Add recirculation pump node with input handling and flow management
This commit is contained in:
57
additional_nodes/recirculation-pump.html
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57
additional_nodes/recirculation-pump.html
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<script type="text/javascript">
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RED.nodes.registerType("recirculation-pump", {
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category: "WWTP",
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color: "#e4a363",
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defaults: {
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name: { value: "" },
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F2: { value: 0, required: true },
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inlet: { value: 1, required: true }
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},
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inputs: 1,
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outputs: 2,
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outputLabels: ["Main effluent", "Recirculation effluent"],
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icon: "font-awesome/fa-random",
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label: function() {
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return this.name || "Recirculation pump";
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},
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oneditprepare: function() {
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$("#node-input-F2").typedInput({
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type:"num",
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types:["num"]
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});
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$("#node-input-inlet").typedInput({
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type:"num",
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types:["num"]
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});
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},
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oneditsave: function() {
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let debit = parseFloat($("#node-input-F2").typedInput("value"));
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if (isNaN(volume) || debit < 0) {
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RED.notify("Debit is not set correctly", {type: "error"});
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}
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let inlet = parseInt($("#node-input-n_inlets").typedInput("value"));
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if (isNaN(inlet) || inlet < 1) {
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RED.notify("Number of inlets not set correctly", {type: "error"});
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}
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}
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});
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</script>
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<script type="text/html" data-template-name="recirculation-pump">
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<div class="form-row">
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<label for="node-input-name"><i class="fa fa-tag"></i> Name</label>
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<input type="text" id="node-input-name" placeholder="Name">
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</div>
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<div class="form-row">
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<label for="node-input-F2"><i class="fa fa-tag"></i> Recirculation debit [m3 s-1]</label>
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<input type="text" id="node-input-F2" placeholder="m3 s-1">
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</div>
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<div class="form-row">
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<label for="node-input-inlet"><i class="fa fa-tag"></i> Assigned inlet recirculation</label>
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<input type="text" id="node-input-inlet" placeholder="#">
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</div>
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</script>
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<script type="text/html" data-help-name="recirculation-pump">
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<p>Recirculation-pump for splitting streams</p>
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</script>
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38
additional_nodes/recirculation-pump.js
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38
additional_nodes/recirculation-pump.js
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@@ -0,0 +1,38 @@
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module.exports = function(RED) {
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function recirculation(config) {
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RED.nodes.createNode(this, config);
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var node = this;
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let name = config.name;
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let F2 = parseFloat(config.F2);
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let inlet = parseInt(config.inlet);
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node.on('input', function(msg, send, done) {
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switch (msg.topic) {
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case "Fluent":
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// conserve volume flow debit
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let F1 = msg.payload.F;
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let F_diff = Math.max(F1 - F2, 0);
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let F2_corr = F1 < F2 ? F1 : F2;
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let msg_F1 = structuredClone(msg);
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msg_F1.payload.F = F_diff;
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let msg_F2 = structuredClone(msg);
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msg_F2.payload.F = F2_corr;
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msg_F2.payload.inlet = inlet;
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send([msg_F1, msg_F2]);
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break;
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default:
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console.log("Unknown topic: " + msg.topic);
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}
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if (done) {
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done();
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}
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});
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}
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RED.nodes.registerType("recirculation-pump", recirculation);
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};
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@@ -1,7 +1,7 @@
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<script type="text/javascript">
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<script type="text/javascript">
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RED.nodes.registerType("advanced-reactor", {
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RED.nodes.registerType("advanced-reactor", {
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category: 'WWTP',
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category: "WWTP",
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color: '#c4cce0',
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color: "#c4cce0",
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defaults: {
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defaults: {
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name: { value: "" },
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name: { value: "" },
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volume: { value: 0., required: true},
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volume: { value: 0., required: true},
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@@ -34,7 +34,9 @@ module.exports = function(RED) {
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break;
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break;
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case "Fluent":
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case "Fluent":
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reactor.setInfluent = msg;
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reactor.setInfluent = msg;
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reactor.updateState(msg.timestamp);
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if (msg.payload.inlet == 0){
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reactor.updateState(msg.timestamp);
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}
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break;
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break;
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case "OTR":
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case "OTR":
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reactor.setOTR = msg;
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reactor.setOTR = msg;
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6
dependencies/reactor_class.js
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6
dependencies/reactor_class.js
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@@ -10,7 +10,7 @@ class Reactor_CSTR {
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this.Vl = volume; // fluid volume reactor [m3]
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this.Vl = volume; // fluid volume reactor [m3]
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this.Fs = Array(n_inlets).fill(0.0); // fluid debits per inlet [m3 d-1]
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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 influent
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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.OTR = 0.0; // oxygen transfer rate [g O2 d-1]
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this.currentTime = Date.now(); // milliseconds since epoch [ms]
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this.currentTime = Date.now(); // milliseconds since epoch [ms]
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@@ -51,8 +51,8 @@ class Reactor_CSTR {
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tick_fe(time_step) { // tick reactor state using forward Euler method
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tick_fe(time_step) { // tick reactor state using forward Euler method
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const r = this.asm.compute_dC(this.state);
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const r = this.asm.compute_dC(this.state);
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const dC_in = math.multiply(this.Cs_in, this.Fs/this.Vl)[0];
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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(this.state, math.sum(this.Fs)/this.Vl);
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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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const T_O = Array(13).fill(0.0);
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T_O[0] = this.OTR;
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T_O[0] = this.OTR;
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@@ -21,7 +21,8 @@
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},
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},
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"node-red": {
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"node-red": {
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"nodes": {
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"nodes": {
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"advanced-reactor": "advanced-reactor.js"
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"advanced-reactor": "advanced-reactor.js",
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"recirculation-pump": "additional_nodes/recirculation-pump.js"
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}
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}
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},
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},
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"dependencies": {
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"dependencies": {
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