
Boundary Layer
66%
Turbulent Boundary Layer
66%
Wave Propagation
33%
Flow Characteristics
33%
Deceleration
33%
Transients
33%
Earth and Planetary Sciences
Solitary Wave
100%
Boundary Layer Flow
100%
Boundary Layer
66%
Turbulent Boundary Layer
66%
Flow Characteristics
33%