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phasefield_exponential.hh
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Tue, Dec 3, 20:57
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Thu, Dec 5, 20:57 (1 d, 23 h)
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rAKA akantu
phasefield_exponential.hh
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/**
* Copyright (©) 2020-2023 EPFL (Ecole Polytechnique Fédérale de Lausanne)
* Laboratory (LSMS - Laboratoire de Simulation en Mécanique des Solides)
*
* This file is part of Akantu
*
* Akantu is free software: you can redistribute it and/or modify it under the
* terms of the GNU Lesser General Public License as published by the Free
* Software Foundation, either version 3 of the License, or (at your option) any
* later version.
*
* Akantu is distributed in the hope that it will be useful, but WITHOUT ANY
* WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR
* A PARTICULAR PURPOSE. See the GNU Lesser General Public License for more
* details.
*
* You should have received a copy of the GNU Lesser General Public License
* along with Akantu. If not, see <http://www.gnu.org/licenses/>.
*/
/* -------------------------------------------------------------------------- */
#include "phasefield.hh"
/* -------------------------------------------------------------------------- */
#ifndef AKANTU_PHASEFIELD_EXPONENTIAL_HH_
#define AKANTU_PHASEFIELD_EXPONENTIAL_HH_
namespace
akantu
{
template
<
Int
dim
>
class
PhaseFieldExponential
:
public
PhaseField
{
/* ------------------------------------------------------------------------ */
/* Constructors/Destructors */
/* ------------------------------------------------------------------------ */
public
:
PhaseFieldExponential
(
PhaseFieldModel
&
model
,
const
ID
&
id
=
""
);
/* ------------------------------------------------------------------------ */
/* Methods */
/* ------------------------------------------------------------------------ */
public
:
/// compute the dissiapted energy
void
computeDissipatedEnergy
(
ElementType
el_type
)
override
;
void
computeDissipatedEnergyByElement
(
const
Element
&
element
,
Vector
<
Real
>
&
edis_on_quad_points
)
override
;
protected
:
void
computeDissipatedEnergyByElement
(
ElementType
type
,
Idx
index
,
Vector
<
Real
>
&
edis_on_quad_points
)
override
;
inline
void
computePhiOnQuad
(
const
Matrix
<
Real
>
&
/*strain_quad*/
,
Real
&
/*phi_quad*/
,
Real
&
/*phi_hist_quad*/
);
inline
void
computePhiIsotropicOnQuad
(
const
Matrix
<
Real
>
&
/*strain_quad*/
,
Real
&
/*phi_quad*/
,
Real
&
/*phi_hist_quad*/
);
void
computeDrivingForce
(
ElementType
/*el_type*/
,
GhostType
/*ghost_type*/
)
override
;
inline
void
computeDrivingForceOnQuad
(
const
Real
&
/*phi_quad*/
,
Real
&
/*driving_force_quad*/
);
inline
void
computeDamageEnergyDensityOnQuad
(
const
Real
&
/*phi_quad*/
,
Real
&
/*dam_energy_quad*/
,
const
Real
&
/*g_c_quad*/
);
inline
void
computeDissipatedEnergyOnQuad
(
const
Real
&
/*dam_quad*/
,
const
Vector
<
Real
>
&
/*grad_d_quad */
,
Real
&
/*energy*/
,
Real
&
/*g_c_quad*/
);
public
:
void
updateInternalParameters
()
override
;
};
}
// namespace akantu
#include "phasefield_exponential_inline_impl.hh"
#endif
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