313 lines
11 KiB
C++
313 lines
11 KiB
C++
#include "gridfire/reaction/reaction.h"
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#include<string_view>
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#include<string>
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#include<vector>
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#include<unordered_set>
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#include<algorithm>
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#include <ranges>
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#include "quill/LogMacros.h"
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#include "fourdst/composition/atomicSpecies.h"
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#include "xxhash64.h"
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namespace gridfire::reaction {
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using namespace fourdst::atomic;
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Reaction::Reaction(
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const std::string_view id,
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const std::string_view peName,
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const int chapter,
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const std::vector<Species>& reactants,
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const std::vector<Species>& products,
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const double qValue,
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const std::string_view label,
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const RateCoefficientSet& sets,
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const bool reverse) :
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m_id(id),
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m_peName(peName),
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m_chapter(chapter),
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m_qValue(qValue),
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m_reactants(reactants),
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m_products(products),
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m_sourceLabel(label),
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m_rateCoefficients(sets),
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m_reverse(reverse) {}
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double Reaction::calculate_rate(const double T9) const {
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return calculate_rate<double>(T9);
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}
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CppAD::AD<double> Reaction::calculate_rate(const CppAD::AD<double> T9) const {
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return calculate_rate<CppAD::AD<double>>(T9);
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}
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double Reaction::calculate_forward_rate_log_derivative(const double T9) const {
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constexpr double r_p13 = 1.0 / 3.0;
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constexpr double r_p53 = 5.0 / 3.0;
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constexpr double r_p23 = 2.0 / 3.0;
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constexpr double r_p43 = 4.0 / 3.0;
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const double T9_m1 = 1.0 / T9;
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const double T9_m23 = std::pow(T9, -r_p23);
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const double T9_m43 = std::pow(T9, -r_p43);
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const double d_log_k_fwd_dT9 =
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-m_rateCoefficients.a1 * T9_m1 * T9_m1
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- r_p13 * m_rateCoefficients.a2 * T9_m43
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+ r_p13 * m_rateCoefficients.a3 * T9_m23
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+ m_rateCoefficients.a4
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+ r_p53 * m_rateCoefficients.a5 * std::pow(T9, r_p23)
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+ m_rateCoefficients.a6 * T9_m1;
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return d_log_k_fwd_dT9; // Return the derivative of the log rate with respect to T9
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}
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bool Reaction::contains(const Species &species) const {
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return contains_reactant(species) || contains_product(species);
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}
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bool Reaction::contains_reactant(const Species& species) const {
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for (const auto& reactant : m_reactants) {
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if (reactant == species) {
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return true;
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}
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}
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return false;
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}
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bool Reaction::contains_product(const Species& species) const {
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for (const auto& product : m_products) {
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if (product == species) {
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return true;
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}
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}
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return false;
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}
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std::unordered_set<Species> Reaction::all_species() const {
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auto rs = reactant_species();
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auto ps = product_species();
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rs.insert(ps.begin(), ps.end());
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return rs;
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}
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std::unordered_set<Species> Reaction::reactant_species() const {
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std::unordered_set<Species> reactantsSet;
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for (const auto& reactant : m_reactants) {
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reactantsSet.insert(reactant);
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}
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return reactantsSet;
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}
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std::unordered_set<Species> Reaction::product_species() const {
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std::unordered_set<Species> productsSet;
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for (const auto& product : m_products) {
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productsSet.insert(product);
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}
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return productsSet;
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}
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int Reaction::stoichiometry(const Species& species) const {
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int s = 0;
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for (const auto& reactant : m_reactants) {
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if (reactant == species) {
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s--;
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}
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}
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for (const auto& product : m_products) {
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if (product == species) {
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s++;
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}
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}
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return s;
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}
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size_t Reaction::num_species() const {
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return all_species().size();
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}
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std::unordered_map<Species, int> Reaction::stoichiometry() const {
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std::unordered_map<Species, int> stoichiometryMap;
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for (const auto& reactant : m_reactants) {
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stoichiometryMap[reactant]--;
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}
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for (const auto& product : m_products) {
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stoichiometryMap[product]++;
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}
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return stoichiometryMap;
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}
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double Reaction::excess_energy() const {
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double reactantMass = 0.0;
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double productMass = 0.0;
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constexpr double AMU2MeV = 931.494893; // Conversion factor from atomic mass unit to MeV
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for (const auto& reactant : m_reactants) {
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reactantMass += reactant.mass();
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}
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for (const auto& product : m_products) {
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productMass += product.mass();
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}
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return (reactantMass - productMass) * AMU2MeV;
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}
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uint64_t Reaction::hash(uint64_t seed) const {
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return XXHash64::hash(m_id.data(), m_id.size(), seed);
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}
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LogicalReaction::LogicalReaction(const std::vector<Reaction>& reactants) :
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Reaction(reactants.front().peName(),
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reactants.front().peName(),
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reactants.front().chapter(),
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reactants.front().reactants(),
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reactants.front().products(),
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reactants.front().qValue(),
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reactants.front().sourceLabel(),
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reactants.front().rateCoefficients(),
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reactants.front().is_reverse()) {
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m_sources.reserve(reactants.size());
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m_rates.reserve(reactants.size());
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for (const auto& reaction : reactants) {
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if (std::abs(std::abs(reaction.qValue()) - std::abs(m_qValue)) > 1e-6) {
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LOG_ERROR(
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m_logger,
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"LogicalReaction constructed with reactions having different Q-values. Expected {} got {}.",
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m_qValue,
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reaction.qValue()
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);
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m_logger -> flush_log();
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throw std::runtime_error("LogicalReaction constructed with reactions having different Q-values. Expected " + std::to_string(m_qValue) + " got " + std::to_string(reaction.qValue()) + " (difference : " + std::to_string(std::abs(reaction.qValue() - m_qValue)) + ").");
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}
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m_sources.push_back(std::string(reaction.sourceLabel()));
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m_rates.push_back(reaction.rateCoefficients());
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}
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}
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void LogicalReaction::add_reaction(const Reaction& reaction) {
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if (reaction.peName() != m_id) {
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LOG_ERROR(m_logger, "Cannot add reaction with different peName to LogicalReaction. Expected {} got {}.", m_id, reaction.peName());
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m_logger -> flush_log();
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throw std::runtime_error("Cannot add reaction with different peName to LogicalReaction. Expected " + std::string(m_id) + " got " + std::string(reaction.peName()) + ".");
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}
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for (const auto& source : m_sources) {
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if (source == reaction.sourceLabel()) {
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LOG_ERROR(m_logger, "Cannot add reaction with duplicate source label {} to LogicalReaction.", reaction.sourceLabel());
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m_logger -> flush_log();
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throw std::runtime_error("Cannot add reaction with duplicate source label " + std::string(reaction.sourceLabel()) + " to LogicalReaction.");
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}
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}
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if (std::abs(reaction.qValue() - m_qValue) > 1e-6) {
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LOG_ERROR(m_logger, "LogicalReaction constructed with reactions having different Q-values. Expected {} got {}.", m_qValue, reaction.qValue());
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m_logger -> flush_log();
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throw std::runtime_error("LogicalReaction constructed with reactions having different Q-values. Expected " + std::to_string(m_qValue) + " got " + std::to_string(reaction.qValue()) + ".");
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}
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m_sources.push_back(std::string(reaction.sourceLabel()));
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m_rates.push_back(reaction.rateCoefficients());
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}
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double LogicalReaction::calculate_rate(const double T9) const {
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return calculate_rate<double>(T9);
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}
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double LogicalReaction::calculate_forward_rate_log_derivative(const double T9) const {
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constexpr double r_p13 = 1.0 / 3.0;
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constexpr double r_p53 = 5.0 / 3.0;
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constexpr double r_p23 = 2.0 / 3.0;
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constexpr double r_p43 = 4.0 / 3.0;
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double totalRate = 0.0;
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double totalRateDerivative = 0.0;
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const double T9_m1 = 1.0 / T9;
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const double T913 = std::pow(T9, r_p13);
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const double T953 = std::pow(T9, r_p53);
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const double logT9 = std::log(T9);
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const double T9_m1_sq = T9_m1 * T9_m1;
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const double T9_m23 = std::pow(T9, -r_p23);
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const double T9_m43 = std::pow(T9, -r_p43);
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const double T9_p23 = std::pow(T9, r_p23);
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for (const auto& coeffs : m_rates) {
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const double exponent = coeffs.a0 +
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coeffs.a1 * T9_m1 +
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coeffs.a2 / T913 +
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coeffs.a3 * T913 +
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coeffs.a4 * T9 +
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coeffs.a5 * T953 +
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coeffs.a6 * logT9;
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const double individualRate = std::exp(exponent);
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const double d_exponent_T9 =
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-coeffs.a1 * T9_m1_sq
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- r_p13 * coeffs.a2 * T9_m43
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+ r_p13 * coeffs.a3 * T9_m23
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+ coeffs.a4
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+ r_p53 * coeffs.a5 * T9_p23
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+ coeffs.a6 * T9_m1;
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const double individualRateDerivative = individualRate * d_exponent_T9;
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totalRate += individualRate;
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totalRateDerivative += individualRateDerivative;
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}
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if (totalRate == 0.0) {
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return 0.0; // Avoid division by zero
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}
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return totalRateDerivative / totalRate;
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}
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CppAD::AD<double> LogicalReaction::calculate_rate(const CppAD::AD<double> T9) const {
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return calculate_rate<CppAD::AD<double>>(T9);
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}
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LogicalReactionSet packReactionSetToLogicalReactionSet(const ReactionSet& reactionSet) {
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std::unordered_map<std::string_view, std::vector<Reaction>> groupedReactions;
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for (const auto& reaction: reactionSet) {
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groupedReactions[reaction.peName()].push_back(reaction);
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}
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std::vector<LogicalReaction> reactions;
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reactions.reserve(groupedReactions.size());
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for (const auto &reactionsGroup: groupedReactions | std::views::values) {
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LogicalReaction logicalReaction(reactionsGroup);
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reactions.push_back(logicalReaction);
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}
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return LogicalReactionSet(std::move(reactions));
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}
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}
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namespace std {
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template<>
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struct hash<gridfire::reaction::Reaction> {
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size_t operator()(const gridfire::reaction::Reaction& r) const noexcept {
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return r.hash(0);
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}
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};
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template<>
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struct hash<gridfire::reaction::ReactionSet> {
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size_t operator()(const gridfire::reaction::ReactionSet& s) const noexcept {
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return s.hash(0);
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}
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};
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template<>
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struct hash<gridfire::reaction::LogicalReactionSet> {
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size_t operator()(const gridfire::reaction::LogicalReactionSet& s) const noexcept {
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return s.hash(0);
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}
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};
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} // namespace std
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