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ShallowWaterSolver/RiemannSolvers/LaxFriedrichsSolver.cpp
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1 ///////////////////////////////////////////////////////////////////////////////
2 //
3 // File: LaxFriedrichsSolver.cpp
4 //
5 // For more information, please see: http://www.nektar.info
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7 // The MIT License
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9 // Copyright (c) 2006 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).
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31 //
32 // Description: Lax-Friedrichs Riemann solver.
33 //
34 ///////////////////////////////////////////////////////////////////////////////
35 
37 
38 namespace Nektar
39 {
42  "LaxFriedrichs",
44  "LaxFriedrichs Riemann solver");
45 
46  LaxFriedrichsSolver::LaxFriedrichsSolver() : NonlinearSWESolver()
47  {
48 
49  }
50 
51  /**
52  * @brief Lax-Friedrichs Riemann solver
53  *
54  * @param hL Water depth left state.
55  * @param hR Water depth right state.
56  * @param huL x-momentum component left state.
57  * @param huR x-momentum component right state.
58  * @param hvL y-momentum component left state.
59  * @param hvR y-momentum component right state.
60  * @param hf Computed Riemann flux for density.
61  * @param huf Computed Riemann flux for x-momentum component
62  * @param hvf Computed Riemann flux for y-momentum component
63  */
65  double hL, double huL, double hvL,
66  double hR, double huR, double hvR,
67  double &hf, double &huf, double &hvf)
68  {
69  static NekDouble g = m_params["gravity"]();
70 
71  // Left and right velocities
72  NekDouble uL = huL / hL;
73  NekDouble vL = hvL / hL;
74  NekDouble uR = huR / hR;
75  NekDouble vR = hvR / hR;
76 
77  // Left and right wave speeds
78  NekDouble cL = sqrt(g * hL);
79  NekDouble cR = sqrt(g * hR);
80 
81  // Square root of hL and hR.
82  NekDouble srL = sqrt(hL);
83  NekDouble srR = sqrt(hR);
84  NekDouble srLR = srL + srR;
85 
86  // Velocity Roe averages
87  NekDouble uRoe = (srL * uL + srR * uR) / srLR;
88  NekDouble cRoe = sqrt(0.5 * (cL * cL + cR * cR));
89 
90  // Minimum and maximum wave speeds
91  NekDouble S = std::max(uRoe+cRoe, std::max(uR+cR, -(uL-cL)));
92  NekDouble sign = 1.0;
93 
94  if(S == -(uL-cL))
95  {
96  sign = -1.0;
97  }
98 
99  // Lax-Friedrichs Riemann h flux
100  hf = 0.5 * ((huL + huR) - sign * S * (hR -hL));
101 
102  // Lax-Friedrichs Riemann hu flux
103  huf = 0.5 * ((hL * uL * uL + 0.5 * g * hL * hL +
104  hR * uR * uR + 0.5 * g * hR * hR) -
105  sign * S * (huR - huL));
106 
107  // Lax-Friedrichs Riemann hv flux
108  hvf = 0.5 * ((hL * uL * vL + hR * uR * vR) -
109  sign * S * (hvR - hvL));
110 
111  }
112 }
#define sign(a, b)
return the sign(b)*a
Definition: Polylib.cpp:22
virtual void v_PointSolve(NekDouble pL, NekDouble rhoL, NekDouble uL, NekDouble vL, NekDouble wL, NekDouble pR, NekDouble rhoR, NekDouble uR, NekDouble vR, NekDouble wR, NekDouble p0, NekDouble rho0, NekDouble u0, NekDouble v0, NekDouble w0, NekDouble &pF, NekDouble &rhoF, NekDouble &uF, NekDouble &vF, NekDouble &wF)
Lax-Friedrichs Riemann solver.
RiemannSolverFactory & GetRiemannSolverFactory()
double NekDouble
std::map< std::string, RSParamFuncType > m_params
Map of parameter function types.
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, tDescription pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:215