articleTop 1% cited
The coupling of the finite element method and boundary solution procedures
International Journal for Numerical Methods in Engineering · 1977 · Vol. 11(2) · pp. 355–375
O. C. Zienkiewicz✉(Swansea University)Donald W. Kelly(Swansea University)P. Bettess(Swansea University)
Abstract
Abstract The finite element method is now recognized as a general approximation process which is applicable to a variety of engineering problems—structural mechanics being only one of these. Boundary solution procedures have been introduced as an independent alternative which at times is more economical and possesses certain merits. In this survey of the field we show how such procedures can be utilized in conventional FEM context.
Numerical methods in engineeringElectromagnetic Simulation and Numerical MethodsComposite Material MechanicsFinite element methodVariety (cybernetics)Boundary knot methodExtended finite element methodContext (archaeology)Boundary element methodCoupling (piping)Method of fundamental solutionsBoundary (topology)Mixed finite element method
Citations
734
FWCI
22.08
field-weighted impact
References
65
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100%
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References
A direct formulation and numerical solution of the general transient elastodynamic problem. I
Journal of Mathematical Analysis and Applications · 1968 · 465 citations
Numerical solutions in three dimensional elastostatics
International Journal of Solids and Structures · 1969 · 551 citations
Effective numerical treatment of boundary integral equations: A formulation for three‐dimensional elastostatics
International Journal for Numerical Methods in Engineering · 1976 · 677 citations
An Analysis of the Finite Element Method
Mathematics of Computation · 1974 · 3,461 citations
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