1475b2820SJames Wright // Copyright (c) 2017-2022, Lawrence Livermore National Security, LLC and other CEED contributors. 2475b2820SJames Wright // All Rights Reserved. See the top-level LICENSE and NOTICE files for details. 3475b2820SJames Wright // 4475b2820SJames Wright // SPDX-License-Identifier: BSD-2-Clause 5475b2820SJames Wright // 6475b2820SJames Wright // This file is part of CEED: http://github.com/ceed 7475b2820SJames Wright 8475b2820SJames Wright /// @file 9475b2820SJames Wright /// Structs and helper functions regarding the state of a newtonian simulation 10475b2820SJames Wright 11475b2820SJames Wright #ifndef newtonian_state_h 12475b2820SJames Wright #define newtonian_state_h 13475b2820SJames Wright 14475b2820SJames Wright #include <ceed.h> 15d0cce58aSJeremy L Thompson #include <math.h> 16*2b916ea7SJeremy L Thompson 17475b2820SJames Wright #include "newtonian_types.h" 18704b8bbeSJames Wright #include "utils.h" 19475b2820SJames Wright 20475b2820SJames Wright typedef struct { 21475b2820SJames Wright CeedScalar pressure; 22475b2820SJames Wright CeedScalar velocity[3]; 23475b2820SJames Wright CeedScalar temperature; 24475b2820SJames Wright } StatePrimitive; 25475b2820SJames Wright 26475b2820SJames Wright typedef struct { 27475b2820SJames Wright CeedScalar density; 28475b2820SJames Wright CeedScalar momentum[3]; 29475b2820SJames Wright CeedScalar E_total; 30475b2820SJames Wright } StateConservative; 31475b2820SJames Wright 32475b2820SJames Wright typedef struct { 33475b2820SJames Wright StateConservative U; 34475b2820SJames Wright StatePrimitive Y; 35475b2820SJames Wright } State; 36475b2820SJames Wright 37d1b9ef12SLeila Ghaffari CEED_QFUNCTION_HELPER void UnpackState_U(StateConservative s, CeedScalar U[5]) { 38d1b9ef12SLeila Ghaffari U[0] = s.density; 39d1b9ef12SLeila Ghaffari for (int i = 0; i < 3; i++) U[i + 1] = s.momentum[i]; 40d1b9ef12SLeila Ghaffari U[4] = s.E_total; 41d1b9ef12SLeila Ghaffari } 42d1b9ef12SLeila Ghaffari 43d1b9ef12SLeila Ghaffari CEED_QFUNCTION_HELPER void UnpackState_Y(StatePrimitive s, CeedScalar Y[5]) { 44d1b9ef12SLeila Ghaffari Y[0] = s.pressure; 45d1b9ef12SLeila Ghaffari for (int i = 0; i < 3; i++) Y[i + 1] = s.velocity[i]; 46d1b9ef12SLeila Ghaffari Y[4] = s.temperature; 47d1b9ef12SLeila Ghaffari } 48d1b9ef12SLeila Ghaffari 49*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER CeedScalar HeatCapacityRatio(NewtonianIdealGasContext gas) { return gas->cp / gas->cv; } 50e0d1a4dfSLeila Ghaffari 51*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER CeedScalar GasConstant(NewtonianIdealGasContext gas) { return gas->cp - gas->cv; } 52e0d1a4dfSLeila Ghaffari 53*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER CeedScalar Prandtl(NewtonianIdealGasContext gas) { return gas->cp * gas->mu / gas->k; } 54e0d1a4dfSLeila Ghaffari 55*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER CeedScalar SoundSpeed(NewtonianIdealGasContext gas, CeedScalar T) { return sqrt(gas->cp * (HeatCapacityRatio(gas) - 1.) * T); } 56e0d1a4dfSLeila Ghaffari 57*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER CeedScalar Mach(NewtonianIdealGasContext gas, CeedScalar T, CeedScalar u) { return u / SoundSpeed(gas, T); } 58e0d1a4dfSLeila Ghaffari 59*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER CeedScalar TotalSpecificEnthalpy(NewtonianIdealGasContext gas, const State s) { 60c50f56e5SJames Wright // Ignoring potential energy 61c50f56e5SJames Wright CeedScalar e_internal = gas->cv * s.Y.temperature; 62c50f56e5SJames Wright CeedScalar e_kinetic = 0.5 * Dot3(s.Y.velocity, s.Y.velocity); 63c50f56e5SJames Wright return e_internal + e_kinetic + s.Y.pressure / s.U.density; 64c50f56e5SJames Wright } 65c50f56e5SJames Wright 66*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER CeedScalar TotalSpecificEnthalpy_fwd(NewtonianIdealGasContext gas, const State s, const State ds) { 67c50f56e5SJames Wright // Ignoring potential energy 68c50f56e5SJames Wright CeedScalar de_kinetic = Dot3(ds.Y.velocity, s.Y.velocity); 69c50f56e5SJames Wright CeedScalar de_internal = gas->cv * ds.Y.temperature; 70*2b916ea7SJeremy L Thompson return de_internal + de_kinetic + ds.Y.pressure / s.U.density - s.Y.pressure / Square(s.U.density) * ds.U.density; 71c50f56e5SJames Wright } 72c50f56e5SJames Wright 73*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER StatePrimitive StatePrimitiveFromConservative(NewtonianIdealGasContext gas, StateConservative U, const CeedScalar x[3]) { 74475b2820SJames Wright StatePrimitive Y; 75475b2820SJames Wright for (CeedInt i = 0; i < 3; i++) Y.velocity[i] = U.momentum[i] / U.density; 76475b2820SJames Wright CeedScalar e_kinetic = .5 * Dot3(Y.velocity, Y.velocity); 77475b2820SJames Wright CeedScalar e_potential = -Dot3(gas->g, x); 78475b2820SJames Wright CeedScalar e_total = U.E_total / U.density; 79475b2820SJames Wright CeedScalar e_internal = e_total - e_kinetic - e_potential; 80475b2820SJames Wright Y.temperature = e_internal / gas->cv; 81e0d1a4dfSLeila Ghaffari Y.pressure = (HeatCapacityRatio(gas) - 1) * U.density * e_internal; 82475b2820SJames Wright return Y; 83475b2820SJames Wright } 84475b2820SJames Wright 85*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER StatePrimitive StatePrimitiveFromConservative_fwd(NewtonianIdealGasContext gas, State s, StateConservative dU, 86475b2820SJames Wright const CeedScalar x[3], const CeedScalar dx[3]) { 87475b2820SJames Wright StatePrimitive dY; 88475b2820SJames Wright for (CeedInt i = 0; i < 3; i++) { 89475b2820SJames Wright dY.velocity[i] = (dU.momentum[i] - s.Y.velocity[i] * dU.density) / s.U.density; 90475b2820SJames Wright } 91475b2820SJames Wright CeedScalar e_kinetic = .5 * Dot3(s.Y.velocity, s.Y.velocity); 92475b2820SJames Wright CeedScalar de_kinetic = Dot3(dY.velocity, s.Y.velocity); 93475b2820SJames Wright CeedScalar e_potential = -Dot3(gas->g, x); 94475b2820SJames Wright CeedScalar de_potential = -Dot3(gas->g, dx); 95475b2820SJames Wright CeedScalar e_total = s.U.E_total / s.U.density; 96475b2820SJames Wright CeedScalar de_total = (dU.E_total - e_total * dU.density) / s.U.density; 97475b2820SJames Wright CeedScalar e_internal = e_total - e_kinetic - e_potential; 98475b2820SJames Wright CeedScalar de_internal = de_total - de_kinetic - de_potential; 99475b2820SJames Wright dY.temperature = de_internal / gas->cv; 100*2b916ea7SJeremy L Thompson dY.pressure = (HeatCapacityRatio(gas) - 1) * (dU.density * e_internal + s.U.density * de_internal); 101475b2820SJames Wright return dY; 102475b2820SJames Wright } 103475b2820SJames Wright 104*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER StateConservative StateConservativeFromPrimitive(NewtonianIdealGasContext gas, StatePrimitive Y, const CeedScalar x[3]) { 105cbe60e31SLeila Ghaffari StateConservative U; 106e0d1a4dfSLeila Ghaffari U.density = Y.pressure / (GasConstant(gas) * Y.temperature); 107cbe60e31SLeila Ghaffari for (int i = 0; i < 3; i++) U.momentum[i] = U.density * Y.velocity[i]; 108cbe60e31SLeila Ghaffari CeedScalar e_internal = gas->cv * Y.temperature; 109cbe60e31SLeila Ghaffari CeedScalar e_kinetic = .5 * Dot3(Y.velocity, Y.velocity); 110cbe60e31SLeila Ghaffari CeedScalar e_potential = -Dot3(gas->g, x); 111cbe60e31SLeila Ghaffari CeedScalar e_total = e_internal + e_kinetic + e_potential; 112cbe60e31SLeila Ghaffari U.E_total = U.density * e_total; 113cbe60e31SLeila Ghaffari return U; 114cbe60e31SLeila Ghaffari } 115cbe60e31SLeila Ghaffari 116*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER StateConservative StateConservativeFromPrimitive_fwd(NewtonianIdealGasContext gas, State s, StatePrimitive dY, 117cbe60e31SLeila Ghaffari const CeedScalar x[3], const CeedScalar dx[3]) { 118cbe60e31SLeila Ghaffari StateConservative dU; 119*2b916ea7SJeremy L Thompson dU.density = (dY.pressure * s.Y.temperature - s.Y.pressure * dY.temperature) / (GasConstant(gas) * s.Y.temperature * s.Y.temperature); 120cbe60e31SLeila Ghaffari for (int i = 0; i < 3; i++) { 121cbe60e31SLeila Ghaffari dU.momentum[i] = dU.density * s.Y.velocity[i] + s.U.density * dY.velocity[i]; 122cbe60e31SLeila Ghaffari } 123cbe60e31SLeila Ghaffari CeedScalar e_kinetic = .5 * Dot3(s.Y.velocity, s.Y.velocity); 124cbe60e31SLeila Ghaffari CeedScalar de_kinetic = Dot3(dY.velocity, s.Y.velocity); 125cbe60e31SLeila Ghaffari CeedScalar e_potential = -Dot3(gas->g, x); 126cbe60e31SLeila Ghaffari CeedScalar de_potential = -Dot3(gas->g, dx); 127cbe60e31SLeila Ghaffari CeedScalar e_internal = gas->cv * s.Y.temperature; 128cbe60e31SLeila Ghaffari CeedScalar de_internal = gas->cv * dY.temperature; 129cbe60e31SLeila Ghaffari CeedScalar e_total = e_internal + e_kinetic + e_potential; 130cbe60e31SLeila Ghaffari CeedScalar de_total = de_internal + de_kinetic + de_potential; 131cbe60e31SLeila Ghaffari dU.E_total = dU.density * e_total + s.U.density * de_total; 132cbe60e31SLeila Ghaffari return dU; 133cbe60e31SLeila Ghaffari } 134cbe60e31SLeila Ghaffari 135d4559bbeSJames Wright // Function pointer types for generic state array -> State struct functions 136*2b916ea7SJeremy L Thompson typedef State (*StateFromQi_t)(NewtonianIdealGasContext gas, const CeedScalar qi[5], const CeedScalar x[3]); 137*2b916ea7SJeremy L Thompson typedef State (*StateFromQi_fwd_t)(NewtonianIdealGasContext gas, State s, const CeedScalar dqi[5], const CeedScalar x[3], const CeedScalar dx[3]); 138d4559bbeSJames Wright 139*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER State StateFromU(NewtonianIdealGasContext gas, const CeedScalar U[5], const CeedScalar x[3]) { 140475b2820SJames Wright State s; 141475b2820SJames Wright s.U.density = U[0]; 142475b2820SJames Wright s.U.momentum[0] = U[1]; 143475b2820SJames Wright s.U.momentum[1] = U[2]; 144475b2820SJames Wright s.U.momentum[2] = U[3]; 145475b2820SJames Wright s.U.E_total = U[4]; 146475b2820SJames Wright s.Y = StatePrimitiveFromConservative(gas, s.U, x); 147475b2820SJames Wright return s; 148475b2820SJames Wright } 149475b2820SJames Wright 150*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER State StateFromU_fwd(NewtonianIdealGasContext gas, State s, const CeedScalar dU[5], const CeedScalar x[3], 151*2b916ea7SJeremy L Thompson const CeedScalar dx[3]) { 152475b2820SJames Wright State ds; 153475b2820SJames Wright ds.U.density = dU[0]; 154475b2820SJames Wright ds.U.momentum[0] = dU[1]; 155475b2820SJames Wright ds.U.momentum[1] = dU[2]; 156475b2820SJames Wright ds.U.momentum[2] = dU[3]; 157475b2820SJames Wright ds.U.E_total = dU[4]; 158475b2820SJames Wright ds.Y = StatePrimitiveFromConservative_fwd(gas, s, ds.U, x, dx); 159475b2820SJames Wright return ds; 160475b2820SJames Wright } 161475b2820SJames Wright 162*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER State StateFromY(NewtonianIdealGasContext gas, const CeedScalar Y[5], const CeedScalar x[3]) { 163cbe60e31SLeila Ghaffari State s; 164cbe60e31SLeila Ghaffari s.Y.pressure = Y[0]; 165cbe60e31SLeila Ghaffari s.Y.velocity[0] = Y[1]; 166cbe60e31SLeila Ghaffari s.Y.velocity[1] = Y[2]; 167cbe60e31SLeila Ghaffari s.Y.velocity[2] = Y[3]; 168cbe60e31SLeila Ghaffari s.Y.temperature = Y[4]; 169cbe60e31SLeila Ghaffari s.U = StateConservativeFromPrimitive(gas, s.Y, x); 170cbe60e31SLeila Ghaffari return s; 171cbe60e31SLeila Ghaffari } 172cbe60e31SLeila Ghaffari 173*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER State StateFromY_fwd(NewtonianIdealGasContext gas, State s, const CeedScalar dY[5], const CeedScalar x[3], 174*2b916ea7SJeremy L Thompson const CeedScalar dx[3]) { 175cbe60e31SLeila Ghaffari State ds; 176cbe60e31SLeila Ghaffari ds.Y.pressure = dY[0]; 177cbe60e31SLeila Ghaffari ds.Y.velocity[0] = dY[1]; 178cbe60e31SLeila Ghaffari ds.Y.velocity[1] = dY[2]; 179cbe60e31SLeila Ghaffari ds.Y.velocity[2] = dY[3]; 180cbe60e31SLeila Ghaffari ds.Y.temperature = dY[4]; 181cbe60e31SLeila Ghaffari ds.U = StateConservativeFromPrimitive_fwd(gas, s, ds.Y, x, dx); 182cbe60e31SLeila Ghaffari return ds; 183cbe60e31SLeila Ghaffari } 184cbe60e31SLeila Ghaffari 185335cfff3SJames Wright // Function pointer types for State struct -> generic state array 186*2b916ea7SJeremy L Thompson typedef void (*StateToQi_t)(NewtonianIdealGasContext gas, const State input, CeedScalar qi[5]); 187335cfff3SJames Wright 188*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void StateToU(NewtonianIdealGasContext gas, const State input, CeedScalar U[5]) { UnpackState_U(input.U, U); } 189335cfff3SJames Wright 190*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void StateToY(NewtonianIdealGasContext gas, const State input, CeedScalar Y[5]) { UnpackState_Y(input.Y, Y); } 191335cfff3SJames Wright 192*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void FluxInviscid(NewtonianIdealGasContext gas, State s, StateConservative Flux[3]) { 193475b2820SJames Wright for (CeedInt i = 0; i < 3; i++) { 194475b2820SJames Wright Flux[i].density = s.U.momentum[i]; 195*2b916ea7SJeremy L Thompson for (CeedInt j = 0; j < 3; j++) Flux[i].momentum[j] = s.U.momentum[i] * s.Y.velocity[j] + s.Y.pressure * (i == j); 196475b2820SJames Wright Flux[i].E_total = (s.U.E_total + s.Y.pressure) * s.Y.velocity[i]; 197475b2820SJames Wright } 198475b2820SJames Wright } 199475b2820SJames Wright 200*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void FluxInviscid_fwd(NewtonianIdealGasContext gas, State s, State ds, StateConservative dFlux[3]) { 201c50f56e5SJames Wright for (CeedInt i = 0; i < 3; i++) { 202c50f56e5SJames Wright dFlux[i].density = ds.U.momentum[i]; 203*2b916ea7SJeremy L Thompson for (CeedInt j = 0; j < 3; j++) { 204*2b916ea7SJeremy L Thompson dFlux[i].momentum[j] = ds.U.momentum[i] * s.Y.velocity[j] + s.U.momentum[i] * ds.Y.velocity[j] + ds.Y.pressure * (i == j); 205*2b916ea7SJeremy L Thompson } 206*2b916ea7SJeremy L Thompson dFlux[i].E_total = (ds.U.E_total + ds.Y.pressure) * s.Y.velocity[i] + (s.U.E_total + s.Y.pressure) * ds.Y.velocity[i]; 207c50f56e5SJames Wright } 208c50f56e5SJames Wright } 209c50f56e5SJames Wright 210*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER StateConservative FluxInviscidDotNormal(NewtonianIdealGasContext gas, State s, const CeedScalar normal[3]) { 2117b530f2aSAdelekeBankole StateConservative Flux[3], Flux_dot_n = {0}; 2127b530f2aSAdelekeBankole FluxInviscid(gas, s, Flux); 2137b530f2aSAdelekeBankole for (CeedInt i = 0; i < 3; i++) { 2147b530f2aSAdelekeBankole Flux_dot_n.density += Flux[i].density * normal[i]; 215*2b916ea7SJeremy L Thompson for (CeedInt j = 0; j < 3; j++) Flux_dot_n.momentum[j] += Flux[i].momentum[j] * normal[i]; 2167b530f2aSAdelekeBankole Flux_dot_n.E_total += Flux[i].E_total * normal[i]; 2177b530f2aSAdelekeBankole } 2187b530f2aSAdelekeBankole return Flux_dot_n; 2197b530f2aSAdelekeBankole } 2207b530f2aSAdelekeBankole 221*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER StateConservative FluxInviscidDotNormal_fwd(NewtonianIdealGasContext gas, State s, State ds, const CeedScalar normal[3]) { 222c50f56e5SJames Wright StateConservative dFlux[3], Flux_dot_n = {0}; 223c50f56e5SJames Wright FluxInviscid_fwd(gas, s, ds, dFlux); 224475b2820SJames Wright for (CeedInt i = 0; i < 3; i++) { 225c50f56e5SJames Wright Flux_dot_n.density += dFlux[i].density * normal[i]; 226*2b916ea7SJeremy L Thompson for (CeedInt j = 0; j < 3; j++) Flux_dot_n.momentum[j] += dFlux[i].momentum[j] * normal[i]; 227c50f56e5SJames Wright Flux_dot_n.E_total += dFlux[i].E_total * normal[i]; 228475b2820SJames Wright } 229c50f56e5SJames Wright return Flux_dot_n; 230475b2820SJames Wright } 231475b2820SJames Wright 232*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void FluxInviscidStrong(NewtonianIdealGasContext gas, State s, State ds[3], CeedScalar strong_conv[5]) { 233d1b9ef12SLeila Ghaffari for (CeedInt i = 0; i < 5; i++) strong_conv[i] = 0; 234d1b9ef12SLeila Ghaffari for (CeedInt i = 0; i < 3; i++) { 235d1b9ef12SLeila Ghaffari StateConservative dF[3]; 236d1b9ef12SLeila Ghaffari FluxInviscid_fwd(gas, s, ds[i], dF); 237d1b9ef12SLeila Ghaffari CeedScalar dF_i[5]; 238d1b9ef12SLeila Ghaffari UnpackState_U(dF[i], dF_i); 239*2b916ea7SJeremy L Thompson for (CeedInt j = 0; j < 5; j++) strong_conv[j] += dF_i[j]; 240d1b9ef12SLeila Ghaffari } 241d1b9ef12SLeila Ghaffari } 242d1b9ef12SLeila Ghaffari 243*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void FluxTotal(const StateConservative F_inviscid[3], CeedScalar stress[3][3], CeedScalar Fe[3], CeedScalar Flux[5][3]) { 244d1b9ef12SLeila Ghaffari for (CeedInt j = 0; j < 3; j++) { 245d1b9ef12SLeila Ghaffari Flux[0][j] = F_inviscid[j].density; 246*2b916ea7SJeremy L Thompson for (CeedInt k = 0; k < 3; k++) Flux[k + 1][j] = F_inviscid[j].momentum[k] - stress[k][j]; 247d1b9ef12SLeila Ghaffari Flux[4][j] = F_inviscid[j].E_total + Fe[j]; 248d1b9ef12SLeila Ghaffari } 249d1b9ef12SLeila Ghaffari } 250d1b9ef12SLeila Ghaffari 251*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void FluxTotal_Boundary(const StateConservative F_inviscid[3], const CeedScalar stress[3][3], const CeedScalar Fe[3], 252*2b916ea7SJeremy L Thompson const CeedScalar normal[3], CeedScalar Flux[5]) { 253c5740391SJames Wright for (CeedInt j = 0; j < 5; j++) Flux[j] = 0.; 254c5740391SJames Wright for (CeedInt j = 0; j < 3; j++) { 255c5740391SJames Wright Flux[0] += F_inviscid[j].density * normal[j]; 256c5740391SJames Wright for (CeedInt k = 0; k < 3; k++) { 257c5740391SJames Wright Flux[k + 1] += (F_inviscid[j].momentum[k] - stress[k][j]) * normal[j]; 258c5740391SJames Wright } 259c5740391SJames Wright Flux[4] += (F_inviscid[j].E_total + Fe[j]) * normal[j]; 260c5740391SJames Wright } 261c5740391SJames Wright } 262c5740391SJames Wright 263475b2820SJames Wright // Kelvin-Mandel notation 264*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void KMStrainRate(const State grad_s[3], CeedScalar strain_rate[6]) { 265475b2820SJames Wright const CeedScalar weight = 1 / sqrt(2.); 266475b2820SJames Wright strain_rate[0] = grad_s[0].Y.velocity[0]; 267475b2820SJames Wright strain_rate[1] = grad_s[1].Y.velocity[1]; 268475b2820SJames Wright strain_rate[2] = grad_s[2].Y.velocity[2]; 269475b2820SJames Wright strain_rate[3] = weight * (grad_s[2].Y.velocity[1] + grad_s[1].Y.velocity[2]); 270475b2820SJames Wright strain_rate[4] = weight * (grad_s[2].Y.velocity[0] + grad_s[0].Y.velocity[2]); 271475b2820SJames Wright strain_rate[5] = weight * (grad_s[1].Y.velocity[0] + grad_s[0].Y.velocity[1]); 272475b2820SJames Wright } 273475b2820SJames Wright 274*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void NewtonianStress(NewtonianIdealGasContext gas, const CeedScalar strain_rate[6], CeedScalar stress[6]) { 275475b2820SJames Wright CeedScalar div_u = strain_rate[0] + strain_rate[1] + strain_rate[2]; 276475b2820SJames Wright for (CeedInt i = 0; i < 6; i++) { 277475b2820SJames Wright stress[i] = gas->mu * (2 * strain_rate[i] + gas->lambda * div_u * (i < 3)); 278475b2820SJames Wright } 279475b2820SJames Wright } 280475b2820SJames Wright 281*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void ViscousEnergyFlux(NewtonianIdealGasContext gas, StatePrimitive Y, const State grad_s[3], const CeedScalar stress[3][3], 282475b2820SJames Wright CeedScalar Fe[3]) { 283475b2820SJames Wright for (CeedInt i = 0; i < 3; i++) { 284*2b916ea7SJeremy L Thompson Fe[i] = -Y.velocity[0] * stress[0][i] - Y.velocity[1] * stress[1][i] - Y.velocity[2] * stress[2][i] - gas->k * grad_s[i].Y.temperature; 285475b2820SJames Wright } 286475b2820SJames Wright } 287475b2820SJames Wright 288*2b916ea7SJeremy L Thompson CEED_QFUNCTION_HELPER void ViscousEnergyFlux_fwd(NewtonianIdealGasContext gas, StatePrimitive Y, StatePrimitive dY, const State grad_ds[3], 289*2b916ea7SJeremy L Thompson const CeedScalar stress[3][3], const CeedScalar dstress[3][3], CeedScalar dFe[3]) { 290475b2820SJames Wright for (CeedInt i = 0; i < 3; i++) { 291*2b916ea7SJeremy L Thompson dFe[i] = -Y.velocity[0] * dstress[0][i] - dY.velocity[0] * stress[0][i] - Y.velocity[1] * dstress[1][i] - dY.velocity[1] * stress[1][i] - 292*2b916ea7SJeremy L Thompson Y.velocity[2] * dstress[2][i] - dY.velocity[2] * stress[2][i] - gas->k * grad_ds[i].Y.temperature; 293475b2820SJames Wright } 294475b2820SJames Wright } 295475b2820SJames Wright 296475b2820SJames Wright #endif // newtonian_state_h 297