Nektar++
MCNABTimeIntegrationScheme.h
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1///////////////////////////////////////////////////////////////////////////////
2//
3// File: MCNABTimeIntegrationScheme.h
4//
5// For more information, please see: http://www.nektar.info
6//
7// The MIT License
8//
9// Copyright (c) 2018 Division of Applied Mathematics, Brown University (USA),
10// Department of Aeronautics, Imperial College London (UK), and Scientific
11// Computing and Imaging Institute, University of Utah (USA).
12//
13// License for the specific language governing rights and limitations under
14// Permission is hereby granted, free of charge, to any person obtaining a
15// copy of this software and associated documentation files (the "Software"),
16// to deal in the Software without restriction, including without limitation
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19// Software is furnished to do so, subject to the following conditions:
20//
21// The above copyright notice and this permission notice shall be included
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23//
24// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
25// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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30// DEALINGS IN THE SOFTWARE.
31//
32// Description: Header file of time integration scheme wrappers
33//
34///////////////////////////////////////////////////////////////////////////////
35
36// Note : If adding a new integrator be sure to register the
37// integrator with the Time Integration Scheme Facatory in
38// SchemeInitializor.cpp.
39
40#ifndef NEKTAR_LIB_UTILITIES_TIME_INTEGRATION_MCNAB_TIME_INTEGRATION_SCHEME
41#define NEKTAR_LIB_UTILITIES_TIME_INTEGRATION_MCNAB_TIME_INTEGRATION_SCHEME
42
43#define LUE LIB_UTILITIES_EXPORT
44
46
47namespace Nektar
48{
49namespace LibUtilities
50{
51
53{
54public:
55 MCNABTimeIntegrationScheme(std::string variant, size_t order,
56 std::vector<NekDouble> freeParams)
57 : TimeIntegrationSchemeGLM("", 2, freeParams)
58 {
59 boost::ignore_unused(variant);
60 boost::ignore_unused(order);
61
69
71 m_integration_phases[0], 2, std::vector<NekDouble>{2, 2});
73 m_integration_phases[1], 2, std::vector<NekDouble>{2, 2});
75 }
76
78 {
79 }
80
82 std::string variant, size_t order, std::vector<NekDouble> freeParams)
83 {
84 boost::ignore_unused(variant);
85 boost::ignore_unused(order);
86
89 "", 2, freeParams);
90
91 return p;
92 }
93
94 static std::string className;
95
97 {
98 phase->m_schemeType = eIMEX;
99 phase->m_order = 2;
100 phase->m_name =
101 std::string("MCNABOrder" + std::to_string(phase->m_order));
102
103 phase->m_numsteps = 5;
104 phase->m_numstages = 1;
105
106 phase->m_A = Array<OneD, Array<TwoD, NekDouble>>(2);
107 phase->m_B = Array<OneD, Array<TwoD, NekDouble>>(2);
108
109 phase->m_A[0] =
110 Array<TwoD, NekDouble>(phase->m_numstages, phase->m_numstages, 0.0);
111 phase->m_B[0] =
112 Array<TwoD, NekDouble>(phase->m_numsteps, phase->m_numstages, 0.0);
113 phase->m_A[1] =
114 Array<TwoD, NekDouble>(phase->m_numstages, phase->m_numstages, 0.0);
115 phase->m_B[1] =
116 Array<TwoD, NekDouble>(phase->m_numsteps, phase->m_numstages, 0.0);
117 phase->m_U =
118 Array<TwoD, NekDouble>(phase->m_numstages, phase->m_numsteps, 0.0);
119 phase->m_V =
120 Array<TwoD, NekDouble>(phase->m_numsteps, phase->m_numsteps, 0.0);
121
122 phase->m_A[0][0][0] = 9.0 / 16.0;
123 phase->m_B[0][0][0] = 9.0 / 16.0;
124 phase->m_B[0][1][0] = 1.0;
125
126 phase->m_B[1][3][0] = 1.0;
127
128 phase->m_U[0][0] = 1.0;
129 phase->m_U[0][1] = 6.0 / 16.0;
130 phase->m_U[0][2] = 1.0 / 16.0;
131 phase->m_U[0][3] = 24.0 / 16.0;
132 phase->m_U[0][4] = -8.0 / 16.0;
133
134 phase->m_V[0][0] = 1.0;
135 phase->m_V[0][1] = 6.0 / 16.0;
136 phase->m_V[0][2] = 1.0 / 16.0;
137 phase->m_V[0][3] = 24.0 / 16.0;
138 phase->m_V[0][4] = -8.0 / 16.0;
139
140 phase->m_V[2][1] = 1.0;
141 phase->m_V[4][3] = 1.0;
142
143 phase->m_numMultiStepValues = 1;
144 phase->m_numMultiStepImplicitDerivs = 2;
145 phase->m_numMultiStepExplicitDerivs = 2;
146 phase->m_timeLevelOffset = Array<OneD, size_t>(phase->m_numsteps);
147 phase->m_timeLevelOffset[0] = 0;
148 phase->m_timeLevelOffset[1] = 0;
149 phase->m_timeLevelOffset[2] = 1;
150 phase->m_timeLevelOffset[3] = 0;
151 phase->m_timeLevelOffset[4] = 1;
152
153 phase->CheckAndVerify();
154 }
155
156protected:
157 LUE virtual std::string v_GetName() const override
158 {
159 return std::string("MCNAB");
160 }
161
162 LUE virtual NekDouble v_GetTimeStability() const override
163 {
164 return 1.0;
165 }
166
168
169}; // end class MCNABTimeIntegrationScheme
170
171} // end namespace LibUtilities
172} // end namespace Nektar
173
174#endif
#define LUE
static LUE void SetupSchemeData(TimeIntegrationAlgorithmGLMSharedPtr &phase, size_t order, std::vector< NekDouble > freeParams)
MCNABTimeIntegrationScheme(std::string variant, size_t order, std::vector< NekDouble > freeParams)
static LUE void SetupSchemeData(TimeIntegrationAlgorithmGLMSharedPtr &phase)
virtual LUE std::string v_GetName() const override
virtual LUE NekDouble v_GetTimeStability() const override
static TimeIntegrationSchemeSharedPtr create(std::string variant, size_t order, std::vector< NekDouble > freeParams)
Base class for GLM time integration schemes.
TimeIntegrationAlgorithmGLMVector m_integration_phases
static std::shared_ptr< DataType > AllocateSharedPtr(const Args &...args)
Allocate a shared pointer from the memory pool.
std::shared_ptr< TimeIntegrationAlgorithmGLM > TimeIntegrationAlgorithmGLMSharedPtr
@ eIMEX
Implicit Explicit General Linear Method.
std::vector< TimeIntegrationAlgorithmGLMSharedPtr > TimeIntegrationAlgorithmGLMVector
std::shared_ptr< TimeIntegrationScheme > TimeIntegrationSchemeSharedPtr
The above copyright notice and this permission notice shall be included.
Definition: CoupledSolver.h:2
double NekDouble