xref: /honee/problems/blasius.c (revision fcb2c22a40d027d860b73be9ac89e2e220a55865)
1dc936754SJeremy L Thompson // Copyright (c) 2017-2024, Lawrence Livermore National Security, LLC and other CEED contributors.
2bb8a0c61SJames Wright // All Rights Reserved. See the top-level LICENSE and NOTICE files for details.
3bb8a0c61SJames Wright //
4bb8a0c61SJames Wright // SPDX-License-Identifier: BSD-2-Clause
5bb8a0c61SJames Wright //
6bb8a0c61SJames Wright // This file is part of CEED:  http://github.com/ceed
7bb8a0c61SJames Wright 
8bb8a0c61SJames Wright /// @file
9bb8a0c61SJames Wright /// Utility functions for setting up Blasius Boundary Layer
10bb8a0c61SJames Wright 
11bb8a0c61SJames Wright #include "../qfunctions/blasius.h"
122b916ea7SJeremy L Thompson 
13e419654dSJeremy L Thompson #include <ceed.h>
14e419654dSJeremy L Thompson #include <petscdm.h>
15e419654dSJeremy L Thompson #include <petscdt.h>
16e419654dSJeremy L Thompson 
172b916ea7SJeremy L Thompson #include "../navierstokes.h"
18493642f1SJames Wright #include "stg_shur14.h"
19bb8a0c61SJames Wright 
20e0d1a4dfSLeila Ghaffari PetscErrorCode CompressibleBlasiusResidual(SNES snes, Vec X, Vec R, void *ctx) {
21e0d1a4dfSLeila Ghaffari   const BlasiusContext blasius = (BlasiusContext)ctx;
22e0d1a4dfSLeila Ghaffari   const PetscScalar   *Tf, *Th;  // Chebyshev coefficients
23e0d1a4dfSLeila Ghaffari   PetscScalar         *r, f[4], h[4];
24e0d1a4dfSLeila Ghaffari   PetscInt             N       = blasius->n_cheb;
25*fcb2c22aSJames Wright   State                S_infty = blasius->S_infty;
26*fcb2c22aSJames Wright   CeedScalar           U_infty = sqrt(Dot3(S_infty.Y.velocity, S_infty.Y.velocity));
2706f41313SJames Wright 
2806f41313SJames Wright   PetscFunctionBeginUser;
29*fcb2c22aSJames Wright   PetscScalar Ma = Mach(&blasius->newtonian_ctx, S_infty.Y.temperature, U_infty), Pr = Prandtl(&blasius->newtonian_ctx),
30e0d1a4dfSLeila Ghaffari               gamma = HeatCapacityRatio(&blasius->newtonian_ctx);
3106f41313SJames Wright 
32e0d1a4dfSLeila Ghaffari   PetscCall(VecGetArrayRead(X, &Tf));
33e0d1a4dfSLeila Ghaffari   Th = Tf + N;
34e0d1a4dfSLeila Ghaffari   PetscCall(VecGetArray(R, &r));
35e0d1a4dfSLeila Ghaffari 
36e0d1a4dfSLeila Ghaffari   // Left boundary conditions f = f' = 0
37e0d1a4dfSLeila Ghaffari   ChebyshevEval(N, Tf, -1., blasius->eta_max, f);
38e0d1a4dfSLeila Ghaffari   r[0] = f[0];
39e0d1a4dfSLeila Ghaffari   r[1] = f[1];
40e0d1a4dfSLeila Ghaffari 
41e0d1a4dfSLeila Ghaffari   // f - right end boundary condition
42e0d1a4dfSLeila Ghaffari   ChebyshevEval(N, Tf, 1., blasius->eta_max, f);
43e0d1a4dfSLeila Ghaffari   r[2] = f[1] - 1.;
44e0d1a4dfSLeila Ghaffari 
45e0d1a4dfSLeila Ghaffari   for (int i = 0; i < N - 3; i++) {
46e0d1a4dfSLeila Ghaffari     ChebyshevEval(N, Tf, blasius->X[i], blasius->eta_max, f);
47e0d1a4dfSLeila Ghaffari     ChebyshevEval(N - 1, Th, blasius->X[i], blasius->eta_max, h);
4804e40bb6SJeremy L Thompson     // mu and rho generally depend on h.
4904e40bb6SJeremy L Thompson     // We naively assume constant mu.
500d850f2eSLeila Ghaffari     // For an ideal gas at constant pressure, density is inversely proportional to enthalpy.
510d850f2eSLeila Ghaffari     // The *_tilde values are *relative* to their freestream values, and we proved first derivatives here.
520d850f2eSLeila Ghaffari     const PetscScalar mu_tilde[2]     = {1, 0};
530d850f2eSLeila Ghaffari     const PetscScalar rho_tilde[2]    = {1 / h[0], -h[1] / PetscSqr(h[0])};
540d850f2eSLeila Ghaffari     const PetscScalar mu_rho_tilde[2] = {
550d850f2eSLeila Ghaffari         mu_tilde[0] * rho_tilde[0],
560d850f2eSLeila Ghaffari         mu_tilde[1] * rho_tilde[0] + mu_tilde[0] * rho_tilde[1],
570d850f2eSLeila Ghaffari     };
580d850f2eSLeila Ghaffari     r[3 + i]     = 2 * (mu_rho_tilde[0] * f[3] + mu_rho_tilde[1] * f[2]) + f[2] * f[0];
592b916ea7SJeremy L Thompson     r[N + 2 + i] = (mu_rho_tilde[0] * h[2] + mu_rho_tilde[1] * h[1]) + Pr * f[0] * h[1] + Pr * (gamma - 1) * mu_rho_tilde[0] * PetscSqr(Ma * f[2]);
60e0d1a4dfSLeila Ghaffari   }
61e0d1a4dfSLeila Ghaffari 
62e0d1a4dfSLeila Ghaffari   // h - left end boundary condition
63e0d1a4dfSLeila Ghaffari   ChebyshevEval(N - 1, Th, -1., blasius->eta_max, h);
64*fcb2c22aSJames Wright   r[N] = h[0] - blasius->T_wall / S_infty.Y.temperature;
65e0d1a4dfSLeila Ghaffari 
66e0d1a4dfSLeila Ghaffari   // h - right end boundary condition
67e0d1a4dfSLeila Ghaffari   ChebyshevEval(N - 1, Th, 1., blasius->eta_max, h);
68e0d1a4dfSLeila Ghaffari   r[N + 1] = h[0] - 1.;
69e0d1a4dfSLeila Ghaffari 
70e0d1a4dfSLeila Ghaffari   // Restore vectors
71e0d1a4dfSLeila Ghaffari   PetscCall(VecRestoreArrayRead(X, &Tf));
72e0d1a4dfSLeila Ghaffari   PetscCall(VecRestoreArray(R, &r));
73d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
74e0d1a4dfSLeila Ghaffari }
75e0d1a4dfSLeila Ghaffari 
76e0d1a4dfSLeila Ghaffari PetscErrorCode ComputeChebyshevCoefficients(BlasiusContext blasius) {
77e0d1a4dfSLeila Ghaffari   SNES                snes;
78e0d1a4dfSLeila Ghaffari   Vec                 sol, res;
79e0d1a4dfSLeila Ghaffari   PetscReal          *w;
80e0d1a4dfSLeila Ghaffari   PetscInt            N = blasius->n_cheb;
810d850f2eSLeila Ghaffari   SNESConvergedReason reason;
82e0d1a4dfSLeila Ghaffari   const PetscScalar  *cheb_coefs;
830d850f2eSLeila Ghaffari 
8406f41313SJames Wright   PetscFunctionBeginUser;
850d850f2eSLeila Ghaffari   // Allocate memory
86e0d1a4dfSLeila Ghaffari   PetscCall(PetscMalloc2(N - 3, &blasius->X, N - 3, &w));
87e0d1a4dfSLeila Ghaffari   PetscCall(PetscDTGaussQuadrature(N - 3, -1., 1., blasius->X, w));
880d850f2eSLeila Ghaffari 
890d850f2eSLeila Ghaffari   // Snes solve
90e0d1a4dfSLeila Ghaffari   PetscCall(SNESCreate(PETSC_COMM_SELF, &snes));
91e0d1a4dfSLeila Ghaffari   PetscCall(VecCreate(PETSC_COMM_SELF, &sol));
92e0d1a4dfSLeila Ghaffari   PetscCall(VecSetSizes(sol, PETSC_DECIDE, 2 * N - 1));
93e0d1a4dfSLeila Ghaffari   PetscCall(VecSetFromOptions(sol));
940d850f2eSLeila Ghaffari   // Constant relative enthalpy 1 as initial guess
950d850f2eSLeila Ghaffari   PetscCall(VecSetValue(sol, N, 1., INSERT_VALUES));
96e0d1a4dfSLeila Ghaffari   PetscCall(VecDuplicate(sol, &res));
97e0d1a4dfSLeila Ghaffari   PetscCall(SNESSetFunction(snes, res, CompressibleBlasiusResidual, blasius));
980d850f2eSLeila Ghaffari   PetscCall(SNESSetOptionsPrefix(snes, "chebyshev_"));
99e0d1a4dfSLeila Ghaffari   PetscCall(SNESSetFromOptions(snes));
100e0d1a4dfSLeila Ghaffari   PetscCall(SNESSolve(snes, NULL, sol));
1010d850f2eSLeila Ghaffari   PetscCall(SNESGetConvergedReason(snes, &reason));
1025d28dccaSJames Wright   PetscCheck(reason >= 0, PETSC_COMM_WORLD, PETSC_ERR_CONV_FAILED, "The Chebyshev solve failed.\n");
1030d850f2eSLeila Ghaffari 
1040d850f2eSLeila Ghaffari   // Assign Chebyshev coefficients
105e0d1a4dfSLeila Ghaffari   PetscCall(VecGetArrayRead(sol, &cheb_coefs));
106e0d1a4dfSLeila Ghaffari   for (int i = 0; i < N; i++) blasius->Tf_cheb[i] = cheb_coefs[i];
107e0d1a4dfSLeila Ghaffari   for (int i = 0; i < N - 1; i++) blasius->Th_cheb[i] = cheb_coefs[i + N];
1080d850f2eSLeila Ghaffari 
1090d850f2eSLeila Ghaffari   // Destroy objects
110e0d1a4dfSLeila Ghaffari   PetscCall(PetscFree2(blasius->X, w));
111e0d1a4dfSLeila Ghaffari   PetscCall(VecDestroy(&sol));
112e0d1a4dfSLeila Ghaffari   PetscCall(VecDestroy(&res));
113e0d1a4dfSLeila Ghaffari   PetscCall(SNESDestroy(&snes));
114d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
115e0d1a4dfSLeila Ghaffari }
116e0d1a4dfSLeila Ghaffari 
1172b916ea7SJeremy L Thompson static PetscErrorCode GetYNodeLocs(const MPI_Comm comm, const char path[PETSC_MAX_PATH_LEN], PetscReal **pynodes, PetscInt *nynodes) {
118defe8520SJames Wright   int            ndims, dims[2];
119f362fe62SJames Wright   FILE          *fp;
120f362fe62SJames Wright   const PetscInt char_array_len = 512;
121f362fe62SJames Wright   char           line[char_array_len];
122f362fe62SJames Wright   char         **array;
123f362fe62SJames Wright   PetscReal     *node_locs;
124f362fe62SJames Wright 
12506f41313SJames Wright   PetscFunctionBeginUser;
1262b916ea7SJeremy L Thompson   PetscCall(PetscFOpen(comm, path, "r", &fp));
1272b916ea7SJeremy L Thompson   PetscCall(PetscSynchronizedFGets(comm, fp, char_array_len, line));
1282b916ea7SJeremy L Thompson   PetscCall(PetscStrToArray(line, ' ', &ndims, &array));
129f362fe62SJames Wright 
130f362fe62SJames Wright   for (PetscInt i = 0; i < ndims; i++) dims[i] = atoi(array[i]);
131f362fe62SJames Wright   if (ndims < 2) dims[1] = 1;  // Assume 1 column of data is not otherwise specified
132f362fe62SJames Wright   *nynodes = dims[0];
1332b916ea7SJeremy L Thompson   PetscCall(PetscMalloc1(*nynodes, &node_locs));
134f362fe62SJames Wright 
135f362fe62SJames Wright   for (PetscInt i = 0; i < dims[0]; i++) {
1362b916ea7SJeremy L Thompson     PetscCall(PetscSynchronizedFGets(comm, fp, char_array_len, line));
1372b916ea7SJeremy L Thompson     PetscCall(PetscStrToArray(line, ' ', &ndims, &array));
1385d28dccaSJames Wright     PetscCheck(ndims == dims[1], comm, PETSC_ERR_FILE_UNEXPECTED,
139defe8520SJames Wright                "Line %" PetscInt_FMT " of %s does not contain correct number of columns (%d instead of %d)", i, path, ndims, dims[1]);
140f362fe62SJames Wright 
141f362fe62SJames Wright     node_locs[i] = (PetscReal)atof(array[0]);
142f362fe62SJames Wright   }
1432b916ea7SJeremy L Thompson   PetscCall(PetscFClose(comm, fp));
144f362fe62SJames Wright   *pynodes = node_locs;
145d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
146f362fe62SJames Wright }
147f362fe62SJames Wright 
148bb8a0c61SJames Wright /* \brief Modify the domain and mesh for blasius
149bb8a0c61SJames Wright  *
15004e40bb6SJeremy L Thompson  * Modifies mesh such that `N` elements are within `refine_height` with a geometric growth ratio of `growth`. Excess elements are then distributed
151493642f1SJames Wright  * linearly in logspace to the top surface.
152bb8a0c61SJames Wright  *
15304e40bb6SJeremy L Thompson  * The top surface is also angled downwards, so that it may be used as an outflow.
15404e40bb6SJeremy L Thompson  * It's angle is controlled by `top_angle` (in units of degrees).
155f362fe62SJames Wright  *
15604e40bb6SJeremy L Thompson  * If `node_locs` is not NULL, then the nodes will be placed at `node_locs` locations.
15704e40bb6SJeremy L Thompson  * If it is NULL, then the modified coordinate values will be set in the array, along with `num_node_locs`.
158bb8a0c61SJames Wright  */
1592b916ea7SJeremy L Thompson static PetscErrorCode ModifyMesh(MPI_Comm comm, DM dm, PetscInt dim, PetscReal growth, PetscInt N, PetscReal refine_height, PetscReal top_angle,
1608e63b9cbSJames Wright                                  PetscReal *node_locs[], PetscInt *num_node_locs) {
1612b916ea7SJeremy L Thompson   PetscInt     narr, ncoords;
162bb8a0c61SJames Wright   PetscReal    domain_min[3], domain_max[3], domain_size[3];
163bb8a0c61SJames Wright   PetscScalar *arr_coords;
164bb8a0c61SJames Wright   Vec          vec_coords;
16506f41313SJames Wright 
166bb8a0c61SJames Wright   PetscFunctionBeginUser;
167bb8a0c61SJames Wright   PetscReal angle_coeff = tan(top_angle * (M_PI / 180));
168bb8a0c61SJames Wright   // Get domain boundary information
1692b916ea7SJeremy L Thompson   PetscCall(DMGetBoundingBox(dm, domain_min, domain_max));
170493642f1SJames Wright   for (PetscInt i = 0; i < 3; i++) domain_size[i] = domain_max[i] - domain_min[i];
171bb8a0c61SJames Wright 
172bb8a0c61SJames Wright   // Get coords array from DM
1732b916ea7SJeremy L Thompson   PetscCall(DMGetCoordinatesLocal(dm, &vec_coords));
1742b916ea7SJeremy L Thompson   PetscCall(VecGetLocalSize(vec_coords, &narr));
1752b916ea7SJeremy L Thompson   PetscCall(VecGetArray(vec_coords, &arr_coords));
176bb8a0c61SJames Wright 
177bb8a0c61SJames Wright   PetscScalar(*coords)[dim] = (PetscScalar(*)[dim])arr_coords;
178bb8a0c61SJames Wright   ncoords                   = narr / dim;
179bb8a0c61SJames Wright 
180bb8a0c61SJames Wright   // Get mesh information
181bb8a0c61SJames Wright   PetscInt nmax = 3, faces[3];
1822b916ea7SJeremy L Thompson   PetscCall(PetscOptionsGetIntArray(NULL, NULL, "-dm_plex_box_faces", faces, &nmax, NULL));
183f362fe62SJames Wright   // Get element size of the box mesh, for indexing each node
184f362fe62SJames Wright   const PetscReal dybox = domain_size[1] / faces[1];
185bb8a0c61SJames Wright 
1868e63b9cbSJames Wright   if (!*node_locs) {
187bb8a0c61SJames Wright     // Calculate the first element height
188bb8a0c61SJames Wright     PetscReal dy1 = refine_height * (growth - 1) / (pow(growth, N) - 1);
189bb8a0c61SJames Wright 
190bb8a0c61SJames Wright     // Calculate log of sizing outside BL
191bb8a0c61SJames Wright     PetscReal logdy = (log(domain_max[1]) - log(refine_height)) / (faces[1] - N);
192bb8a0c61SJames Wright 
1938e63b9cbSJames Wright     *num_node_locs = faces[1] + 1;
1948e63b9cbSJames Wright     PetscReal *temp_node_locs;
1952b916ea7SJeremy L Thompson     PetscCall(PetscMalloc1(*num_node_locs, &temp_node_locs));
1968e63b9cbSJames Wright 
197493642f1SJames Wright     for (PetscInt i = 0; i < ncoords; i++) {
198bb8a0c61SJames Wright       PetscInt y_box_index = round(coords[i][1] / dybox);
199bb8a0c61SJames Wright       if (y_box_index <= N) {
2002b916ea7SJeremy L Thompson         coords[i][1] =
2012b916ea7SJeremy L Thompson             (1 - (coords[i][0] - domain_min[0]) * angle_coeff / domain_max[1]) * dy1 * (pow(growth, coords[i][1] / dybox) - 1) / (growth - 1);
202bb8a0c61SJames Wright       } else {
203bb8a0c61SJames Wright         PetscInt j   = y_box_index - N;
2042b916ea7SJeremy L Thompson         coords[i][1] = (1 - (coords[i][0] - domain_min[0]) * angle_coeff / domain_max[1]) * exp(log(refine_height) + logdy * j);
205f362fe62SJames Wright       }
2062b916ea7SJeremy L Thompson       if (coords[i][0] == domain_min[0] && coords[i][2] == domain_min[2]) temp_node_locs[y_box_index] = coords[i][1];
207f362fe62SJames Wright     }
2088e63b9cbSJames Wright 
2098e63b9cbSJames Wright     *node_locs = temp_node_locs;
210f362fe62SJames Wright   } else {
2115d28dccaSJames Wright     PetscCheck(*num_node_locs >= faces[1] + 1, comm, PETSC_ERR_FILE_UNEXPECTED,
212defe8520SJames Wright                "The y_node_locs_path has too few locations; There are %" PetscInt_FMT " + 1 nodes, but only %" PetscInt_FMT " locations given",
213defe8520SJames Wright                faces[1] + 1, *num_node_locs);
2148e63b9cbSJames Wright     if (*num_node_locs > faces[1] + 1) {
2152b916ea7SJeremy L Thompson       PetscCall(PetscPrintf(comm,
216defe8520SJames Wright                             "WARNING: y_node_locs_path has more locations (%" PetscInt_FMT ") "
217defe8520SJames Wright                             "than the mesh has nodes (%" PetscInt_FMT "). This maybe unintended.\n",
2182b916ea7SJeremy L Thompson                             *num_node_locs, faces[1] + 1));
219f362fe62SJames Wright     }
2208e63b9cbSJames Wright     PetscScalar max_y = (*node_locs)[faces[1]];
221f362fe62SJames Wright 
222f362fe62SJames Wright     for (PetscInt i = 0; i < ncoords; i++) {
223f362fe62SJames Wright       // Determine which y-node we're at
224f362fe62SJames Wright       PetscInt y_box_index = round(coords[i][1] / dybox);
2252b916ea7SJeremy L Thompson       coords[i][1]         = (1 - (coords[i][0] - domain_min[0]) * angle_coeff / max_y) * (*node_locs)[y_box_index];
226bb8a0c61SJames Wright     }
227bb8a0c61SJames Wright   }
228bb8a0c61SJames Wright 
2292b916ea7SJeremy L Thompson   PetscCall(VecRestoreArray(vec_coords, &arr_coords));
2302b916ea7SJeremy L Thompson   PetscCall(DMSetCoordinatesLocal(dm, vec_coords));
231d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
232bb8a0c61SJames Wright }
233bb8a0c61SJames Wright 
234991aef52SJames Wright PetscErrorCode NS_BLASIUS(ProblemData problem, DM dm, void *ctx, SimpleBC bc) {
235bb8a0c61SJames Wright   User                     user    = *(User *)ctx;
2364b0f6111SJames Wright   MPI_Comm                 comm    = user->comm;
237b4c37c5cSJames Wright   Ceed                     ceed    = user->ceed;
238493642f1SJames Wright   PetscBool                use_stg = PETSC_FALSE;
23915a3537eSJed Brown   BlasiusContext           blasius_ctx;
24015a3537eSJed Brown   NewtonianIdealGasContext newtonian_ig_ctx;
24115a3537eSJed Brown   CeedQFunctionContext     blasius_context;
24215a3537eSJed Brown 
243bb8a0c61SJames Wright   PetscFunctionBeginUser;
244d1c51a42SJames Wright   PetscCall(NS_NEWTONIAN_IG(problem, dm, ctx, bc));
2452b916ea7SJeremy L Thompson   PetscCall(PetscCalloc1(1, &blasius_ctx));
246bb8a0c61SJames Wright 
247bb8a0c61SJames Wright   // ------------------------------------------------------
248bb8a0c61SJames Wright   //               SET UP Blasius
249bb8a0c61SJames Wright   // ------------------------------------------------------
2509785fe93SJed Brown   problem->ics.qfunction     = ICsBlasius;
2519785fe93SJed Brown   problem->ics.qfunction_loc = ICsBlasius_loc;
252bb8a0c61SJames Wright 
253aef1eb53SLeila Ghaffari   CeedScalar U_inf                                = 40;           // m/s
254aef1eb53SLeila Ghaffari   CeedScalar T_inf                                = 288.;         // K
2550d850f2eSLeila Ghaffari   CeedScalar T_wall                               = 288.;         // K
256e0d1a4dfSLeila Ghaffari   CeedScalar delta0                               = 4.2e-3;       // m
257*fcb2c22aSJames Wright   CeedScalar P_inf                                = 1.01e5;       // Pa
258defe8520SJames Wright   PetscInt   N                                    = 20;           // Number of Chebyshev terms
2592acc7cbcSKenneth E. Jansen   PetscBool  weakT                                = PETSC_FALSE;  // weak density or temperature
2607470235eSJames Wright   PetscReal  mesh_refine_height                   = 5.9e-4;       // m
2617470235eSJames Wright   PetscReal  mesh_growth                          = 1.08;         // [-]
2627470235eSJames Wright   PetscInt   mesh_Ndelta                          = 45;           // [-]
2637470235eSJames Wright   PetscReal  mesh_top_angle                       = 5;            // degrees
264f362fe62SJames Wright   char       mesh_ynodes_path[PETSC_MAX_PATH_LEN] = "";
265*fcb2c22aSJames Wright   PetscBool  flg;
266bb8a0c61SJames Wright 
2673fd71269SJames Wright   PetscOptionsBegin(comm, NULL, "Options for BLASIUS problem", NULL);
2682b916ea7SJeremy L Thompson   PetscCall(PetscOptionsBool("-weakT", "Change from rho weak to T weak at inflow", NULL, weakT, &weakT, NULL));
2692b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-velocity_infinity", "Velocity at boundary layer edge", NULL, U_inf, &U_inf, NULL));
2702b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-temperature_infinity", "Temperature at boundary layer edge", NULL, T_inf, &T_inf, NULL));
271*fcb2c22aSJames Wright   PetscCall(PetscOptionsScalar("-pressure_infinity", "Pressure at boundary layer edge", NULL, P_inf, &P_inf, &flg));
272*fcb2c22aSJames Wright   PetscCall(PetscOptionsDeprecated("-P0", "-pressure_infinity", "libCEED 0.12.0", "Use -pressure_infinity to set pressure at boundary layer edge"));
273*fcb2c22aSJames Wright   if (!flg) PetscCall(PetscOptionsScalar("-P0", "Pressure at boundary layer edge", NULL, P_inf, &P_inf, &flg));
2742b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-temperature_wall", "Temperature at wall", NULL, T_wall, &T_wall, NULL));
2752b916ea7SJeremy L Thompson   PetscCall(PetscOptionsScalar("-delta0", "Boundary layer height at inflow", NULL, delta0, &delta0, NULL));
2762b916ea7SJeremy L Thompson   PetscCall(PetscOptionsInt("-n_chebyshev", "Number of Chebyshev terms", NULL, N, &N, NULL));
2772b916ea7SJeremy L Thompson   PetscCheck(3 <= N && N <= BLASIUS_MAX_N_CHEBYSHEV, comm, PETSC_ERR_ARG_OUTOFRANGE, "-n_chebyshev %" PetscInt_FMT " must be in range [3, %d]", N,
2780d850f2eSLeila Ghaffari              BLASIUS_MAX_N_CHEBYSHEV);
279f31f4833SJames Wright   if (user->app_ctx->mesh_transform_type == MESH_TRANSFORM_PLATEMESH) {
2802b916ea7SJeremy L Thompson     PetscCall(PetscOptionsBoundedInt("-platemesh_Ndelta", "Velocity at boundary layer edge", NULL, mesh_Ndelta, &mesh_Ndelta, NULL, 1));
281f31f4833SJames Wright     PetscCall(PetscOptionsScalar("-platemesh_refine_height", "Height of boundary layer mesh refinement", NULL, mesh_refine_height,
282f31f4833SJames Wright                                  &mesh_refine_height, NULL));
2832b916ea7SJeremy L Thompson     PetscCall(PetscOptionsScalar("-platemesh_growth", "Geometric growth rate of boundary layer mesh", NULL, mesh_growth, &mesh_growth, NULL));
2842b916ea7SJeremy L Thompson     PetscCall(
2852b916ea7SJeremy L Thompson         PetscOptionsScalar("-platemesh_top_angle", "Geometric top_angle rate of boundary layer mesh", NULL, mesh_top_angle, &mesh_top_angle, NULL));
2862b916ea7SJeremy L Thompson     PetscCall(PetscOptionsString("-platemesh_y_node_locs_path",
287f362fe62SJames Wright                                  "Path to file with y node locations. "
2882b916ea7SJeremy L Thompson                                  "If empty, will use the algorithmic mesh warping.",
2892b916ea7SJeremy L Thompson                                  NULL, mesh_ynodes_path, mesh_ynodes_path, sizeof(mesh_ynodes_path), NULL));
290f31f4833SJames Wright   }
2912b916ea7SJeremy L Thompson   PetscCall(PetscOptionsBool("-stg_use", "Use STG inflow boundary condition", NULL, use_stg, &use_stg, NULL));
292bb8a0c61SJames Wright   PetscOptionsEnd();
293bb8a0c61SJames Wright 
294bb8a0c61SJames Wright   PetscScalar meter  = user->units->meter;
295bb8a0c61SJames Wright   PetscScalar second = user->units->second;
296bb8a0c61SJames Wright   PetscScalar Kelvin = user->units->Kelvin;
297bb8a0c61SJames Wright   PetscScalar Pascal = user->units->Pascal;
298bb8a0c61SJames Wright 
299aef1eb53SLeila Ghaffari   T_inf *= Kelvin;
300e0d1a4dfSLeila Ghaffari   T_wall *= Kelvin;
301*fcb2c22aSJames Wright   P_inf *= Pascal;
302aef1eb53SLeila Ghaffari   U_inf *= meter / second;
303bb8a0c61SJames Wright   delta0 *= meter;
304bb8a0c61SJames Wright 
305f31f4833SJames Wright   if (user->app_ctx->mesh_transform_type == MESH_TRANSFORM_PLATEMESH) {
306f362fe62SJames Wright     PetscReal *mesh_ynodes  = NULL;
307f362fe62SJames Wright     PetscInt   mesh_nynodes = 0;
308c029f0c5SJames Wright     if (strcmp(mesh_ynodes_path, "")) PetscCall(GetYNodeLocs(comm, mesh_ynodes_path, &mesh_ynodes, &mesh_nynodes));
3092b916ea7SJeremy L Thompson     PetscCall(ModifyMesh(comm, dm, problem->dim, mesh_growth, mesh_Ndelta, mesh_refine_height, mesh_top_angle, &mesh_ynodes, &mesh_nynodes));
3109ef62cddSJames Wright     PetscCall(PetscFree(mesh_ynodes));
311c029f0c5SJames Wright   }
312bb8a0c61SJames Wright 
31315a3537eSJed Brown   // Some properties depend on parameters from NewtonianIdealGas
314b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextGetData(problem->apply_vol_rhs.qfunction_context, CEED_MEM_HOST, &newtonian_ig_ctx));
315bb8a0c61SJames Wright 
316*fcb2c22aSJames Wright   StatePrimitive Y_inf = {
317*fcb2c22aSJames Wright       .pressure = P_inf, .velocity = {U_inf, 0, 0},
318*fcb2c22aSJames Wright            .temperature = T_inf
319*fcb2c22aSJames Wright   };
320*fcb2c22aSJames Wright   State S_infty = StateFromPrimitive(newtonian_ig_ctx, Y_inf);
321*fcb2c22aSJames Wright 
322493642f1SJames Wright   blasius_ctx->weakT             = weakT;
323e0d1a4dfSLeila Ghaffari   blasius_ctx->T_wall            = T_wall;
32415a3537eSJed Brown   blasius_ctx->delta0            = delta0;
325*fcb2c22aSJames Wright   blasius_ctx->S_infty           = S_infty;
326e0d1a4dfSLeila Ghaffari   blasius_ctx->n_cheb            = N;
327*fcb2c22aSJames Wright   newtonian_ig_ctx->idl_pressure = P_inf;
32815a3537eSJed Brown   blasius_ctx->implicit          = user->phys->implicit;
32915a3537eSJed Brown   blasius_ctx->newtonian_ctx     = *newtonian_ig_ctx;
330493642f1SJames Wright 
331ef2c71fdSJames Wright   {
332e0d1a4dfSLeila Ghaffari     PetscReal domain_min[3], domain_max[3];
3332b916ea7SJeremy L Thompson     PetscCall(DMGetBoundingBox(dm, domain_min, domain_max));
334ef2c71fdSJames Wright     blasius_ctx->x_inflow = domain_min[0];
335e0d1a4dfSLeila Ghaffari     blasius_ctx->eta_max  = 5 * domain_max[1] / blasius_ctx->delta0;
336ef2c71fdSJames Wright   }
33725c92e8fSJames Wright   PetscBool diff_filter_mms = PETSC_FALSE;
33825c92e8fSJames Wright   PetscCall(PetscOptionsGetBool(NULL, NULL, "-diff_filter_mms", &diff_filter_mms, NULL));
33925c92e8fSJames Wright   if (!use_stg && !diff_filter_mms) PetscCall(ComputeChebyshevCoefficients(blasius_ctx));
340ef2c71fdSJames Wright 
341b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextRestoreData(problem->apply_vol_rhs.qfunction_context, &newtonian_ig_ctx));
342bb8a0c61SJames Wright 
343b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextCreate(user->ceed, &blasius_context));
344b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextSetData(blasius_context, CEED_MEM_HOST, CEED_USE_POINTER, sizeof(*blasius_ctx), blasius_ctx));
345b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextSetDataDestroy(blasius_context, CEED_MEM_HOST, FreeContextPetsc));
346bb8a0c61SJames Wright 
347b4c37c5cSJames Wright   PetscCallCeed(ceed, CeedQFunctionContextDestroy(&problem->ics.qfunction_context));
34815a3537eSJed Brown   problem->ics.qfunction_context = blasius_context;
349493642f1SJames Wright   if (use_stg) {
350*fcb2c22aSJames Wright     PetscCall(SetupStg(comm, dm, problem, user, weakT, S_infty.Y.temperature, S_infty.Y.pressure));
35125c92e8fSJames Wright   } else if (diff_filter_mms) {
35242454adaSJames Wright     PetscCall(DifferentialFilterMmsICSetup(problem));
3538085925cSJames Wright   } else {
3548085925cSJames Wright     problem->apply_inflow.qfunction              = Blasius_Inflow;
3558085925cSJames Wright     problem->apply_inflow.qfunction_loc          = Blasius_Inflow_loc;
3560aa41abfSJames Wright     problem->apply_inflow_jacobian.qfunction     = Blasius_Inflow_Jacobian;
3570aa41abfSJames Wright     problem->apply_inflow_jacobian.qfunction_loc = Blasius_Inflow_Jacobian_loc;
358b4c37c5cSJames Wright     PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(blasius_context, &problem->apply_inflow.qfunction_context));
359b4c37c5cSJames Wright     PetscCallCeed(ceed, CeedQFunctionContextReferenceCopy(blasius_context, &problem->apply_inflow_jacobian.qfunction_context));
360493642f1SJames Wright   }
361d949ddfcSJames Wright   PetscFunctionReturn(PETSC_SUCCESS);
362bb8a0c61SJames Wright }
363