Add optional kLa input and calculation to advanced-reactor node
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@@ -6,6 +6,7 @@
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name: { value: "" },
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volume: { value: 0., required: true},
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n_inlets: { value: 1, required: true},
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kla: { value: null },
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S_O_init: { value: 0., required: true },
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S_I_init: { value: 30., required: true },
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S_S_init: { value: 100., required: true },
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@@ -36,6 +37,10 @@
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type:"num",
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types:["num"]
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});
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$("#node-input-kla").typedInput({
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type:"num",
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types:["num"]
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});
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$(".concentrations").typedInput({
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type:"num",
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types:["num"]
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@@ -68,6 +73,11 @@
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<label for="node-input-n_inlets"><i class="fa fa-tag"></i> Number of inlets</label>
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<input type="text" id="node-input-n_inlets" placeholder="#">
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</div>
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<h3> Internal mass transfer calculation (optional) </h3>
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<div class="form-row">
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<label for="node-input-kla"><i class="fa fa-tag"></i> kLa [d-1]</label>
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<input type="text" id="node-input-kla" placeholder="d-1">
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</div>
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<h2> Dissolved components </h2>
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<div class="form-row">
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<label for="node-input-S_O_init"><i class="fa fa-tag"></i> Initial dissolved oxygen [g O2 m-3]</label>
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@@ -10,6 +10,7 @@ module.exports = function(RED) {
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const reactor = new Reactor(
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parseFloat(config.volume),
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parseInt(config.n_inlets),
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parseFloat(config.kla),
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[
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parseFloat(config.S_O_init),
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parseFloat(config.S_I_init),
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15
dependencies/reactor_class.js
vendored
15
dependencies/reactor_class.js
vendored
@@ -3,7 +3,7 @@ const math = require('mathjs')
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class Reactor_CSTR {
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constructor(volume, n_inlets, initial_state) {
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constructor(volume, n_inlets, kla, initial_state) {
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this.state = initial_state;
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console.log(this.state);
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this.asm = new ASM3();
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@@ -12,6 +12,8 @@ class Reactor_CSTR {
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this.Fs = Array(n_inlets).fill(0.0); // fluid debits per inlet [m3 d-1]
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this.Cs_in = Array.from(Array(n_inlets), () => new Array(13).fill(0.0)); // composition influents
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this.OTR = 0.0; // oxygen transfer rate [g O2 d-1]
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this.kla = kla; // if NaN, use external OTR [d-1]
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this.currentTime = Date.now(); // milliseconds since epoch [ms]
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this.timeStep = 1/(24*60*15) // time step [d]
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@@ -31,6 +33,11 @@ class Reactor_CSTR {
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return {topic: "Fluent", payload: {inlet: 0, F: math.sum(this.Fs), C:this.state}, timestamp: this.currentTime};
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}
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calcOTR(S_O, T=20.0) { // caculate the OTR using basic correlation, default to temperature: 20 C
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let S_O_sat = 14.652 - 4.1022e-1*T + 7.9910e-3*T*T + 7.7774e-5*T*T*T;
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return this.kla * (S_O_sat - S_O);
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}
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// expect update with timestamp
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updateState(timestamp) {
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let newTime = timestamp;
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@@ -53,10 +60,10 @@ class Reactor_CSTR {
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const r = this.asm.compute_dC(this.state);
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const dC_in = math.multiply(math.divide([this.Fs], this.Vl), this.Cs_in)[0];
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const dC_out = math.multiply(math.sum(this.Fs)/this.Vl, this.state);
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const T_O = Array(13).fill(0.0);
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T_O[0] = this.OTR;
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const t_O = Array(13).fill(0.0);
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t_O[0] = isNaN(this.kla) ? this.OTR : this.calcOTR(this.state[0]); // calculate OTR if kla is not NaN, otherwise use externaly calculated OTR
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const dC_total = math.multiply(math.add(dC_in, dC_out, r, T_O), time_step);
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const dC_total = math.multiply(math.add(dC_in, dC_out, r, t_O), time_step);
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this.state = math.add(this.state, dC_total);
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return this.state;
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