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A conservative SPH method for surfactant dynamics
S. Adami
, X. Y. Hu
,
N. A. Adams
Chair of Aerodynamics and Fluid mechanics
Technical University of Munich
Research output
:
Contribution to journal
›
Article
›
peer-review
79
Scopus citations
Overview
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Keyphrases
Smoothed Particle Hydrodynamics
100%
Surface Active Agent
100%
Local Surface
18%
Marangoni Force
18%
Flow Field
9%
Numerical Methods
9%
Scalar
9%
Analytic Solution
9%
Adsorption
9%
Desorption
9%
Capillary Force
9%
Surface Tension Coefficient
9%
Shear Flow
9%
Interfacial Transport
9%
Bulk Phase
9%
Complex Simulation
9%
Constitutive Equation
9%
Advection
9%
Transport Model
9%
Multiphase Flow
9%
Bubble Deformation
9%
Conservative Form
9%
Local Concentration
9%
Interface Geometry
9%
Field Dynamics
9%
Interfacial Flows
9%
Surface Tension Model
9%
Oscillating Bubble
9%
Lagrangian Particle Model
9%
Agent Concentration
9%
Arbitrary Interfaces
9%
Material Science
Hydrodynamics
100%
Surface Active Agent
100%
Surface Tension
18%
Desorption
9%
Shear Flow
9%
Particle Method
9%
Multiphase Flow
9%