Finite element method

Finite element method

The finite element method (FEM) is a popular method for numerically solving differential equations arising in engineering and mathematical modeling. Typical problem areas of interest include the traditional fields of structural analysis, heat transfer, fluid flow, mass transport, and electromagnetic potential. Studying or analyzing a phenomenon with FEM is often referred to as finite element analysis (FEA).

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enExample of 2D mesh
enFEM_example_of_2D_solution
enSixteen triangular basis functions used to reconstruct J0
enSummation of basis functions
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enFEM mesh created by an analyst prior to finding a solution to a magnetic problem using FEM software. Colors indicate that the analyst has set material properties for each zone, in this case, a conducting wire coil in orange; a ferromagnetic component in light blue; and air in grey. Although the geometry may seem simple, it would be very challenging to calculate the magnetic field for this setup without FEM software, using equations alone.
enFEM solution to the problem at left, involving a cylindrically shaped magnetic shield. The ferromagnetic cylindrical part is shielding the area inside the cylinder by diverting the magnetic field created by the coil . The color represents the amplitude of the magnetic flux density, as indicated by the scale in the inset legend, red being high amplitude. The area inside the cylinder is the low amplitude , which suggests that the shield is performing as it was designed to.
enThe linear combination of basis functions reproduces J0 to any desired accuracy.
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enThe finite element method (FEM) is a popular method for numerically solving differential equations arising in engineering and mathematical modeling. Typical problem areas of interest include the traditional fields of structural analysis, heat transfer, fluid flow, mass transport, and electromagnetic potential. Studying or analyzing a phenomenon with FEM is often referred to as finite element analysis (FEA).
Depiction
Example of 2D mesh.png
FAE visualization.jpg
FEM example of 2D solution.png
Finite element method 1D illustration1.png
Finite element solution.svg
Finite element sparse matrix.png
Finite element triangulation.svg
Human knee joint FE model.png
Linear interpolation of J0 (basis set).svg
Linear interpolation of J1 (basis set).svg
Piecewise linear function2D.svg
Vanadis a1 test.gif
Vanadis a2 test.gif
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Has abstract
enThe finite element method (FEM) is a popular method for numerically solving differential equations arising in engineering and mathematical modeling. Typical problem areas of interest include the traditional fields of structural analysis, heat transfer, fluid flow, mass transport, and electromagnetic potential. The FEM is a general numerical method for solving partial differential equations in two or three space variables (i.e., some boundary value problems). To solve a problem, the FEM subdivides a large system into smaller, simpler parts that are called finite elements. This is achieved by a particular space discretization in the space dimensions, which is implemented by the construction of a mesh of the object: the numerical domain for the solution, which has a finite number of points. The finite element method formulation of a boundary value problem finally results in a system of algebraic equations. The method approximates the unknown function over the domain.The simple equations that model these finite elements are then assembled into a larger system of equations that models the entire problem. The FEM then approximates a solution by minimizing an associated error function via the calculus of variations. Studying or analyzing a phenomenon with FEM is often referred to as finite element analysis (FEA).
Header
enInterpolation of a Bessel function
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encenter
Hypernym
Technique
Image
enExample of 2D mesh.png
enFEM_example_of_2D_solution.png
enLinear interpolation of J0 .svg
enLinear interpolation of J1 .svg
Is primary topic of
Finite element method
Label
enFinite element method
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link.springer.com/book/10.1007/978-3-319-70428-9
books.google.com/books%3Fid=HIwSDAAAQBAJ&printsec=frontcover%23v=onepage&q=%22finite%20element%22&f=false
books.google.com/books%3Fid=YocoaH8lnx8C&printsec=frontcover%23v=onepage&q&f=false
people.maths.ox.ac.uk/suli/fem.pdf
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Absolutely continuous
Aeronautical engineering
Alexander Hrennikoff
Algebraic equation
Algebraic equations
Analysis
Antiderivative
Applied element method
Basis (linear algebra)
Bessel function
Bilinear map
Boris Galerkin
Boundary element method
Boundary value problem
Bruce Irons (engineer)
Calculus of variations
Category:Canadian inventions
Category:Computational electromagnetics
Category:Continuum mechanics
Category:Finite element method
Category:Numerical differential equations
Category:Partial differential equations
Category:Russian inventions
Category:Structural analysis
Céa's lemma
Cholesky decomposition
Civil engineering
Closed-form expression
Complex system
Computational fluid dynamics
Computer
Computer experiment
Conforming element method
Conjugate gradient method
Coordinates
Coordinate system
Cornell University
Cylinder (geometry)
Differential equation
Direct stiffness method
Dirichlet problem
Discontinuity layout optimization
Discrete element method
Discretization
Distribution (mathematics)
DNV GL
Dot product
Eddy (fluid dynamics)
Elasticity (physics)
Electrical conductor
Electromagnet
Electromagnetic potential
Electromagnetism
Elliptic boundary value problem
Elliptic operator
Elliptic partial differential equation
Endre Süli
Engineering
Engineering analysis
Ernest Hinton
Euler's method
Euler–Bernoulli beam theory
Extended finite element method
Feng Kang
Ferromagnetism
File:FAE visualization.jpg
File:Finite element method 1D illustration1.png
File:Finite element solution.svg
File:Finite element sparse matrix.png
File:Finite element triangulation.svg
File:Human knee joint FE model.png
File:Piecewise linear function2D.svg
File:Vanadis a1 test.gif
File:Vanadis a2 test.gif
Finite difference method
Finite element machine
Finite element method in structural mechanics
Finite volume method
Finite volume method for unsteady flow
Fluid dynamics
Fluid flow
Galerkin method
George Fix
Gilbert Strang
Gradient
Gradient discretization method
Gramian matrix
Green's identities
Heat equation
Heat transfer
Hilbert space
Hp-FEM
Hpk-FEM
Infinite element method
Initial value
Inner product
Integral equation
Integration by parts
Interval finite element
Ioannis Argyris
Iron
Isogeometric analysis
John Argyris
John William Strutt, 3rd Baron Rayleigh
Lattice (group)
Lattice Boltzmann methods
Leonard Oganesyan
Linear
Linear subspace
List of finite element software packages
Loubignac iteration
Lp space
LU decomposition
Magnetic field
Magnetic shielding
Magnetism
Mass matrix
Mathematical models
MATLAB
Mean value theorem
Meshfree methods
Mesh generation
Mimesis (mathematics)
Movable cellular automaton
Multidisciplinary design optimization
Multiphysics
NASTRAN
Navier-Stokes equations
Nonconforming element method
Norm (mathematics)
Numerical analysis
Numerical linear algebra
Numerical weather prediction
Olgierd Zienkiewicz
Ordinary differential equation
Partial differential equation
Partial differential equations
Partition of unity
Patch test (finite elements)
P-FEM
Philippe G. Ciarlet
Physics
Piecewise linear function
Pierre-and-Marie-Curie University
Poisson's equation
Polygon
Polygon mesh
Polygon triangulation
Polyhedra
Polynomial
Poset
Rayleigh–Ritz method
Ray W. Clough
Richard Courant
Riesz representation theorem
Runge–Kutta methods
SESAM (FEM)
Smooth function
Smooth manifold
Sobolev space
Sobolev spaces
Space mapping
Sparse matrix
Spectral element method
Spectral method
Steady state
Stiffness matrix
STRAND7
Structural analysis
Superconvergence
Support (mathematics)
Swansea University
Tent function
Tessellation (computer graphics)
Torsion (mechanics)
Transformation matrix
Transient state
Tropical cyclone
Types of mesh
University of California, Berkeley
University of Stuttgart
Walther Ritz
Weakened weak form
Weak formulation
Weight function
SameAs
25w4x
4017233-8
Anàlisi d'elements finits
Baigtinių elementų metodas
Eindige-elementenmethode
Elementtimenetelmä
Elementu finituen metodo
Finita elementmetoden
Finite-Elemente-Methode
Finite element method
Finite element method
Finittelementmetoden
Lõplike elementide meetod
m.03110
Méthode des éléments finis
Metoda elementów skończonych
Metoda končnih elementov
Metóda konečných prvkov
Metoda konečných prvků
Metode elemen hingga
Metodo degli elementi finiti
Método de los elementos finitos
Método dos elementos finitos
Phương pháp phần tử hữu hạn
Q220184
Sonlu elemanlar yöntemi
Sonlu elementlər üsulu
Végeselemes módszer
Μέθοδος πεπερασμένων στοιχείων
Метод конечных элементов
Метод на крайните елементи
Метод скінченних елементів
אלמנטים סופיים
روش اجزاء محدود
طريقة العناصر المنتهية
परिमित अवयव विधि
ระเบียบวิธีไฟไนต์เอลิเมนต์
有限元素法
有限要素法
유한요소법
Subject
Category:Canadian inventions
Category:Computational electromagnetics
Category:Continuum mechanics
Category:Finite element method
Category:Numerical differential equations
Category:Partial differential equations
Category:Russian inventions
Category:Structural analysis
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