xref: /honee/problems/newtonian.c (revision db95602ef243f68b151a7e6b1d4bcd95127b3a77)
1727da7e7SJeremy L Thompson // Copyright (c) 2017-2022, Lawrence Livermore National Security, LLC and other CEED contributors.
2727da7e7SJeremy L Thompson // All Rights Reserved. See the top-level LICENSE and NOTICE files for details.
33a8779fbSJames Wright //
4727da7e7SJeremy L Thompson // SPDX-License-Identifier: BSD-2-Clause
53a8779fbSJames Wright //
6727da7e7SJeremy L Thompson // This file is part of CEED:  http://github.com/ceed
73a8779fbSJames Wright 
83a8779fbSJames Wright /// @file
93a8779fbSJames Wright /// Utility functions for setting up problems using the Newtonian Qfunction
103a8779fbSJames Wright 
113a8779fbSJames Wright #include "../qfunctions/newtonian.h"
123a8779fbSJames Wright 
13e419654dSJeremy L Thompson #include <ceed.h>
14e419654dSJeremy L Thompson #include <petscdm.h>
15e419654dSJeremy L Thompson 
162b916ea7SJeremy L Thompson #include "../navierstokes.h"
172b916ea7SJeremy L Thompson #include "../qfunctions/setupgeo.h"
186dd99bedSLeila Ghaffari 
19f7534ca8SJed Brown // For use with PetscOptionsEnum
20f7534ca8SJed Brown static const char *const StateVariables[] = {"CONSERVATIVE", "PRIMITIVE", "StateVariable", "STATEVAR_", NULL};
21f7534ca8SJed Brown 
222b916ea7SJeremy L Thompson // Compute relative error |a - b|/|s|
232b916ea7SJeremy L Thompson static PetscErrorCode CheckPrimitiveWithTolerance(StatePrimitive sY, StatePrimitive aY, StatePrimitive bY, const char *name, PetscReal rtol_pressure,
242b916ea7SJeremy L Thompson                                                   PetscReal rtol_velocity, PetscReal rtol_temperature) {
25f0b65372SJed Brown   PetscFunctionBeginUser;
26f0b65372SJed Brown   StatePrimitive eY;  // relative error
27f0b65372SJed Brown   eY.pressure   = (aY.pressure - bY.pressure) / sY.pressure;
282b916ea7SJeremy L Thompson   PetscScalar u = sqrt(Square(sY.velocity[0]) + Square(sY.velocity[1]) + Square(sY.velocity[2]));
29f0b65372SJed Brown   for (int j = 0; j < 3; j++) eY.velocity[j] = (aY.velocity[j] - bY.velocity[j]) / u;
30f0b65372SJed Brown   eY.temperature = (aY.temperature - bY.temperature) / sY.temperature;
312b916ea7SJeremy L Thompson   if (fabs(eY.pressure) > rtol_pressure) printf("%s: pressure error %g\n", name, eY.pressure);
322b916ea7SJeremy L Thompson   for (int j = 0; j < 3; j++) {
332b916ea7SJeremy L Thompson     if (fabs(eY.velocity[j]) > rtol_velocity) printf("%s: velocity[%d] error %g\n", name, j, eY.velocity[j]);
342b916ea7SJeremy L Thompson   }
352b916ea7SJeremy L Thompson   if (fabs(eY.temperature) > rtol_temperature) printf("%s: temperature error %g\n", name, eY.temperature);
36d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
37f0b65372SJed Brown }
38f0b65372SJed Brown 
392b916ea7SJeremy L Thompson static PetscErrorCode UnitTests_Newtonian(User user, NewtonianIdealGasContext gas) {
40f0b65372SJed Brown   Units            units = user->units;
41f0b65372SJed Brown   const CeedScalar eps   = 1e-6;
422b916ea7SJeremy L Thompson   const CeedScalar kg = units->kilogram, m = units->meter, sec = units->second, Pascal = units->Pascal;
43f0b65372SJed Brown   PetscFunctionBeginUser;
442b916ea7SJeremy L Thompson   const CeedScalar rho = 1.2 * kg / (m * m * m), u = 40 * m / sec;
45f0b65372SJed Brown   CeedScalar       U[5] = {rho, rho * u, rho * u * 1.1, rho * u * 1.2, 250e3 * Pascal + .5 * rho * u * u};
46f0b65372SJed Brown   const CeedScalar x[3] = {.1, .2, .3};
47f0b65372SJed Brown   State            s    = StateFromU(gas, U, x);
48f0b65372SJed Brown   for (int i = 0; i < 8; i++) {
49f0b65372SJed Brown     CeedScalar dU[5] = {0}, dx[3] = {0};
50f0b65372SJed Brown     if (i < 5) dU[i] = U[i];
51f0b65372SJed Brown     else dx[i - 5] = x[i - 5];
52f0b65372SJed Brown     State ds = StateFromU_fwd(gas, s, dU, x, dx);
53f0b65372SJed Brown     for (int j = 0; j < 5; j++) dU[j] = (1 + eps * (i == j)) * U[j];
54f0b65372SJed Brown     for (int j = 0; j < 3; j++) dx[j] = (1 + eps * (i == 5 + j)) * x[j];
55f0b65372SJed Brown     State          t = StateFromU(gas, dU, dx);
56f0b65372SJed Brown     StatePrimitive dY;
57f0b65372SJed Brown     dY.pressure = (t.Y.pressure - s.Y.pressure) / eps;
582b916ea7SJeremy L Thompson     for (int j = 0; j < 3; j++) dY.velocity[j] = (t.Y.velocity[j] - s.Y.velocity[j]) / eps;
59f0b65372SJed Brown     dY.temperature = (t.Y.temperature - s.Y.temperature) / eps;
60f0b65372SJed Brown     char buf[128];
61f0b65372SJed Brown     snprintf(buf, sizeof buf, "StateFromU_fwd i=%d", i);
62f0b65372SJed Brown     PetscCall(CheckPrimitiveWithTolerance(dY, ds.Y, dY, buf, 5e-6, 1e-6, 1e-6));
63f0b65372SJed Brown   }
64d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
65f0b65372SJed Brown }
66f0b65372SJed Brown 
67d1c51a42SJames Wright PetscErrorCode NS_NEWTONIAN_IG(ProblemData *problem, DM dm, void *ctx, SimpleBC bc) {
68b7f03f12SJed Brown   SetupContext             setup_context;
693a8779fbSJames Wright   User                     user   = *(User *)ctx;
704351d27fSLeila Ghaffari   CeedInt                  degree = user->app_ctx->degree;
713a8779fbSJames Wright   StabilizationType        stab;
723636f6a4SJames Wright   StateVariable            state_var;
73b4c37c5cSJames Wright   MPI_Comm                 comm = user->comm;
74b4c37c5cSJames Wright   Ceed                     ceed = user->ceed;
753a8779fbSJames Wright   PetscBool                implicit;
763636f6a4SJames Wright   PetscBool                has_curr_time = PETSC_FALSE, unit_tests;
7715a3537eSJed Brown   NewtonianIdealGasContext newtonian_ig_ctx;
7815a3537eSJed Brown   CeedQFunctionContext     newtonian_ig_context;
793a8779fbSJames Wright 
8015a3537eSJed Brown   PetscFunctionBeginUser;
812b916ea7SJeremy L Thompson   PetscCall(PetscCalloc1(1, &setup_context));
822b916ea7SJeremy L Thompson   PetscCall(PetscCalloc1(1, &newtonian_ig_ctx));
833a8779fbSJames Wright 
843a8779fbSJames Wright   // ------------------------------------------------------
853a8779fbSJames Wright   //           Setup Generic Newtonian IG Problem
863a8779fbSJames Wright   // ------------------------------------------------------
873a8779fbSJames Wright   problem->dim                     = 3;
883a8779fbSJames Wright   problem->q_data_size_vol         = 10;
89493642f1SJames Wright   problem->q_data_size_sur         = 10;
90b01ba163SJames Wright   problem->jac_data_size_sur       = 11;
919785fe93SJed Brown   problem->setup_vol.qfunction     = Setup;
929785fe93SJed Brown   problem->setup_vol.qfunction_loc = Setup_loc;
939785fe93SJed Brown   problem->setup_sur.qfunction     = SetupBoundary;
949785fe93SJed Brown   problem->setup_sur.qfunction_loc = SetupBoundary_loc;
953a8779fbSJames Wright   problem->non_zero_time           = PETSC_FALSE;
96cbe60e31SLeila Ghaffari   problem->print_info              = PRINT_NEWTONIAN;
973a8779fbSJames Wright 
983a8779fbSJames Wright   // ------------------------------------------------------
993a8779fbSJames Wright   //             Create the libCEED context
1003a8779fbSJames Wright   // ------------------------------------------------------
1013a8779fbSJames Wright   CeedScalar cv         = 717.;           // J/(kg K)
1023a8779fbSJames Wright   CeedScalar cp         = 1004.;          // J/(kg K)
103bb8a0c61SJames Wright   CeedScalar g[3]       = {0, 0, -9.81};  // m/s^2
1043a8779fbSJames Wright   CeedScalar lambda     = -2. / 3.;       // -
105bb8a0c61SJames Wright   CeedScalar mu         = 1.8e-5;         // Pa s, dynamic viscosity
1063a8779fbSJames Wright   CeedScalar k          = 0.02638;        // W/(m K)
1074351d27fSLeila Ghaffari   CeedScalar c_tau      = 0.5 / degree;   // -
108bb8a0c61SJames Wright   CeedScalar Ctau_t     = 1.0;            // -
109b5786772SLeila Ghaffari   CeedScalar Cv_func[3] = {36, 60, 128};
110c176988bSLeila Ghaffari   CeedScalar Ctau_v     = Cv_func[(CeedInt)Min(3, degree) - 1];
1112a0eee6eSLeila Ghaffari   CeedScalar Ctau_C     = 0.25 / degree;
1122a0eee6eSLeila Ghaffari   CeedScalar Ctau_M     = 0.25 / degree;
1132a0eee6eSLeila Ghaffari   CeedScalar Ctau_E     = 0.125;
1143a8779fbSJames Wright   PetscReal  domain_min[3], domain_max[3], domain_size[3];
1152b916ea7SJeremy L Thompson   PetscCall(DMGetBoundingBox(dm, domain_min, domain_max));
116493642f1SJames Wright   for (PetscInt i = 0; i < 3; i++) domain_size[i] = domain_max[i] - domain_min[i];
1173a8779fbSJames Wright 
118b8fb7609SAdeleke O. Bankole   StatePrimitive reference      = {.pressure = 1.01e5, .velocity = {0}, .temperature = 288.15};
119e7754af5SKenneth E. Jansen   CeedScalar     idl_decay_time = -1, idl_start = 0, idl_length = 0;
120e7754af5SKenneth E. Jansen   PetscBool      idl_enable = PETSC_FALSE;
121b8fb7609SAdeleke O. Bankole 
1223a8779fbSJames Wright   // ------------------------------------------------------
1233a8779fbSJames Wright   //             Create the PETSc context
1243a8779fbSJames Wright   // ------------------------------------------------------
125bb8a0c61SJames Wright   PetscScalar meter    = 1;  // 1 meter in scaled length units
126bb8a0c61SJames Wright   PetscScalar kilogram = 1;  // 1 kilogram in scaled mass units
127bb8a0c61SJames Wright   PetscScalar second   = 1;  // 1 second in scaled time units
1283a8779fbSJames Wright   PetscScalar Kelvin   = 1;  // 1 Kelvin in scaled temperature units
1293a8779fbSJames Wright   PetscScalar W_per_m_K, Pascal, J_per_kg_K, m_per_squared_s;
1303a8779fbSJames Wright 
1313a8779fbSJames Wright   // ------------------------------------------------------
1323a8779fbSJames Wright   //              Command line Options
1333a8779fbSJames Wright   // ------------------------------------------------------
1342b916ea7SJeremy L Thompson   PetscOptionsBegin(comm, NULL, "Options for Newtonian Ideal Gas based problem", NULL);
135cbe60e31SLeila Ghaffari   // -- Conservative vs Primitive variables
1362b916ea7SJeremy L Thompson   PetscCall(PetscOptionsEnum("-state_var", "State variables used", NULL, StateVariables, (PetscEnum)(state_var = STATEVAR_CONSERVATIVE),
1372b916ea7SJeremy L Thompson                              (PetscEnum *)&state_var, NULL));
1383636f6a4SJames Wright 
1393636f6a4SJames Wright   switch (state_var) {
1403636f6a4SJames Wright     case STATEVAR_CONSERVATIVE:
141b8fb7609SAdeleke O. Bankole       problem->ics.qfunction                       = ICsNewtonianIG_Conserv;
142b8fb7609SAdeleke O. Bankole       problem->ics.qfunction_loc                   = ICsNewtonianIG_Conserv_loc;
143cbe60e31SLeila Ghaffari       problem->apply_vol_rhs.qfunction             = RHSFunction_Newtonian;
144cbe60e31SLeila Ghaffari       problem->apply_vol_rhs.qfunction_loc         = RHSFunction_Newtonian_loc;
14576555becSJames Wright       problem->apply_vol_ifunction.qfunction       = IFunction_Newtonian_Conserv;
14676555becSJames Wright       problem->apply_vol_ifunction.qfunction_loc   = IFunction_Newtonian_Conserv_loc;
14776555becSJames Wright       problem->apply_vol_ijacobian.qfunction       = IJacobian_Newtonian_Conserv;
14876555becSJames Wright       problem->apply_vol_ijacobian.qfunction_loc   = IJacobian_Newtonian_Conserv_loc;
149d4559bbeSJames Wright       problem->apply_inflow.qfunction              = BoundaryIntegral_Conserv;
150d4559bbeSJames Wright       problem->apply_inflow.qfunction_loc          = BoundaryIntegral_Conserv_loc;
151d4559bbeSJames Wright       problem->apply_inflow_jacobian.qfunction     = BoundaryIntegral_Jacobian_Conserv;
152d4559bbeSJames Wright       problem->apply_inflow_jacobian.qfunction_loc = BoundaryIntegral_Jacobian_Conserv_loc;
1533636f6a4SJames Wright       break;
1543636f6a4SJames Wright 
1553636f6a4SJames Wright     case STATEVAR_PRIMITIVE:
1563636f6a4SJames Wright       problem->ics.qfunction                       = ICsNewtonianIG_Prim;
1573636f6a4SJames Wright       problem->ics.qfunction_loc                   = ICsNewtonianIG_Prim_loc;
1583636f6a4SJames Wright       problem->apply_vol_ifunction.qfunction       = IFunction_Newtonian_Prim;
1593636f6a4SJames Wright       problem->apply_vol_ifunction.qfunction_loc   = IFunction_Newtonian_Prim_loc;
1603636f6a4SJames Wright       problem->apply_vol_ijacobian.qfunction       = IJacobian_Newtonian_Prim;
1613636f6a4SJames Wright       problem->apply_vol_ijacobian.qfunction_loc   = IJacobian_Newtonian_Prim_loc;
1623636f6a4SJames Wright       problem->apply_inflow.qfunction              = BoundaryIntegral_Prim;
1633636f6a4SJames Wright       problem->apply_inflow.qfunction_loc          = BoundaryIntegral_Prim_loc;
1643636f6a4SJames Wright       problem->apply_inflow_jacobian.qfunction     = BoundaryIntegral_Jacobian_Prim;
1653636f6a4SJames Wright       problem->apply_inflow_jacobian.qfunction_loc = BoundaryIntegral_Jacobian_Prim_loc;
1663636f6a4SJames Wright       break;
167cbe60e31SLeila Ghaffari   }
1681485969bSJeremy L Thompson 
1693a8779fbSJames Wright   // -- Physics
1702b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-cv", "Heat capacity at constant volume", NULL, cv, &cv, NULL));
1712b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-cp", "Heat capacity at constant pressure", NULL, cp, &cp, NULL));
1722b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-lambda", "Stokes hypothesis second viscosity coefficient", NULL, lambda, &lambda, NULL));
1732b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-mu", "Shear dynamic viscosity coefficient", NULL, mu, &mu, NULL));
1742b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-k", "Thermal conductivity", NULL, k, &k, NULL));
1753a8779fbSJames Wright 
176bb8a0c61SJames Wright   PetscInt dim = problem->dim;
1772b916ea7SJeremy L Thompson   PetscCall(PetscOptionsRealArray("-g", "Gravitational acceleration", NULL, g, &dim, NULL));
1782b916ea7SJeremy L Thompson   PetscCall(PetscOptionsEnum("-stab", "Stabilization method", NULL, StabilizationTypes, (PetscEnum)(stab = STAB_NONE), (PetscEnum *)&stab, NULL));
1792b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-c_tau", "Stabilization constant", NULL, c_tau, &c_tau, NULL));
1802b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_t", "Stabilization time constant", NULL, Ctau_t, &Ctau_t, NULL));
1812b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_v", "Stabilization viscous constant", NULL, Ctau_v, &Ctau_v, NULL));
1822b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_C", "Stabilization continuity constant", NULL, Ctau_C, &Ctau_C, NULL));
1832b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_M", "Stabilization momentum constant", NULL, Ctau_M, &Ctau_M, NULL));
1842b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-Ctau_E", "Stabilization energy constant", NULL, Ctau_E, &Ctau_E, NULL));
1852b916ea7SJeremy L Thompson   PetscCall(PetscOptionsBool("-implicit", "Use implicit (IFunction) formulation", NULL, implicit = PETSC_FALSE, &implicit, NULL));
1862b916ea7SJeremy L Thompson   PetscCall(PetscOptionsBool("-newtonian_unit_tests", "Run Newtonian unit tests", NULL, unit_tests = PETSC_FALSE, &unit_tests, NULL));
1873a8779fbSJames Wright 
188*db95602eSJames Wright   dim = 3;
189b8fb7609SAdeleke O. Bankole   PetscCall(PetscOptionsScalar("-reference_pressure", "Reference/initial pressure", NULL, reference.pressure, &reference.pressure, NULL));
190b8fb7609SAdeleke O. Bankole   PetscCall(PetscOptionsScalarArray("-reference_velocity", "Reference/initial velocity", NULL, reference.velocity, &dim, NULL));
191b8fb7609SAdeleke O. Bankole   PetscCall(PetscOptionsScalar("-reference_temperature", "Reference/initial temperature", NULL, reference.temperature, &reference.temperature, NULL));
192b8fb7609SAdeleke O. Bankole 
1933a8779fbSJames Wright   // -- Units
1942b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-units_meter", "1 meter in scaled length units", NULL, meter, &meter, NULL));
1953a8779fbSJames Wright   meter = fabs(meter);
1962b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-units_kilogram", "1 kilogram in scaled mass units", NULL, kilogram, &kilogram, NULL));
1973a8779fbSJames Wright   kilogram = fabs(kilogram);
1982b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-units_second", "1 second in scaled time units", NULL, second, &second, NULL));
1993a8779fbSJames Wright   second = fabs(second);
2002b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-units_Kelvin", "1 Kelvin in scaled temperature units", NULL, Kelvin, &Kelvin, NULL));
2013a8779fbSJames Wright   Kelvin = fabs(Kelvin);
2023a8779fbSJames Wright 
2033a8779fbSJames Wright   // -- Warnings
2043a8779fbSJames Wright   if (stab == STAB_SUPG && !implicit) {
2052b916ea7SJeremy L Thompson     PetscCall(PetscPrintf(comm, "Warning! Use -stab supg only with -implicit\n"));
2063a8779fbSJames Wright   }
2075d28dccaSJames Wright   PetscCheck(!(state_var == STATEVAR_PRIMITIVE && !implicit), comm, PETSC_ERR_SUP,
2085d28dccaSJames Wright              "RHSFunction is not provided for primitive variables (use -state_var primitive only with -implicit)\n");
209e7754af5SKenneth E. Jansen 
210e7754af5SKenneth E. Jansen   PetscCall(PetscOptionsScalar("-idl_decay_time", "Characteristic timescale of the pressure deviance decay. The timestep is good starting point",
211e7754af5SKenneth E. Jansen                                NULL, idl_decay_time, &idl_decay_time, &idl_enable));
212e7754af5SKenneth E. Jansen   if (idl_enable && idl_decay_time == 0) SETERRQ(comm, PETSC_ERR_SUP, "idl_decay_time may not be equal to zero.");
213e7754af5SKenneth E. Jansen   else if (idl_decay_time < 0) idl_enable = PETSC_FALSE;
214e7754af5SKenneth E. Jansen   PetscCall(PetscOptionsScalar("-idl_start", "Start of IDL in the x direction", NULL, idl_start, &idl_start, NULL));
215e7754af5SKenneth E. Jansen   PetscCall(PetscOptionsScalar("-idl_length", "Length of IDL in the positive x direction", NULL, idl_length, &idl_length, NULL));
2161485969bSJeremy L Thompson   PetscOptionsEnd();
2173a8779fbSJames Wright 
2183a8779fbSJames Wright   // ------------------------------------------------------
2193a8779fbSJames Wright   //           Set up the PETSc context
2203a8779fbSJames Wright   // ------------------------------------------------------
2213a8779fbSJames Wright   // -- Define derived units
2223a8779fbSJames Wright   Pascal          = kilogram / (meter * PetscSqr(second));
2233a8779fbSJames Wright   J_per_kg_K      = PetscSqr(meter) / (PetscSqr(second) * Kelvin);
2243a8779fbSJames Wright   m_per_squared_s = meter / PetscSqr(second);
2253a8779fbSJames Wright   W_per_m_K       = kilogram * meter / (pow(second, 3) * Kelvin);
2263a8779fbSJames Wright 
2273a8779fbSJames Wright   user->units->meter           = meter;
2283a8779fbSJames Wright   user->units->kilogram        = kilogram;
2293a8779fbSJames Wright   user->units->second          = second;
2303a8779fbSJames Wright   user->units->Kelvin          = Kelvin;
2313a8779fbSJames Wright   user->units->Pascal          = Pascal;
2323a8779fbSJames Wright   user->units->J_per_kg_K      = J_per_kg_K;
2333a8779fbSJames Wright   user->units->m_per_squared_s = m_per_squared_s;
2343a8779fbSJames Wright   user->units->W_per_m_K       = W_per_m_K;
2353a8779fbSJames Wright 
2363a8779fbSJames Wright   // ------------------------------------------------------
2373a8779fbSJames Wright   //           Set up the libCEED context
2383a8779fbSJames Wright   // ------------------------------------------------------
2393a8779fbSJames Wright   // -- Scale variables to desired units
2403a8779fbSJames Wright   cv *= J_per_kg_K;
2413a8779fbSJames Wright   cp *= J_per_kg_K;
2423a8779fbSJames Wright   mu *= Pascal * second;
2433a8779fbSJames Wright   k *= W_per_m_K;
244493642f1SJames Wright   for (PetscInt i = 0; i < 3; i++) domain_size[i] *= meter;
245493642f1SJames Wright   for (PetscInt i = 0; i < 3; i++) g[i] *= m_per_squared_s;
246b8fb7609SAdeleke O. Bankole   reference.pressure *= Pascal;
247b8fb7609SAdeleke O. Bankole   for (PetscInt i = 0; i < 3; i++) reference.velocity[i] *= meter / second;
248b8fb7609SAdeleke O. Bankole   reference.temperature *= Kelvin;
2493a8779fbSJames Wright   problem->dm_scale = meter;
2503a8779fbSJames Wright 
2513a8779fbSJames Wright   // -- Solver Settings
2523a8779fbSJames Wright   user->phys->stab          = stab;
2533a8779fbSJames Wright   user->phys->implicit      = implicit;
2543636f6a4SJames Wright   user->phys->state_var     = state_var;
2553a8779fbSJames Wright   user->phys->has_curr_time = has_curr_time;
2563a8779fbSJames Wright 
2573a8779fbSJames Wright   // -- QFunction Context
25815a3537eSJed Brown   newtonian_ig_ctx->lambda        = lambda;
25915a3537eSJed Brown   newtonian_ig_ctx->mu            = mu;
26015a3537eSJed Brown   newtonian_ig_ctx->k             = k;
26115a3537eSJed Brown   newtonian_ig_ctx->cv            = cv;
26215a3537eSJed Brown   newtonian_ig_ctx->cp            = cp;
26315a3537eSJed Brown   newtonian_ig_ctx->c_tau         = c_tau;
26415a3537eSJed Brown   newtonian_ig_ctx->Ctau_t        = Ctau_t;
26515a3537eSJed Brown   newtonian_ig_ctx->Ctau_v        = Ctau_v;
26615a3537eSJed Brown   newtonian_ig_ctx->Ctau_C        = Ctau_C;
26715a3537eSJed Brown   newtonian_ig_ctx->Ctau_M        = Ctau_M;
26815a3537eSJed Brown   newtonian_ig_ctx->Ctau_E        = Ctau_E;
269e7754af5SKenneth E. Jansen   newtonian_ig_ctx->P0            = reference.pressure;
27015a3537eSJed Brown   newtonian_ig_ctx->stabilization = stab;
271c8c30d87SJed Brown   newtonian_ig_ctx->P0            = reference.pressure;
2728085925cSJames Wright   newtonian_ig_ctx->is_implicit   = implicit;
2733636f6a4SJames Wright   newtonian_ig_ctx->state_var     = state_var;
274e7754af5SKenneth E. Jansen   newtonian_ig_ctx->idl_enable    = idl_enable;
275e7754af5SKenneth E. Jansen   newtonian_ig_ctx->idl_amplitude = 1 / (idl_decay_time * second);
276e7754af5SKenneth E. Jansen   newtonian_ig_ctx->idl_start     = idl_start * meter;
277e7754af5SKenneth E. Jansen   newtonian_ig_ctx->idl_length    = idl_length * meter;
2782b916ea7SJeremy L Thompson   PetscCall(PetscArraycpy(newtonian_ig_ctx->g, g, 3));
2793a8779fbSJames Wright 
280b8fb7609SAdeleke O. Bankole   // -- Setup Context
281b8fb7609SAdeleke O. Bankole   setup_context->reference = reference;
282b8fb7609SAdeleke O. Bankole   setup_context->gas       = *newtonian_ig_ctx;
283b8fb7609SAdeleke O. Bankole   setup_context->lx        = domain_size[0];
284b8fb7609SAdeleke O. Bankole   setup_context->ly        = domain_size[1];
285b8fb7609SAdeleke O. Bankole   setup_context->lz        = domain_size[2];
286b8fb7609SAdeleke O. Bankole   setup_context->time      = 0;
287b8fb7609SAdeleke O. Bankole 
288b8fb7609SAdeleke O. Bankole   if (bc->num_freestream > 0) PetscCall(FreestreamBCSetup(problem, dm, ctx, newtonian_ig_ctx, &reference));
289c8c30d87SJed Brown   if (bc->num_outflow > 0) PetscCall(OutflowBCSetup(problem, dm, ctx, newtonian_ig_ctx, &reference));
2900bc3fea4SJames Wright 
291b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextCreate(user->ceed, &problem->ics.qfunction_context));
292b4c37c5cSJames Wright   PetscCallCeed(ceed,
293b4c37c5cSJames Wright                 CeedQFunctionContextSetData(problem->ics.qfunction_context, CEED_MEM_HOST, CEED_USE_POINTER, sizeof(*setup_context), setup_context));
294b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextSetDataDestroy(problem->ics.qfunction_context, CEED_MEM_HOST, FreeContextPetsc));
295b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRegisterDouble(problem->ics.qfunction_context, "evaluation time", offsetof(struct SetupContext_, time), 1,
296b4c37c5cSJames Wright                                                          "Time of evaluation"));
29715a3537eSJed Brown 
298b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextCreate(user->ceed, &newtonian_ig_context));
299b4c37c5cSJames Wright   PetscCallCeed(ceed,
300b4c37c5cSJames Wright                 CeedQFunctionContextSetData(newtonian_ig_context, CEED_MEM_HOST, CEED_USE_POINTER, sizeof(*newtonian_ig_ctx), newtonian_ig_ctx));
301b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextSetDataDestroy(newtonian_ig_context, CEED_MEM_HOST, FreeContextPetsc));
302b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRegisterDouble(newtonian_ig_context, "timestep size", offsetof(struct NewtonianIdealGasContext_, dt), 1,
303b4c37c5cSJames Wright                                                          "Size of timestep, delta t"));
304b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRegisterDouble(newtonian_ig_context, "ijacobian time shift",
305b4c37c5cSJames Wright                                                          offsetof(struct NewtonianIdealGasContext_, ijacobian_time_shift), 1,
306b4c37c5cSJames Wright                                                          "Shift for mass matrix in IJacobian"));
307b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRegisterDouble(newtonian_ig_context, "solution time", offsetof(struct NewtonianIdealGasContext_, time), 1,
308b4c37c5cSJames Wright                                                          "Current solution time"));
309a8bca8acSJames Wright 
31015a3537eSJed Brown   problem->apply_vol_rhs.qfunction_context = newtonian_ig_context;
311b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(newtonian_ig_context, &problem->apply_vol_ifunction.qfunction_context));
312b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(newtonian_ig_context, &problem->apply_vol_ijacobian.qfunction_context));
313b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(newtonian_ig_context, &problem->apply_inflow.qfunction_context));
314b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(newtonian_ig_context, &problem->apply_inflow_jacobian.qfunction_context));
315f0b65372SJed Brown 
316f0b65372SJed Brown   if (unit_tests) {
317f0b65372SJed Brown     PetscCall(UnitTests_Newtonian(user, newtonian_ig_ctx));
318f0b65372SJed Brown   }
319d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
3203a8779fbSJames Wright }
3213a8779fbSJames Wright 
3222d49c0afSJames Wright PetscErrorCode PRINT_NEWTONIAN(User user, ProblemData *problem, AppCtx app_ctx) {
3232d49c0afSJames Wright   MPI_Comm                 comm = user->comm;
324b4c37c5cSJames Wright   Ceed                     ceed = user->ceed;
32515a3537eSJed Brown   NewtonianIdealGasContext newtonian_ctx;
32615a3537eSJed Brown 
3273a8779fbSJames Wright   PetscFunctionBeginUser;
328b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextGetData(problem->apply_vol_rhs.qfunction_context, CEED_MEM_HOST, &newtonian_ctx));
3292b916ea7SJeremy L Thompson   PetscCall(PetscPrintf(comm,
33015a3537eSJed Brown                         "  Problem:\n"
33115a3537eSJed Brown                         "    Problem Name                       : %s\n"
33215a3537eSJed Brown                         "    Stabilization                      : %s\n",
3332b916ea7SJeremy L Thompson                         app_ctx->problem_name, StabilizationTypes[newtonian_ctx->stabilization]));
334b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRestoreData(problem->apply_vol_rhs.qfunction_context, &newtonian_ctx));
335d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
3363a8779fbSJames Wright }
337