1ae2b091fSJames Wright // SPDX-FileCopyrightText: Copyright (c) 2017-2024, HONEE contributors. 2ae2b091fSJames Wright // SPDX-License-Identifier: Apache-2.0 OR BSD-2-Clause 3bb8a0c61SJames Wright 4bb8a0c61SJames Wright /// @file 5ea615d4cSJames Wright /// Operator for HONEE 63e17a7a1SJames Wright #include <ceed/types.h> 72b916ea7SJeremy L Thompson 8cbe60e31SLeila Ghaffari #include "newtonian_state.h" 9d0cce58aSJeremy L Thompson #include "newtonian_types.h" 10704b8bbeSJames Wright #include "utils.h" 11bb8a0c61SJames Wright 12bb8a0c61SJames Wright typedef struct ChannelContext_ *ChannelContext; 13bb8a0c61SJames Wright struct ChannelContext_ { 14bb8a0c61SJames Wright bool implicit; // !< Using implicit timesteping or not 15bb8a0c61SJames Wright CeedScalar theta0; // !< Reference temperature 16bb8a0c61SJames Wright CeedScalar P0; // !< Reference Pressure 17bb8a0c61SJames Wright CeedScalar umax; // !< Centerline velocity 18bb8a0c61SJames Wright CeedScalar center; // !< Y Coordinate for center of channel 19bb8a0c61SJames Wright CeedScalar H; // !< Channel half-height 20bb8a0c61SJames Wright CeedScalar B; // !< Body-force driving the flow 21*cde3d787SJames Wright struct NewtonianIdealGasContext_ newt_ctx; 22bb8a0c61SJames Wright }; 23bb8a0c61SJames Wright 242b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER State Exact_Channel(CeedInt dim, CeedScalar time, const CeedScalar X[], CeedInt Nf, void *ctx) { 25bb8a0c61SJames Wright const ChannelContext context = (ChannelContext)ctx; 26bb8a0c61SJames Wright const CeedScalar theta0 = context->theta0; 27bb8a0c61SJames Wright const CeedScalar P0 = context->P0; 28bb8a0c61SJames Wright const CeedScalar umax = context->umax; 29bb8a0c61SJames Wright const CeedScalar center = context->center; 30bb8a0c61SJames Wright const CeedScalar H = context->H; 31*cde3d787SJames Wright NewtonianIGProperties gas = context->newt_ctx.gas; 32*cde3d787SJames Wright const CeedScalar cp = gas.cp; 33*cde3d787SJames Wright const CeedScalar mu = gas.mu; 34*cde3d787SJames Wright const CeedScalar k = gas.k; 35cbe60e31SLeila Ghaffari // There is a gravity body force but it is excluded from 36cbe60e31SLeila Ghaffari // the potential energy due to periodicity. 37d1b9ef12SLeila Ghaffari // g = (g, 0, 0) 38d1b9ef12SLeila Ghaffari // x = (0, x_2, x_3) 39d1b9ef12SLeila Ghaffari // e_potential = dot(g, x) = 0 40d1b9ef12SLeila Ghaffari const CeedScalar x[3] = {0, X[1], X[2]}; 41bb8a0c61SJames Wright 42bb8a0c61SJames Wright const CeedScalar Pr = mu / (cp * k); 43bb8a0c61SJames Wright const CeedScalar Ec = (umax * umax) / (cp * theta0); 442b916ea7SJeremy L Thompson const CeedScalar theta = theta0 * (1 + (Pr * Ec / 3) * (1 - Square(Square((x[1] - center) / H)))); 45cbe60e31SLeila Ghaffari CeedScalar Y[5] = {0.}; 46cbe60e31SLeila Ghaffari Y[0] = P0; 47d1b9ef12SLeila Ghaffari Y[1] = umax * (1 - Square((x[1] - center) / H)); 48cbe60e31SLeila Ghaffari Y[2] = 0.; 49cbe60e31SLeila Ghaffari Y[3] = 0.; 50cbe60e31SLeila Ghaffari Y[4] = theta; 51bb8a0c61SJames Wright 52edcfef1bSKenneth E. Jansen return StateFromY(gas, Y); 53bb8a0c61SJames Wright } 54bb8a0c61SJames Wright 55bb8a0c61SJames Wright // ***************************************************************************** 56cbe60e31SLeila Ghaffari // This QFunction set the initial condition 57bb8a0c61SJames Wright // ***************************************************************************** 582b916ea7SJeremy L Thompson CEED_QFUNCTION(ICsChannel)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) { 59bb8a0c61SJames Wright const CeedScalar(*X)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[0]; 60bb8a0c61SJames Wright CeedScalar(*q0)[CEED_Q_VLA] = (CeedScalar(*)[CEED_Q_VLA])out[0]; 61bb8a0c61SJames Wright 62cbe60e31SLeila Ghaffari const ChannelContext context = (ChannelContext)ctx; 63*cde3d787SJames Wright NewtonianIGProperties gas = context->newt_ctx.gas; 64cbe60e31SLeila Ghaffari 652b916ea7SJeremy L Thompson CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) { 66bb8a0c61SJames Wright const CeedScalar x[] = {X[0][i], X[1][i], X[2][i]}; 67cbe60e31SLeila Ghaffari State s = Exact_Channel(3, 0., x, 5, ctx); 68a541e550SJames Wright CeedScalar q[5]; 69*cde3d787SJames Wright StateToQ(gas, s, q, context->newt_ctx.state_var); 702b916ea7SJeremy L Thompson for (CeedInt j = 0; j < 5; j++) q0[j][i] = q[j]; 71b193fadcSJames Wright } 72bb8a0c61SJames Wright return 0; 73bb8a0c61SJames Wright } 74bb8a0c61SJames Wright 75bb8a0c61SJames Wright // ***************************************************************************** 76d1b9ef12SLeila Ghaffari // This QFunction set the inflow boundary condition for conservative variables 77d1b9ef12SLeila Ghaffari // ***************************************************************************** 782b916ea7SJeremy L Thompson CEED_QFUNCTION(Channel_Inflow)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) { 793d65b166SJames Wright const CeedScalar(*q)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[0]; 80ade49511SJames Wright const CeedScalar(*q_data_sur) = in[2]; 813d65b166SJames Wright const CeedScalar(*X)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[3]; 82bb8a0c61SJames Wright CeedScalar(*v)[CEED_Q_VLA] = (CeedScalar(*)[CEED_Q_VLA])out[0]; 833d65b166SJames Wright 84bb8a0c61SJames Wright const ChannelContext context = (ChannelContext)ctx; 85ade49511SJames Wright const bool is_implicit = context->implicit; 86*cde3d787SJames Wright NewtonianIGProperties gas = context->newt_ctx.gas; 87*cde3d787SJames Wright const CeedScalar gamma = HeatCapacityRatio(gas); 88bb8a0c61SJames Wright 893d65b166SJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) { 90ade49511SJames Wright CeedScalar wdetJb, norm[3]; 91ade49511SJames Wright QdataBoundaryUnpack_3D(Q, i, q_data_sur, &wdetJb, NULL, norm); 92ade49511SJames Wright wdetJb *= is_implicit ? -1. : 1.; 93bb8a0c61SJames Wright 94d1b9ef12SLeila Ghaffari // There is a gravity body force but it is excluded from 95d1b9ef12SLeila Ghaffari // the potential energy due to periodicity. 96d1b9ef12SLeila Ghaffari // g = (g, 0, 0) 97d1b9ef12SLeila Ghaffari // x = (0, x_2, x_3) 98d1b9ef12SLeila Ghaffari // e_potential = dot(g, x) = 0 99d1b9ef12SLeila Ghaffari const CeedScalar x[3] = {0, X[1][i], X[2][i]}; 100d1b9ef12SLeila Ghaffari 1014b96a86bSJames Wright // Calculate prescribed inflow values 102d1b9ef12SLeila Ghaffari State s_exact = Exact_Channel(3, 0., x, 5, ctx); 103bb8a0c61SJames Wright CeedScalar q_exact[5] = {0.}; 104d1b9ef12SLeila Ghaffari UnpackState_U(s_exact.U, q_exact); 105bb8a0c61SJames Wright 106bb8a0c61SJames Wright // Find pressure using state inside the domain 107d1b9ef12SLeila Ghaffari CeedScalar q_inside[5] = {0}; 1082b916ea7SJeremy L Thompson for (CeedInt j = 0; j < 5; j++) q_inside[j] = q[j][i]; 109edcfef1bSKenneth E. Jansen State s_inside = StateFromU(gas, q_inside); 110d1b9ef12SLeila Ghaffari const CeedScalar P = s_inside.Y.pressure; 111bb8a0c61SJames Wright 112bb8a0c61SJames Wright // Find inflow state using calculated P and prescribed velocity, theta0 113*cde3d787SJames Wright const CeedScalar e_internal = gas.cv * s_exact.Y.temperature; 114bb8a0c61SJames Wright const CeedScalar rho_in = P / ((gamma - 1) * e_internal); 1152b916ea7SJeremy L Thompson const CeedScalar E_kinetic = .5 * rho_in * Dot3(s_exact.Y.velocity, s_exact.Y.velocity); 116bb8a0c61SJames Wright const CeedScalar E = rho_in * e_internal + E_kinetic; 117d1b9ef12SLeila Ghaffari 118bb8a0c61SJames Wright // The Physics 119bb8a0c61SJames Wright // Zero v so all future terms can safely sum into it 120493642f1SJames Wright for (CeedInt j = 0; j < 5; j++) v[j][i] = 0.; 121bb8a0c61SJames Wright 122d1b9ef12SLeila Ghaffari const CeedScalar u_normal = Dot3(norm, s_exact.Y.velocity); 123bb8a0c61SJames Wright 124bb8a0c61SJames Wright // The Physics 125bb8a0c61SJames Wright // -- Density 126bb8a0c61SJames Wright v[0][i] -= wdetJb * rho_in * u_normal; 127bb8a0c61SJames Wright 128bb8a0c61SJames Wright // -- Momentum 1292b916ea7SJeremy L Thompson for (CeedInt j = 0; j < 3; j++) v[j + 1][i] -= wdetJb * (rho_in * u_normal * s_exact.Y.velocity[j] + norm[j] * P); 130bb8a0c61SJames Wright 131bb8a0c61SJames Wright // -- Total Energy Density 132bb8a0c61SJames Wright v[4][i] -= wdetJb * u_normal * (E + P); 133512c8ec7SJames Wright } 134bb8a0c61SJames Wright return 0; 135bb8a0c61SJames Wright } 136bb8a0c61SJames Wright 137bb8a0c61SJames Wright // ***************************************************************************** 138d1b9ef12SLeila Ghaffari // This QFunction set the outflow boundary condition for conservative variables 139d1b9ef12SLeila Ghaffari // ***************************************************************************** 1402b916ea7SJeremy L Thompson CEED_QFUNCTION(Channel_Outflow)(void *ctx, CeedInt Q, const CeedScalar *const *in, CeedScalar *const *out) { 1413d65b166SJames Wright const CeedScalar(*q)[CEED_Q_VLA] = (const CeedScalar(*)[CEED_Q_VLA])in[0]; 142ade49511SJames Wright const CeedScalar(*q_data_sur) = in[2]; 143bb8a0c61SJames Wright CeedScalar(*v)[CEED_Q_VLA] = (CeedScalar(*)[CEED_Q_VLA])out[0]; 144bb8a0c61SJames Wright 145bb8a0c61SJames Wright const ChannelContext context = (ChannelContext)ctx; 146ade49511SJames Wright const bool is_implicit = context->implicit; 147bb8a0c61SJames Wright 1483d65b166SJames Wright CeedPragmaSIMD for (CeedInt i = 0; i < Q; i++) { 149ade49511SJames Wright CeedScalar wdetJb, norm[3]; 150ade49511SJames Wright QdataBoundaryUnpack_3D(Q, i, q_data_sur, &wdetJb, NULL, norm); 151ade49511SJames Wright wdetJb *= is_implicit ? -1. : 1.; 152ade49511SJames Wright 153bb8a0c61SJames Wright const CeedScalar rho = q[0][i]; 1542b916ea7SJeremy L Thompson const CeedScalar u[3] = {q[1][i] / rho, q[2][i] / rho, q[3][i] / rho}; 155bb8a0c61SJames Wright const CeedScalar E = q[4][i]; 156bb8a0c61SJames Wright 157bb8a0c61SJames Wright // The Physics 158bb8a0c61SJames Wright // Zero v so all future terms can safely sum into it 159493642f1SJames Wright for (CeedInt j = 0; j < 5; j++) v[j][i] = 0.; 160bb8a0c61SJames Wright 161bb8a0c61SJames Wright // Implementing outflow condition 162512c8ec7SJames Wright const CeedScalar P = context->P0; // pressure 163704b8bbeSJames Wright const CeedScalar u_normal = Dot3(norm, u); // Normal velocity 164bb8a0c61SJames Wright // The Physics 165bb8a0c61SJames Wright // -- Density 166bb8a0c61SJames Wright v[0][i] -= wdetJb * rho * u_normal; 167bb8a0c61SJames Wright 168bb8a0c61SJames Wright // -- Momentum 1692b916ea7SJeremy L Thompson for (CeedInt j = 0; j < 3; j++) v[j + 1][i] -= wdetJb * (rho * u_normal * u[j] + norm[j] * P); 170bb8a0c61SJames Wright 171bb8a0c61SJames Wright // -- Total Energy Density 172bb8a0c61SJames Wright v[4][i] -= wdetJb * u_normal * (E + P); 173512c8ec7SJames Wright } 174bb8a0c61SJames Wright return 0; 175bb8a0c61SJames Wright } 176