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JuliaFEM.jl/src/lagrange.jl
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# This file is a part of JuliaFEM.
# License is MIT: see https://github.com/JuliaFEM/JuliaFEM.jl/blob/master/LICENSE.md
# Lagrange (Continous Galerkin) finite elements
abstract CG <: Element
"""
Given polynomial P and coordinates of reference element, calculate
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Lagrange basis functions
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"""
function calculate_lagrange_basis(P, X)
dim, nbasis = size(X)
A = zeros(nbasis, nbasis)
for i=1:nbasis
A[i,:] = P(X[:, i])
end
# Logging.debug("Calculating inverse of A")
invA = inv(A)'
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basis(xi) = (invA*P(xi))'
dbasisdxi(xi) = (ForwardDiff.jacobian((xi) -> invA*P(xi), xi, cache=autodiffcache))'
basis, dbasisdxi
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end
"""
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Create new Lagrange element
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Examples
--------
>>> @create_lagrange_element(Seg2, "2 node linear segment", X, P)
"""
macro create_lagrange_element(element_name, element_description, X, P)
# Logging.debug("Creating element ", element_name, ": ", element_description, "\n")
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eltype = esc(element_name)
quote
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global get_element_description
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#global get_number_of_basis_functions, get_element_dimension
#dim = size($X, 1)
#nbasis = size($X, 2)
basis, dbasisdxi = calculate_lagrange_basis($P, $X)
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type $eltype <: CG
connectivity :: Array{Int, 1}
basis :: Basis
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fields :: Dict{ASCIIString, FieldSet}
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end
function $eltype(connectivity, args...)
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$eltype(connectivity, Basis(basis, dbasisdxi), Dict())
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end
get_element_description(el::Type{$eltype}) = $element_description
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#get_number_of_basis_functions(el::Type{$eltype}) = nbasis
#get_element_dimension(el::Type{$eltype}) = dim
Base.size(el::Type{$eltype}) = Base.size($X)
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end
end
# 0d Lagrange element
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#@create_element(Point1, CG, "1 node point element")
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# 1d Lagrange elements
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@create_lagrange_element(Seg2, "2 node linear line element",
[-1.0 1.0], (xi) -> [1.0, xi[1]])
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@create_lagrange_element(Seg3, "3 node quadratic line element",
[-1.0 1.0 0.0], (xi) -> [1.0, xi[1], xi[1]^2])
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# 2d Lagrange elements
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@create_lagrange_element(Tri3, "3 node bilinear triangle element",
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[0.0 1.0 0.0
0.0 0.0 1.0],
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(xi) -> [1.0, xi[1], xi[2]])
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@create_lagrange_element(Quad4, "4 node bilinear quadrangle element",
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[-1.0 1.0 1.0 -1.0
-1.0 -1.0 1.0 1.0],
(xi) -> [1.0, xi[1], xi[2], xi[1]*xi[2]])
# 3d Lagrange elements
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@create_lagrange_element(Tet10, "10 node quadratic tetrahedron",
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[0.0 1.0 0.0 0.0 0.5 0.5 0.0 0.0 0.5 0.0
0.0 0.0 1.0 0.0 0.0 0.5 0.5 0.0 0.0 0.5
0.0 0.0 0.0 1.0 0.0 0.0 0.0 0.5 0.5 0.5],
(xi) -> [ 1.0, xi[1], xi[2], xi[3], xi[1]^2,
xi[2]^2, xi[3]^2, xi[1]*xi[2], xi[2]*xi[3], xi[3]*xi[1]])