Nektar++
Public Member Functions | Static Public Member Functions | Static Public Attributes | Protected Member Functions | Protected Attributes | List of all members
Nektar::RCROutflow Class Reference

#include <RCROutflow.h>

Inheritance diagram for Nektar::RCROutflow:
[legend]

Public Member Functions

 RCROutflow (Array< OneD, MultiRegions::ExpListSharedPtr > pVessel, const LibUtilities::SessionReaderSharedPtr pSession, PulseWavePressureAreaSharedPtr pressureArea)
 
virtual ~RCROutflow ()
 
- Public Member Functions inherited from Nektar::PulseWaveBoundary
 PulseWaveBoundary (Array< OneD, MultiRegions::ExpListSharedPtr > &pVessel, const LibUtilities::SessionReaderSharedPtr &pSession, PulseWavePressureAreaSharedPtr &pressureArea)
 
virtual ~PulseWaveBoundary ()
 
void DoBoundary (const Array< OneD, const Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &A_0, Array< OneD, Array< OneD, NekDouble > > &beta, Array< OneD, Array< OneD, NekDouble > > &alpha, const NekDouble time, int omega, int offset, int n)
 

Static Public Member Functions

static PulseWaveBoundarySharedPtr create (Array< OneD, MultiRegions::ExpListSharedPtr > &pVessel, const LibUtilities::SessionReaderSharedPtr &pSession, PulseWavePressureAreaSharedPtr &pressureArea)
 

Static Public Attributes

static std::string className
 

Protected Member Functions

virtual void v_DoBoundary (const Array< OneD, const Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &A_0, Array< OneD, Array< OneD, NekDouble > > &beta, Array< OneD, Array< OneD, NekDouble > > &alpha, const NekDouble time, int omega, int offset, int n) override
 
void R_RiemannSolver (NekDouble R, NekDouble A_l, NekDouble u_l, NekDouble A_0, NekDouble beta, NekDouble alpha, NekDouble POut, NekDouble &A_u, NekDouble &u_u)
 
virtual void v_DoBoundary (const Array< OneD, const Array< OneD, NekDouble > > &inarray, Array< OneD, Array< OneD, NekDouble > > &A_0, Array< OneD, Array< OneD, NekDouble > > &beta, Array< OneD, Array< OneD, NekDouble > > &alpha, const NekDouble time, int omega, int offset, int n)=0
 

Protected Attributes

NekDouble m_timestep
 
NekDouble m_pc = 0.0
 
- Protected Attributes inherited from Nektar::PulseWaveBoundary
Array< OneD, MultiRegions::ExpListSharedPtrm_vessels
 
LibUtilities::SessionReaderSharedPtr m_session
 
PulseWavePressureAreaSharedPtr m_pressureArea
 
NekDouble m_pext
 
NekDouble m_pout
 
NekDouble m_rho
 

Detailed Description

Definition at line 52 of file RCROutflow.h.

Constructor & Destructor Documentation

◆ RCROutflow()

Nektar::RCROutflow::RCROutflow ( Array< OneD, MultiRegions::ExpListSharedPtr pVessel,
const LibUtilities::SessionReaderSharedPtr  pSession,
PulseWavePressureAreaSharedPtr  pressureArea 
)

Definition at line 48 of file RCROutflow.cpp.

51 : PulseWaveBoundary(pVessel, pSession, pressureArea)
52{
53 m_session->LoadParameter("TimeStep", m_timestep);
54}
PulseWaveBoundary(Array< OneD, MultiRegions::ExpListSharedPtr > &pVessel, const LibUtilities::SessionReaderSharedPtr &pSession, PulseWavePressureAreaSharedPtr &pressureArea)
LibUtilities::SessionReaderSharedPtr m_session
NekDouble m_timestep
Definition: RCROutflow.h:86

References Nektar::PulseWaveBoundary::m_session, and m_timestep.

◆ ~RCROutflow()

Nektar::RCROutflow::~RCROutflow ( )
virtual

Definition at line 56 of file RCROutflow.cpp.

57{
58}

Member Function Documentation

◆ create()

static PulseWaveBoundarySharedPtr Nektar::RCROutflow::create ( Array< OneD, MultiRegions::ExpListSharedPtr > &  pVessel,
const LibUtilities::SessionReaderSharedPtr pSession,
PulseWavePressureAreaSharedPtr pressureArea 
)
inlinestatic

Definition at line 56 of file RCROutflow.h.

60 {
61 return MemoryManager<RCROutflow>::AllocateSharedPtr(pVessel, pSession,
62 pressureArea);
63 }
static std::shared_ptr< DataType > AllocateSharedPtr(const Args &...args)
Allocate a shared pointer from the memory pool.

References Nektar::MemoryManager< DataType >::AllocateSharedPtr().

◆ R_RiemannSolver()

void Nektar::RCROutflow::R_RiemannSolver ( NekDouble  R,
NekDouble  A_l,
NekDouble  u_l,
NekDouble  A_0,
NekDouble  beta,
NekDouble  alpha,
NekDouble  POut,
NekDouble A_u,
NekDouble u_u 
)
protected

Definition at line 135 of file RCROutflow.cpp.

138{
139 NekDouble W1 = 0.0;
140 NekDouble c = 0.0;
141 NekDouble cL = 0.0;
142 NekDouble I = 0.0;
143 NekDouble A_calc = 0.0;
144 NekDouble FA = 0.0;
145 NekDouble dFdA = 0.0;
146 NekDouble delta_A_calc = 0.0;
147 NekDouble P = 0.0;
148 NekDouble rho = m_rho;
149
150 int proceed = 1;
151 int iter = 0;
152 int MAX_ITER = 100;
153
154 // Tolerances for the algorithm
155 NekDouble Tol = 1.0E-10;
156
157 // Calculate the wave speed
158 m_pressureArea->GetC(cL, beta, A_l, A_0, alpha);
159
160 // Riemann invariant \f$W_1(Al,ul)\f$
161 m_pressureArea->GetW1(W1, u_l, beta, A_l, A_0, alpha);
162
163 // Newton Iteration (Area only)
164 A_calc = A_l;
165 while ((proceed) && (iter < MAX_ITER))
166 {
167 iter += 1;
168
169 m_pressureArea->GetPressure(P, beta, A_calc, A_0, 0, 0, alpha);
170 m_pressureArea->GetC(c, beta, A_calc, A_0, alpha);
171 m_pressureArea->GetCharIntegral(I, beta, A_calc, A_0, alpha);
172
173 FA = R * A_calc * (W1 - I) - P + POut;
174 dFdA = R * (W1 - I - c) - c * c * rho / A_calc;
175 delta_A_calc = FA / dFdA;
176 A_calc -= delta_A_calc;
177
178 if (sqrt(delta_A_calc * delta_A_calc) < Tol)
179 {
180 proceed = 0;
181 }
182 }
183
184 m_pressureArea->GetPressure(P, beta, A_calc, A_0, 0, 0, alpha);
185
186 // Obtain u_u and A_u
187 u_u = (P - POut) / (R * A_calc);
188 A_u = A_calc;
189}
PulseWavePressureAreaSharedPtr m_pressureArea
@ beta
Gauss Radau pinned at x=-1,.
Definition: PointsType.h:61
@ P
Monomial polynomials .
Definition: BasisType.h:64
double NekDouble
scalarT< T > sqrt(scalarT< T > in)
Definition: scalar.hpp:294

References Nektar::LibUtilities::beta, Nektar::PulseWaveBoundary::m_pressureArea, Nektar::PulseWaveBoundary::m_rho, Nektar::LibUtilities::P, and tinysimd::sqrt().

Referenced by v_DoBoundary().

◆ v_DoBoundary()

void Nektar::RCROutflow::v_DoBoundary ( const Array< OneD, const Array< OneD, NekDouble > > &  inarray,
Array< OneD, Array< OneD, NekDouble > > &  A_0,
Array< OneD, Array< OneD, NekDouble > > &  beta,
Array< OneD, Array< OneD, NekDouble > > &  alpha,
const NekDouble  time,
int  omega,
int  offset,
int  n 
)
overrideprotectedvirtual

Implements Nektar::PulseWaveBoundary.

Definition at line 60 of file RCROutflow.cpp.

66{
67 boost::ignore_unused(time);
68
69 NekDouble A_r = 0.0;
70 NekDouble u_r = 0.0;
71 NekDouble A_u = 0.0;
72 NekDouble u_u = 0.0;
73 NekDouble A_l = 0.0;
74 NekDouble u_l = 0.0;
75 NekDouble c_0 = 0.0;
76 NekDouble R1 = 0.0;
77 NekDouble R2 = 0.0;
78 NekDouble POut = m_pout;
79 NekDouble rho = m_rho;
80
81 Array<OneD, MultiRegions::ExpListSharedPtr> vessel(2);
82
83 // Pointers to the domains
84 vessel[0] = m_vessels[2 * omega];
85 vessel[1] = m_vessels[2 * omega + 1];
86
87 /* Find the terminal RCR boundary condition and calculates
88 the updated velocity and area as well as the updated
89 boundary conditions */
90
91 /* Load terminal resistance, capacitance, outflow pressure,
92 and number of points from the input file */
93 NekDouble RT = ((vessel[0]->GetBndCondExpansions())[n])->GetCoeffs()[0];
94 NekDouble C = ((vessel[1]->GetBndCondExpansions())[n])->GetCoeffs()[0];
95 int nq = vessel[0]->GetTotPoints();
96
97 // Get the values of all variables needed for the Riemann problem
98 A_l = inarray[0][offset + nq - 1];
99 u_l = inarray[1][offset + nq - 1];
100
101 // Goes through the first resistance; calculates c_0
102 m_pressureArea->GetC(c_0, beta[omega][nq - 1], A_0[omega][nq - 1],
103 A_0[omega][nq - 1], alpha[omega][nq - 1]);
104
105 /* Calculate R1 and R2, R1 being calculated so as
106 to eliminate reflections in the vessel */
107 R1 = rho * c_0 / A_0[omega][nq - 1];
108
109 if (R1 > 0.9 * RT)
110 {
111 // In case the resistance is lower than the characteristic impedance.
112 R1 = 0.9 * RT;
113 }
114
115 R2 = RT - R1;
116
117 // Call the R RiemannSolver
118 R_RiemannSolver(R1, A_l, u_l, A_0[omega][nq - 1], beta[omega][nq - 1],
119 alpha[omega][nq - 1], m_pc, A_u, u_u);
120
121 /* Fix the boundary conditions in the virtual region to ensure
122 upwind state matches the boundary condition at the next time step */
123 A_r = A_l;
124 u_r = 2 * u_u - u_l;
125
126 /* Goes through the CR system, which
127 just updates the pressure pc */
128 m_pc += (m_timestep / C) * (A_u * u_u - (m_pc - POut) / R2);
129
130 // Store the updated values
131 (vessel[0]->UpdateBndCondExpansion(n))->UpdatePhys()[0] = A_r;
132 (vessel[1]->UpdateBndCondExpansion(n))->UpdatePhys()[0] = u_r;
133}
Array< OneD, MultiRegions::ExpListSharedPtr > m_vessels
void R_RiemannSolver(NekDouble R, NekDouble A_l, NekDouble u_l, NekDouble A_0, NekDouble beta, NekDouble alpha, NekDouble POut, NekDouble &A_u, NekDouble &u_u)
Definition: RCROutflow.cpp:135
NekDouble m_pc
Definition: RCROutflow.h:87

References Nektar::LibUtilities::beta, m_pc, Nektar::PulseWaveBoundary::m_pout, Nektar::PulseWaveBoundary::m_pressureArea, Nektar::PulseWaveBoundary::m_rho, m_timestep, Nektar::PulseWaveBoundary::m_vessels, and R_RiemannSolver().

Member Data Documentation

◆ className

std::string Nektar::RCROutflow::className
static
Initial value:
=
"RCR-terminal", RCROutflow::create, "RCR outflow boundary condition")
tKey RegisterCreatorFunction(tKey idKey, CreatorFunction classCreator, std::string pDesc="")
Register a class with the factory.
Definition: NekFactory.hpp:198
static PulseWaveBoundarySharedPtr create(Array< OneD, MultiRegions::ExpListSharedPtr > &pVessel, const LibUtilities::SessionReaderSharedPtr &pSession, PulseWavePressureAreaSharedPtr &pressureArea)
Definition: RCROutflow.h:56
BoundaryFactory & GetBoundaryFactory()

Definition at line 66 of file RCROutflow.h.

◆ m_pc

NekDouble Nektar::RCROutflow::m_pc = 0.0
protected

Definition at line 87 of file RCROutflow.h.

Referenced by v_DoBoundary().

◆ m_timestep

NekDouble Nektar::RCROutflow::m_timestep
protected

Definition at line 86 of file RCROutflow.h.

Referenced by RCROutflow(), and v_DoBoundary().