petsc-master 2019-10-20
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Produce the boundary element Jacobian for a chunk of elements by quadrature integration


#include "petscfe.h" 
PetscErrorCode PetscFEIntegrateBdJacobian(PetscDS prob, PetscInt fieldI, PetscInt fieldJ, PetscInt Ne, PetscFEGeom *fgeom,
                                          const PetscScalar coefficients[], const PetscScalar coefficients_t[], PetscDS probAux, const PetscScalar coefficientsAux[], PetscReal t, PetscReal u_tshift, PetscScalar elemMat[])
Not collective

Input Parameters

prob -The PetscDS specifying the discretizations and continuum functions
fieldI -The test field being integrated
fieldJ -The basis field being integrated
Ne -The number of elements in the chunk
fgeom -The face geometry for each cell in the chunk
coefficients -The array of FEM basis coefficients for the elements for the Jacobian evaluation point
coefficients_t -The array of FEM basis time derivative coefficients for the elements
probAux -The PetscDS specifying the auxiliary discretizations
coefficientsAux -The array of FEM auxiliary basis coefficients for the elements
t -The time
u_tShift -A multiplier for the dF/du_t term (as opposed to the dF/du term)

Output Parameter

elemMat -the element matrices for the Jacobian from each element


Loop over batch of elements (e):
  Loop over element matrix entries (f,fc,g,gc --> i,j):
    Loop over quadrature points (q):
      Make u_q and gradU_q (loops over fields,Nb,Ncomp)
        elemMat[i,j] += \psi^{fc}_f(q) g0_{fc,gc}(u, \nabla u) \phi^{gc}_g(q)
                     + \psi^{fc}_f(q) \cdot g1_{fc,gc,dg}(u, \nabla u) \nabla\phi^{gc}_g(q)
                     + \nabla\psi^{fc}_f(q) \cdot g2_{fc,gc,df}(u, \nabla u) \phi^{gc}_g(q)
                     + \nabla\psi^{fc}_f(q) \cdot g3_{fc,gc,df,dg}(u, \nabla u) \nabla\phi^{gc}_g(q)

See Also

PetscFEIntegrateJacobian(), PetscFEIntegrateResidual()






src/dm/dt/fe/impls/basic/febasic.c:758:static PetscErrorCode PetscFEIntegrateBdJacobian_Basic(PetscDS ds, PetscInt fieldI, PetscInt fieldJ, PetscInt Ne, PetscFEGeom *fgeom,
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