articleTop 10% cited
Lagrangian-Eulerian finite element formulation for incompressible viscous flows
Computer Methods in Applied Mechanics and Engineering · 1981 · Vol. 29(3) · pp. 329–349
Thomas J.R. Hughes✉(California Institute of Technology)Wing Kam Liu(California Institute of Technology)Thomas Zimmermann(California Institute of Technology)
Fluid Dynamics Simulations and InteractionsDam Engineering and SafetyHydraulic flow and structuresFinite element methodCompressibilityEulerian pathLagrangianLagrangian and Eulerian specification of the flow fieldPressure-correction methodIncompressible flowMathematicsMechanicsClassical mechanics
Citations
1,484
FWCI
6.00
field-weighted impact
References
6
Percentile
96%
vs. same field & year
Citations per year
Cited by
Finite element modeling of blood flow in arteries
Computer Methods in Applied Mechanics and Engineering · 1998 · 718 citations
A new strategy for finite element computations involving moving boundaries and interfaces—The deforming-spatial-domain/space-time procedure: II. Computation of free-surface flows, two-liquid flows, and flows with drifting cylinders
Computer Methods in Applied Mechanics and Engineering · 1992 · 675 citations
A new strategy for finite element computations involving moving boundaries and interfaces—The deforming-spatial-domain/space-time procedure: I. The concept and the preliminary numerical tests
Computer Methods in Applied Mechanics and Engineering · 1992 · 830 citations
Computational methods in Lagrangian and Eulerian hydrocodes
Computer Methods in Applied Mechanics and Engineering · 1992 · 1,298 citations
An arbitrary lagrangian-eulerian finite element method for transient dynamic fluid-structure interactions
Computer Methods in Applied Mechanics and Engineering · 1982 · 1,442 citations
References
Mixed finite element methods — Reduced and selective integration techniques: A unification of concepts
Computer Methods in Applied Mechanics and Engineering · 1978 · 959 citations
Citation Network
How this paper connects to the literature. Drag to explore, click any node to open that paper.
