Enhance documentation for ASM3 class and its parameters
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@@ -1,11 +1,16 @@
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const math = require('mathjs')
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const math = require('mathjs')
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/**
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* ASM3 class for the Activated Sludge Model No. 3 (ASM3).
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*/
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class ASM3 {
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class ASM3 {
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constructor() {
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constructor() {
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/**
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* Kinetic parameters for ASM3 at 20 C.
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* @property {Object} kin_params - Kinetic parameters
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*/
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this.kin_params = {
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this.kin_params = {
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// Kinetic parameters (20 C for now)
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// Hydrolysis
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// Hydrolysis
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k_H: 3., // hydrolysis rate constant [g X_S g-1 X_H d-1]
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k_H: 3., // hydrolysis rate constant [g X_S g-1 X_H d-1]
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K_X: 1., // hydrolysis saturation constant [g X_S g-1 X_H]
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K_X: 1., // hydrolysis saturation constant [g X_S g-1 X_H]
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@@ -31,9 +36,13 @@ class ASM3 {
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b_A_O: 0.15, // aerobic respiration rate [d-1]
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b_A_O: 0.15, // aerobic respiration rate [d-1]
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b_A_NO: 0.05 // anoxic respiration rate [d-1]
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b_A_NO: 0.05 // anoxic respiration rate [d-1]
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};
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};
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this.stoi_params = {
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// Stoichiometric and composition parameters
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/**
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* Stoichiometric and composition parameters for ASM3.
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* @property {Object} stoi_params - Stoichiometric parameters
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*/
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this.stoi_params = {
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// Fractions
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f_SI: 0., // fraction S_I from hydrolysis [g S_I g-1 X_S]
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f_SI: 0., // fraction S_I from hydrolysis [g S_I g-1 X_S]
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f_XI: 0.2, // fraction X_I from decomp X_H [g X_I g-1 X_H]
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f_XI: 0.2, // fraction X_I from decomp X_H [g X_I g-1 X_H]
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// Yields
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// Yields
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@@ -63,6 +72,10 @@ class ASM3 {
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this.stoi_matrix = this._initialise_stoi_matrix();
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this.stoi_matrix = this._initialise_stoi_matrix();
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}
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}
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/**
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* Initialises the stoichiometric matrix for ASM3.
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* @returns {Array} - The stoichiometric matrix for ASM3. (2D array)
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*/
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_initialise_stoi_matrix() { // initialise stoichiometric matrix
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_initialise_stoi_matrix() { // initialise stoichiometric matrix
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const { f_SI, f_XI, Y_STO_O, Y_STO_NO, Y_H_O, Y_H_NO, Y_A, i_CODN, i_CODNO, i_NSI, i_NSS, i_NXI, i_NXS, i_NBM, i_TSXI, i_TSXS, i_TSBM, i_TSSTO, i_cNH, i_cNO } = this.stoi_params;
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const { f_SI, f_XI, Y_STO_O, Y_STO_NO, Y_H_O, Y_H_NO, Y_A, i_CODN, i_CODNO, i_NSI, i_NSS, i_NXI, i_NXS, i_NBM, i_TSXI, i_TSXS, i_TSBM, i_TSSTO, i_cNH, i_cNO } = this.stoi_params;
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@@ -84,15 +97,32 @@ class ASM3 {
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return stoi_matrix[0].map((col, i) => stoi_matrix.map(row => row[i])); // transpose matrix
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return stoi_matrix[0].map((col, i) => stoi_matrix.map(row => row[i])); // transpose matrix
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}
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}
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/**
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* Computes the Monod equation rate value for a given concentration and half-saturation constant.
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* @param {number} c - Concentration of reaction species.
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* @param {number} K - Half-saturation constant for the reaction species.
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* @returns {number} - Monod equation rate value for the given concentration and half-saturation constant.
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*/
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_monod(c, K){
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_monod(c, K){
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return c / (K + c);
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return c / (K + c);
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}
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}
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/**
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* Computes the inverse Monod equation rate value for a given concentration and half-saturation constant. Used for inhibition.
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* @param {number} c - Concentration of reaction species.
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* @param {number} K - Half-saturation constant for the reaction species.
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* @returns {number} - Inverse Monod equation rate value for the given concentration and half-saturation constant.
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*/
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_inv_monod(c, K){
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_inv_monod(c, K){
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return K / (K + c);
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return K / (K + c);
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}
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}
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compute_rates(state) { // computes reaction rates. state is optional
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/**
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* Computes the reaction rates for each process reaction based on the current state.
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* @param {Array} state - State vector containing concentrations of reaction species.
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* @returns {Array} - Reaction rates for each process reaction.
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*/
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compute_rates(state) {
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// state: S_O, S_I, S_S, S_NH, S_N2, S_NO, S_HCO, X_I, X_S, X_H, X_STO, X_A, X_TS
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// state: S_O, S_I, S_S, S_NH, S_N2, S_NO, S_HCO, X_I, X_S, X_H, X_STO, X_A, X_TS
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const rates = Array(12);
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const rates = Array(12);
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const [S_O, S_I, S_S, S_NH, S_N2, S_NO, S_HCO, X_I, X_S, X_H, X_STO, X_A, X_TS] = state;
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const [S_O, S_I, S_S, S_NH, S_N2, S_NO, S_HCO, X_I, X_S, X_H, X_STO, X_A, X_TS] = state;
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@@ -119,6 +149,11 @@ class ASM3 {
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return rates;
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return rates;
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}
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}
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/**
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* Computes the change in concentrations of reaction species based on the current state.
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* @param {Array} state - State vector containing concentrations of reaction species.
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* @returns {Array} - Change in reaction species concentrations.
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*/
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compute_dC(state) { // compute changes in concentrations
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compute_dC(state) { // compute changes in concentrations
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// state: S_O, S_I, S_S, S_NH, S_N2, S_NO, S_HCO, X_I, X_S, X_H, X_STO, X_A, X_TS
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// state: S_O, S_I, S_S, S_NH, S_N2, S_NO, S_HCO, X_I, X_S, X_H, X_STO, X_A, X_TS
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return math.multiply(this.stoi_matrix, this.compute_rates(state));
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return math.multiply(this.stoi_matrix, this.compute_rates(state));
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