xref: /honee/qfunctions/spanstats/turbulence.h (revision dae7673a5083879fe11419a8756d38cb937fd63d)
1*dae7673aSJames Wright // SPDX-FileCopyrightText: Copyright (c) 2017-2024, HONEE contributors.
2*dae7673aSJames Wright // SPDX-License-Identifier: Apache-2.0 OR BSD-2-Clause
3*dae7673aSJames Wright #include <ceed/types.h>
4*dae7673aSJames Wright 
5*dae7673aSJames Wright #include "turb_stats_types.h"
6*dae7673aSJames Wright #include "../newtonian_state.h"
7*dae7673aSJames Wright #include "../utils.h"
8*dae7673aSJames Wright 
9*dae7673aSJames Wright CEED_QFUNCTION_HELPER int ChildStatsCollection(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out, StateVariable state_var) {
10*dae7673aSJames Wright   const CeedScalar(*q)[CEED_Q_VLA]      = (const CeedScalar(*)[CEED_Q_VLA])in[0];
11*dae7673aSJames Wright   const CeedScalar(*q_data)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[1];
12*dae7673aSJames Wright   CeedScalar(*v)[CEED_Q_VLA]            = (CeedScalar(*)[CEED_Q_VLA])out[0];
13*dae7673aSJames Wright 
14*dae7673aSJames Wright   Turbulence_SpanStatsContext context = (Turbulence_SpanStatsContext)ctx;
15*dae7673aSJames Wright   NewtonianIdealGasContext    gas     = &context->gas;
16*dae7673aSJames Wright   CeedScalar                  delta_t = context->solution_time - context->previous_time;
17*dae7673aSJames Wright 
18*dae7673aSJames Wright   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
19*dae7673aSJames Wright     const CeedScalar wdetJ = q_data[0][i] * delta_t;
20*dae7673aSJames Wright 
21*dae7673aSJames Wright     const CeedScalar qi[5] = {q[0][i], q[1][i], q[2][i], q[3][i], q[4][i]};
22*dae7673aSJames Wright     const State      s     = StateFromQ(gas, qi, state_var);
23*dae7673aSJames Wright 
24*dae7673aSJames Wright     v[TURB_MEAN_DENSITY][i]                    = wdetJ * s.U.density;
25*dae7673aSJames Wright     v[TURB_MEAN_PRESSURE][i]                   = wdetJ * s.Y.pressure;
26*dae7673aSJames Wright     v[TURB_MEAN_PRESSURE_SQUARED][i]           = wdetJ * Square(s.Y.pressure);
27*dae7673aSJames Wright     v[TURB_MEAN_PRESSURE_VELOCITY_X][i]        = wdetJ * s.Y.pressure * s.Y.velocity[0];
28*dae7673aSJames Wright     v[TURB_MEAN_PRESSURE_VELOCITY_Y][i]        = wdetJ * s.Y.pressure * s.Y.velocity[1];
29*dae7673aSJames Wright     v[TURB_MEAN_PRESSURE_VELOCITY_Z][i]        = wdetJ * s.Y.pressure * s.Y.velocity[2];
30*dae7673aSJames Wright     v[TURB_MEAN_DENSITY_TEMPERATURE][i]        = wdetJ * s.U.density * s.Y.temperature;
31*dae7673aSJames Wright     v[TURB_MEAN_DENSITY_TEMPERATURE_FLUX_X][i] = wdetJ * s.U.density * s.Y.temperature * s.Y.velocity[0];
32*dae7673aSJames Wright     v[TURB_MEAN_DENSITY_TEMPERATURE_FLUX_Y][i] = wdetJ * s.U.density * s.Y.temperature * s.Y.velocity[1];
33*dae7673aSJames Wright     v[TURB_MEAN_DENSITY_TEMPERATURE_FLUX_Z][i] = wdetJ * s.U.density * s.Y.temperature * s.Y.velocity[2];
34*dae7673aSJames Wright     v[TURB_MEAN_MOMENTUM_X][i]                 = wdetJ * s.U.momentum[0];
35*dae7673aSJames Wright     v[TURB_MEAN_MOMENTUM_Y][i]                 = wdetJ * s.U.momentum[1];
36*dae7673aSJames Wright     v[TURB_MEAN_MOMENTUM_Z][i]                 = wdetJ * s.U.momentum[2];
37*dae7673aSJames Wright     v[TURB_MEAN_MOMENTUMFLUX_XX][i]            = wdetJ * s.U.momentum[0] * s.Y.velocity[0];
38*dae7673aSJames Wright     v[TURB_MEAN_MOMENTUMFLUX_YY][i]            = wdetJ * s.U.momentum[1] * s.Y.velocity[1];
39*dae7673aSJames Wright     v[TURB_MEAN_MOMENTUMFLUX_ZZ][i]            = wdetJ * s.U.momentum[2] * s.Y.velocity[2];
40*dae7673aSJames Wright     v[TURB_MEAN_MOMENTUMFLUX_YZ][i]            = wdetJ * s.U.momentum[1] * s.Y.velocity[2];
41*dae7673aSJames Wright     v[TURB_MEAN_MOMENTUMFLUX_XZ][i]            = wdetJ * s.U.momentum[0] * s.Y.velocity[2];
42*dae7673aSJames Wright     v[TURB_MEAN_MOMENTUMFLUX_XY][i]            = wdetJ * s.U.momentum[0] * s.Y.velocity[1];
43*dae7673aSJames Wright     v[TURB_MEAN_VELOCITY_X][i]                 = wdetJ * s.Y.velocity[0];
44*dae7673aSJames Wright     v[TURB_MEAN_VELOCITY_Y][i]                 = wdetJ * s.Y.velocity[1];
45*dae7673aSJames Wright     v[TURB_MEAN_VELOCITY_Z][i]                 = wdetJ * s.Y.velocity[2];
46*dae7673aSJames Wright   }
47*dae7673aSJames Wright   return 0;
48*dae7673aSJames Wright }
49*dae7673aSJames Wright 
50*dae7673aSJames Wright CEED_QFUNCTION(ChildStatsCollection_Conserv)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
51*dae7673aSJames Wright   return ChildStatsCollection(ctx, Q, in, out, STATEVAR_CONSERVATIVE);
52*dae7673aSJames Wright }
53*dae7673aSJames Wright 
54*dae7673aSJames Wright CEED_QFUNCTION(ChildStatsCollection_Prim)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
55*dae7673aSJames Wright   return ChildStatsCollection(ctx, Q, in, out, STATEVAR_PRIMITIVE);
56*dae7673aSJames Wright }
57*dae7673aSJames Wright 
58*dae7673aSJames Wright CEED_QFUNCTION(ChildStatsCollection_Entropy)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
59*dae7673aSJames Wright   return ChildStatsCollection(ctx, Q, in, out, STATEVAR_ENTROPY);
60*dae7673aSJames Wright }
61*dae7673aSJames Wright 
62*dae7673aSJames Wright // QFunctions for testing
63*dae7673aSJames Wright CEED_QFUNCTION_HELPER CeedScalar ChildStatsCollectionTest_Exact(const CeedScalar x_i[3]) { return x_i[0] + Square(x_i[1]); }
64*dae7673aSJames Wright 
65*dae7673aSJames Wright CEED_QFUNCTION(ChildStatsCollectionMMSTest)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
66*dae7673aSJames Wright   const CeedScalar(*q_data)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[1];
67*dae7673aSJames Wright   const CeedScalar(*x)[CEED_Q_VLA]      = (const CeedScalar(*)[CEED_Q_VLA])in[2];
68*dae7673aSJames Wright   CeedScalar(*v)[CEED_Q_VLA]            = (CeedScalar(*)[CEED_Q_VLA])out[0];
69*dae7673aSJames Wright 
70*dae7673aSJames Wright   NewtonianIdealGasContext context = (NewtonianIdealGasContext)ctx;
71*dae7673aSJames Wright   const CeedScalar         t       = context->time;
72*dae7673aSJames Wright 
73*dae7673aSJames Wright   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
74*dae7673aSJames Wright     const CeedScalar wdetJ  = q_data[0][i];
75*dae7673aSJames Wright     const CeedScalar x_i[3] = {x[0][i], x[1][i], x[2][i]};
76*dae7673aSJames Wright 
77*dae7673aSJames Wright     // set spanwise domain to [0,1] and integrate from t \in [0,1] to recover exact solution
78*dae7673aSJames Wright     v[0][i] = wdetJ * (ChildStatsCollectionTest_Exact(x_i) + t - 0.5) * 4 * Cube(x_i[2]);
79*dae7673aSJames Wright     for (int j = 1; j < 22; j++) v[j][i] = 0;
80*dae7673aSJames Wright   }
81*dae7673aSJames Wright   return 0;
82*dae7673aSJames Wright }
83*dae7673aSJames Wright 
84*dae7673aSJames Wright CEED_QFUNCTION(ChildStatsCollectionMMSTest_Error)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) {
85*dae7673aSJames Wright   const CeedScalar(*q)[CEED_Q_VLA]      = (const CeedScalar(*)[CEED_Q_VLA])in[0];
86*dae7673aSJames Wright   const CeedScalar(*q_data)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[1];
87*dae7673aSJames Wright   const CeedScalar(*x)[CEED_Q_VLA]      = (const CeedScalar(*)[CEED_Q_VLA])in[2];
88*dae7673aSJames Wright   CeedScalar(*v)[CEED_Q_VLA]            = (CeedScalar(*)[CEED_Q_VLA])out[0];
89*dae7673aSJames Wright 
90*dae7673aSJames Wright   CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) {
91*dae7673aSJames Wright     const CeedScalar wdetJ  = q_data[0][i];
92*dae7673aSJames Wright     const CeedScalar x_i[3] = {x[0][i], x[1][i], x[2][i]};
93*dae7673aSJames Wright 
94*dae7673aSJames Wright     v[0][i] = wdetJ * Square(ChildStatsCollectionTest_Exact(x_i) - q[0][i]);
95*dae7673aSJames Wright   }
96*dae7673aSJames Wright   return 0;
97*dae7673aSJames Wright }
98