Nektar++
LEELaxFriedrichsSolver.cpp
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1 ///////////////////////////////////////////////////////////////////////////////
2 //
3 // File: LEELaxFriedrichsSolver.cpp
4 //
5 // For more information, please see: http://www.nektar.info
6 //
7 // The MIT License
8 //
9 // Copyright (c) 2015 Kilian Lackhove
10 // Copyright (c) 2006 Division of Applied Mathematics, Brown University (USA),
11 // Department of Aeronautics, Imperial College London (UK), and Scientific
12 // Computing and Imaging Institute, University of Utah (USA).
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31 //
32 // Description: Lax-Friedrichs solver for the LEE equations.
33 //
34 ///////////////////////////////////////////////////////////////////////////////
35 
36 #include <boost/core/ignore_unused.hpp>
37 
39 
40 using namespace std;
41 
42 namespace Nektar
43 {
44 
45 std::string LEELaxFriedrichsSolver::solverName =
47  "LEELaxFriedrichs", LEELaxFriedrichsSolver::create,
48  "Lax-Friedrichs Solver for LEE");
49 
50 /**
51  *
52  */
53 LEELaxFriedrichsSolver::LEELaxFriedrichsSolver(
55  : LEESolver(pSession)
56 {
57 }
58 
59 /**
60  * @brief Lax-Friedrichs Riemann solver
61  *
62  * @param pL Perturbation pressure left state
63  * @param rhoL Perturbation density left state
64  * @param pR Perturbation pressure right state
65  * @param rhoR Perturbation density right state
66  * @param rhouL x perturbation velocity component left state
67  * @param rhouR x perturbation velocity component right state
68  * @param rhovL y perturbation velocity component left state
69  * @param rhovR y perturbation velocity component right state
70  * @param rhowL z perturbation velocity component left state
71  * @param rhowR z perturbation velocity component right state
72  * @param c0sqL Base pressure left state
73  * @param c0sqR Base pressure right state
74  * @param rho0L Base density left state
75  * @param rho0R Base density right state
76  * @param u0L Base x velocity component left state
77  * @param u0R Base x velocity component right state
78  * @param v0L Base y velocity component left state
79  * @param v0R Base y velocity component right state
80  * @param w0L Base z velocity component left state
81  * @param w0R Base z velocity component right state
82  * @param pF Computed Riemann flux for perturbation pressure
83  * @param rhoF Computed Riemann flux for perturbation density
84  * @param rhouF Computed Riemann flux for x perturbation velocity component
85  * @param rhovF Computed Riemann flux for y perturbation velocity component
86  * @param rhowF Computed Riemann flux for z perturbation velocity component
87  */
89  NekDouble pL, NekDouble rhoL, NekDouble rhouL, NekDouble rhovL, NekDouble rhowL,
90  NekDouble pR, NekDouble rhoR, NekDouble rhouR, NekDouble rhovR, NekDouble rhowR,
91  NekDouble c0sqL, NekDouble rho0L, NekDouble u0L, NekDouble v0L, NekDouble w0L,
92  NekDouble c0sqR, NekDouble rho0R, NekDouble u0R, NekDouble v0R, NekDouble w0R,
93  NekDouble &pF, NekDouble &rhoF, NekDouble &rhouF, NekDouble &rhovF, NekDouble &rhowF)
94 {
95  boost::ignore_unused(rho0L, v0L, w0L, rho0R, v0R, w0R);
96 
97  // Speed of sound
98  NekDouble cL = sqrt(c0sqL);
99  NekDouble cR = sqrt(c0sqR);
100 
101  // max absolute eigenvalue of the jacobian of F_n1
102  NekDouble a_1_max = 0;
103  a_1_max = std::max(a_1_max, std::abs(u0L - cL));
104  a_1_max = std::max(a_1_max, std::abs(u0R - cR));
105  a_1_max = std::max(a_1_max, std::abs(u0L + cL));
106  a_1_max = std::max(a_1_max, std::abs(u0R + cR));
107 
108  NekDouble pFL = rhouL * c0sqL + u0L * pL;
109  NekDouble rhoFL = rhouL + rhoL * u0L;
110  NekDouble rhouFL = pL + rhouL * u0L;
111  NekDouble rhovFL = 0;
112  NekDouble rhowFL = 0;
113 
114  NekDouble pFR = rhouR * c0sqR + u0R * pR;
115  NekDouble rhoFR = rhouR + rhoR * u0R;
116  NekDouble rhouFR = pR + rhouR * u0R;
117  NekDouble rhovFR = 0;
118  NekDouble rhowFR = 0;
119 
120  // assemble the face-normal fluxes
121  pF = 0.5 * (pFL + pFR - a_1_max * (pR - pL));
122  rhoF = 0.5 * (rhoFL + rhoFR - a_1_max * (rhoR - rhoL));
123  rhouF = 0.5 * (rhouFL + rhouFR - a_1_max * (rhouR - rhouL));
124  rhovF = 0.5 * (rhovFL + rhovFR - a_1_max * (rhovR - rhovL));
125  rhowF = 0.5 * (rhowFL + rhowFR - a_1_max * (rhowR - rhowL));
126 }
127 
128 } // namespace Nektar
STL namespace.
RiemannSolverFactory & GetRiemannSolverFactory()
double NekDouble
virtual void v_PointSolve(NekDouble pL, NekDouble rhoL, NekDouble rhouL, NekDouble rhovL, NekDouble rhowL, NekDouble pR, NekDouble rhoR, NekDouble rhouR, NekDouble rhovR, NekDouble rhowR, NekDouble c0sqL, NekDouble rho0L, NekDouble u0L, NekDouble v0L, NekDouble w0L, NekDouble c0sqR, NekDouble rho0R, NekDouble u0R, NekDouble v0R, NekDouble w0R, NekDouble &pF, NekDouble &rhoF, NekDouble &rhouF, NekDouble &rhovF, NekDouble &rhowF)
Lax-Friedrichs Riemann solver.
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:199
std::shared_ptr< SessionReader > SessionReaderSharedPtr