xref: /libCEED/examples/fluids/qfunctions/turb_spanstats.h (revision 3a4208e6ce3b66d785191c280d69c76fbdf9a387)
1729f4e9bSJames Wright // Copyright (c) 2017-2023, Lawrence Livermore National Security, LLC and other CEED contributors.
2729f4e9bSJames Wright // All Rights Reserved. See the top-level LICENSE and NOTICE files for details.
3729f4e9bSJames Wright //
4729f4e9bSJames Wright // SPDX-License-Identifier: BSD-2-Clause
5729f4e9bSJames Wright //
6729f4e9bSJames Wright // This file is part of CEED:  http://github.com/ceed
7729f4e9bSJames Wright 
8729f4e9bSJames Wright #include <ceed.h>
9729f4e9bSJames Wright 
10729f4e9bSJames Wright #include "newtonian_state.h"
11*3a4208e6SJames Wright #include "turb_stats_types.h"
12729f4e9bSJames Wright #include "utils.h"
13729f4e9bSJames Wright 
14729f4e9bSJames Wright CEED_QFUNCTION_HELPER int ChildStatsCollection(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out, StateFromQi_t StateFromQi,
15729f4e9bSJames Wright                                                StateFromQi_fwd_t StateFromQi_fwd) {
16729f4e9bSJames Wright   const CeedScalar(*q)[CEED_Q_VLA]      = (const CeedScalar(*)[CEED_Q_VLA])in[0];
17729f4e9bSJames Wright   const CeedScalar(*q_data)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[1];
18729f4e9bSJames Wright   const CeedScalar(*x)[CEED_Q_VLA]      = (const CeedScalar(*)[CEED_Q_VLA])in[2];
19729f4e9bSJames Wright   CeedScalar(*v)[CEED_Q_VLA]            = (CeedScalar(*)[CEED_Q_VLA])out[0];
20729f4e9bSJames Wright 
21729f4e9bSJames Wright   NewtonianIdealGasContext context = (NewtonianIdealGasContext)ctx;
22729f4e9bSJames Wright 
23729f4e9bSJames Wright   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
24729f4e9bSJames Wright     const CeedScalar wdetJ = q_data[0][i];
25729f4e9bSJames Wright 
26729f4e9bSJames Wright     const CeedScalar qi[5]  = {q[0][i], q[1][i], q[2][i], q[3][i], q[4][i]};
27729f4e9bSJames Wright     const CeedScalar x_i[3] = {x[0][i], x[1][i], x[2][i]};
28729f4e9bSJames Wright     const State      s      = StateFromQi(context, qi, x_i);
29729f4e9bSJames Wright 
30*3a4208e6SJames Wright     v[TURB_MEAN_DENSITY][i]                    = wdetJ * s.U.density;
31*3a4208e6SJames Wright     v[TURB_MEAN_PRESSURE][i]                   = wdetJ * s.Y.pressure;
32*3a4208e6SJames Wright     v[TURB_MEAN_PRESSURE_SQUARED][i]           = wdetJ * Square(s.Y.pressure);
33*3a4208e6SJames Wright     v[TURB_MEAN_PRESSURE_VELOCITY_X][i]        = wdetJ * s.Y.pressure * s.Y.velocity[0];
34*3a4208e6SJames Wright     v[TURB_MEAN_PRESSURE_VELOCITY_Y][i]        = wdetJ * s.Y.pressure * s.Y.velocity[1];
35*3a4208e6SJames Wright     v[TURB_MEAN_PRESSURE_VELOCITY_Z][i]        = wdetJ * s.Y.pressure * s.Y.velocity[2];
36*3a4208e6SJames Wright     v[TURB_MEAN_DENSITY_TEMPERATURE][i]        = wdetJ * s.U.density * s.Y.temperature;
37*3a4208e6SJames Wright     v[TURB_MEAN_DENSITY_TEMPERATURE_FLUX_X][i] = wdetJ * s.U.density * s.Y.temperature * s.Y.velocity[0];
38*3a4208e6SJames Wright     v[TURB_MEAN_DENSITY_TEMPERATURE_FLUX_Y][i] = wdetJ * s.U.density * s.Y.temperature * s.Y.velocity[1];
39*3a4208e6SJames Wright     v[TURB_MEAN_DENSITY_TEMPERATURE_FLUX_Z][i] = wdetJ * s.U.density * s.Y.temperature * s.Y.velocity[2];
40*3a4208e6SJames Wright     v[TURB_MEAN_MOMENTUM_X][i]                 = wdetJ * s.U.momentum[0];
41*3a4208e6SJames Wright     v[TURB_MEAN_MOMENTUM_Y][i]                 = wdetJ * s.U.momentum[1];
42*3a4208e6SJames Wright     v[TURB_MEAN_MOMENTUM_Z][i]                 = wdetJ * s.U.momentum[2];
43*3a4208e6SJames Wright     v[TURB_MEAN_MOMENTUMFLUX_XX][i]            = wdetJ * s.U.momentum[0] * s.Y.velocity[0];
44*3a4208e6SJames Wright     v[TURB_MEAN_MOMENTUMFLUX_YY][i]            = wdetJ * s.U.momentum[1] * s.Y.velocity[1];
45*3a4208e6SJames Wright     v[TURB_MEAN_MOMENTUMFLUX_ZZ][i]            = wdetJ * s.U.momentum[2] * s.Y.velocity[2];
46*3a4208e6SJames Wright     v[TURB_MEAN_MOMENTUMFLUX_YZ][i]            = wdetJ * s.U.momentum[1] * s.Y.velocity[2];
47*3a4208e6SJames Wright     v[TURB_MEAN_MOMENTUMFLUX_XZ][i]            = wdetJ * s.U.momentum[0] * s.Y.velocity[2];
48*3a4208e6SJames Wright     v[TURB_MEAN_MOMENTUMFLUX_XY][i]            = wdetJ * s.U.momentum[0] * s.Y.velocity[1];
49*3a4208e6SJames Wright     v[TURB_MEAN_VELOCITY_X][i]                 = wdetJ * s.Y.velocity[0];
50*3a4208e6SJames Wright     v[TURB_MEAN_VELOCITY_Y][i]                 = wdetJ * s.Y.velocity[1];
51*3a4208e6SJames Wright     v[TURB_MEAN_VELOCITY_Z][i]                 = wdetJ * s.Y.velocity[2];
52729f4e9bSJames Wright   }
53729f4e9bSJames Wright   return 0;
54729f4e9bSJames Wright }
55729f4e9bSJames Wright 
56729f4e9bSJames Wright CEED_QFUNCTION(ChildStatsCollection_Conserv)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
57729f4e9bSJames Wright   return ChildStatsCollection(ctx, Q, in, out, StateFromU, StateFromU_fwd);
58729f4e9bSJames Wright }
59729f4e9bSJames Wright 
60729f4e9bSJames Wright CEED_QFUNCTION(ChildStatsCollection_Prim)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
61729f4e9bSJames Wright   return ChildStatsCollection(ctx, Q, in, out, StateFromY, StateFromY_fwd);
62729f4e9bSJames Wright }
63729f4e9bSJames Wright 
64823a1283SJames Wright // QFunctions for testing
65823a1283SJames Wright CEED_QFUNCTION_HELPER CeedScalar ChildStatsCollectionTest_Exact(const CeedScalar x_i[3]) { return x_i[0] + Square(x_i[1]); }
66823a1283SJames Wright 
67b7d66439SJames Wright CEED_QFUNCTION(ChildStatsCollectionMMSTest)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
68729f4e9bSJames Wright   const CeedScalar(*q_data)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[1];
69729f4e9bSJames Wright   const CeedScalar(*x)[CEED_Q_VLA]      = (const CeedScalar(*)[CEED_Q_VLA])in[2];
70729f4e9bSJames Wright   CeedScalar(*v)[CEED_Q_VLA]            = (CeedScalar(*)[CEED_Q_VLA])out[0];
71729f4e9bSJames Wright 
72729f4e9bSJames Wright   NewtonianIdealGasContext context = (NewtonianIdealGasContext)ctx;
73729f4e9bSJames Wright   const CeedScalar         t       = context->time;
74729f4e9bSJames Wright 
75729f4e9bSJames Wright   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
76729f4e9bSJames Wright     const CeedScalar wdetJ  = q_data[0][i];
77729f4e9bSJames Wright     const CeedScalar x_i[3] = {x[0][i], x[1][i], x[2][i]};
78729f4e9bSJames Wright 
79823a1283SJames Wright     // set spanwise domain to [0,1] and integrate from t \in [0,1] to recover exact solution
80823a1283SJames Wright     v[0][i] = wdetJ * (ChildStatsCollectionTest_Exact(x_i) + t - 0.5) * 4 * Cube(x_i[2]);
81823a1283SJames Wright     for (int j = 1; j < 22; j++) v[j][i] = 0;
82823a1283SJames Wright   }
83823a1283SJames Wright   return 0;
84823a1283SJames Wright }
85823a1283SJames Wright 
86b7d66439SJames Wright CEED_QFUNCTION(ChildStatsCollectionMMSTest_Error)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
87823a1283SJames Wright   const CeedScalar(*q)[CEED_Q_VLA]      = (const CeedScalar(*)[CEED_Q_VLA])in[0];
88823a1283SJames Wright   const CeedScalar(*q_data)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[1];
89823a1283SJames Wright   const CeedScalar(*x)[CEED_Q_VLA]      = (const CeedScalar(*)[CEED_Q_VLA])in[2];
90823a1283SJames Wright   CeedScalar(*v)[CEED_Q_VLA]            = (CeedScalar(*)[CEED_Q_VLA])out[0];
91823a1283SJames Wright 
92823a1283SJames Wright   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
93823a1283SJames Wright     const CeedScalar wdetJ  = q_data[0][i];
94823a1283SJames Wright     const CeedScalar x_i[3] = {x[0][i], x[1][i], x[2][i]};
95823a1283SJames Wright 
96823a1283SJames Wright     v[0][i] = wdetJ * Square(ChildStatsCollectionTest_Exact(x_i) - q[0][i]);
97729f4e9bSJames Wright   }
98729f4e9bSJames Wright   return 0;
99729f4e9bSJames Wright }
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