Rosenbrock12.C
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1/*---------------------------------------------------------------------------*\
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3 \\ / F ield | OpenFOAM: The Open Source CFD Toolbox
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5 \\ / A nd | www.openfoam.com
6 \\/ M anipulation |
7-------------------------------------------------------------------------------
8 Copyright (C) 2013-2016 OpenFOAM Foundation
9 Copyright (C) 2019 OpenCFD Ltd.
10-------------------------------------------------------------------------------
11License
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15 under the terms of the GNU General Public License as published by
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27\*---------------------------------------------------------------------------*/
28
29#include "Rosenbrock12.H"
31
32// * * * * * * * * * * * * * * Static Data Members * * * * * * * * * * * * * //
33
34namespace Foam
35{
38
39const scalar
40 Rosenbrock12::gamma = 1 + 1.0/std::sqrt(2.0),
41 Rosenbrock12::a21 = 1.0/gamma,
42 Rosenbrock12::c2 = 1.0,
43 Rosenbrock12::c21 = -2.0/gamma,
44 Rosenbrock12::b1 = (3.0/2.0)/gamma,
45 Rosenbrock12::b2 = (1.0/2.0)/gamma,
46 Rosenbrock12::e1 = b1 - 1.0/gamma,
47 Rosenbrock12::e2 = b2,
48 Rosenbrock12::d1 = gamma,
49 Rosenbrock12::d2 = -gamma;
50}
51
52
53// * * * * * * * * * * * * * * * * Constructors * * * * * * * * * * * * * * //
54
56:
59 k1_(n_),
60 k2_(n_),
61 err_(n_),
62 dydx_(n_),
63 dfdx_(n_),
64 dfdy_(n_, n_),
65 a_(n_, n_),
66 pivotIndices_(n_)
67{}
68
69
70// * * * * * * * * * * * * * * * Member Functions * * * * * * * * * * * * * //
71
73{
75 {
77
78 resizeField(k1_);
79 resizeField(k2_);
80 resizeField(err_);
81 resizeField(dydx_);
82 resizeField(dfdx_);
83 resizeMatrix(dfdy_);
84 resizeMatrix(a_);
85 resizeField(pivotIndices_);
86
87 return true;
88 }
89
90 return false;
91}
92
93
95(
96 const scalar x0,
97 const scalarField& y0,
98 const scalarField& dydx0,
99 const scalar dx,
101) const
102{
103 odes_.jacobian(x0, y0, dfdx_, dfdy_);
104
105 for (label i=0; i<n_; i++)
106 {
107 for (label j=0; j<n_; j++)
108 {
109 a_(i, j) = -dfdy_(i, j);
110 }
111
112 a_(i, i) += 1.0/(gamma*dx);
113 }
114
115 LUDecompose(a_, pivotIndices_);
116
117 // Calculate k1:
118 forAll(k1_, i)
119 {
120 k1_[i] = dydx0[i] + dx*d1*dfdx_[i];
121 }
122
123 LUBacksubstitute(a_, pivotIndices_, k1_);
124
125 // Calculate k2:
126 forAll(y, i)
127 {
128 y[i] = y0[i] + a21*k1_[i];
129 }
130
131 odes_.derivatives(x0 + c2*dx, y, dydx_);
132
133 forAll(k2_, i)
134 {
135 k2_[i] = dydx_[i] + dx*d2*dfdx_[i] + c21*k1_[i]/dx;
136 }
137
138 LUBacksubstitute(a_, pivotIndices_, k2_);
139
140 // Calculate error and update state:
141 forAll(y, i)
142 {
143 y[i] = y0[i] + b1*k1_[i] + b2*k2_[i];
144 err_[i] = e1*k1_[i] + e2*k2_[i];
145 }
146
147 return normalizeError(y0, y, err_);
148}
149
150
152(
153 scalar& x,
154 scalarField& y,
155 scalar& dxTry
156) const
157{
158 adaptiveSolver::solve(odes_, x, y, dxTry);
159}
160
161
162// ************************************************************************* //
scalar y
Macros for easy insertion into run-time selection tables.
#define addToRunTimeSelectionTable(baseType, thisType, argNames)
Add to construction table with typeName as the key.
virtual bool resize()
Resize the ODE solver.
Definition: Euler.C:53
Abstract base-class for ODE system solvers.
Definition: ODESolver.H:57
virtual bool resize()=0
Resize the ODE solver.
Definition: ODESolver.C:92
Abstract base class for the systems of ordinary differential equations.
Definition: ODESystem.H:50
L-stable embedded Rosenbrock ODE solver of order (1)2.
Definition: Rosenbrock12.H:67
virtual bool resize()
Resize the ODE solver.
Definition: Rosenbrock12.C:72
A list of keyword definitions, which are a keyword followed by a number of values (eg,...
Definition: dictionary.H:126
An ODE solver for chemistry.
Definition: ode.H:55
#define defineTypeNameAndDebug(Type, DebugSwitch)
Define the typeName and debug information.
Definition: className.H:121
const scalar gamma
Definition: EEqn.H:9
Namespace for OpenFOAM.
dimensionedScalar y0(const dimensionedScalar &ds)
void LUBacksubstitute(const scalarSquareMatrix &luMmatrix, const labelList &pivotIndices, List< Type > &source)
void LUDecompose(scalarSquareMatrix &matrix, labelList &pivotIndices)
LU decompose the matrix with pivoting.
dictionary dict
CEqn solve()
#define forAll(list, i)
Loop across all elements in list.
Definition: stdFoam.H:333