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function Flowmeter() {
Flowmeter.prototype.define = function Flowmeter() {
this.ModelName = "Flowmeter";
this.PrametersValue = 1;
this.ParametersName = "Qini";
var model = scicos_model();
this.Typein = [];
this.Typeout = [];
this.MI = [];
this.MO = [];
this.P = [[50,105,-1,90],[0,10,2,0],[101,10,-2,0]];
this.PortName = [["Mesure"],["C1"],["C2"]];
for (var i = 0; i < size(this.P, "r"); i++) {
if (this.P[i][2] == 1) {
this.Typein.push(["E"]);
this.MI.push(this.PortName[i]);
}
if (this.P[i][2] == 2) {
this.Typein.push(["I"]);
this.MI.push(this.PortName[i]);
}
if (this.P[i][2] == -1) {
this.Typeout.push(["E"]);
this.MO.push(this.PortName[i]);
}
if (this.P[i][2] == -2) {
this.Typeout.push(["I"]);
this.MO.push(this.PortName[i]);
}
}
var mo = new modelica_function();
model.sim = new ScilabString([this.ModelName]);
mo.inputs = new ScilabString(...this.MI);
mo.outputs = new ScilabString(...this.MO);
model.rpar = new ScilabDouble([this.PrametersValue]);
mo.parameters = list(new ScilabString([this.ParametersName]), new ScilabDouble([this.PrametersValue]), new ScilabDouble(zeros([this.ParametersName])));
var exprs = new ScilabString(["1"]);
var gr_i = new ScilabString(["xstringb(orig(1),orig(2),\"Flowmeter\",sz(1),sz(2));"]);
model.blocktype = new ScilabString(["c"]);
model.dep_ut = new ScilabBoolean([false, true]);
mo.model = new ScilabString([this.ModelName]);
model.equations = mo;
model.in = new ScilabDouble(...ones(size(this.MI, "*"), 1));
model.out = new ScilabDouble(...ones(size(this.MO, "*"), 1));
this.x = new standard_define(new ScilabDouble([2, 2]), model, exprs, list(new ScilabString([gr_i]), new ScilabDouble([0])));
this.x.graphics.in_implicit = new ScilabDouble(this.Typein);
this.x.graphics.out_implicit = new ScilabDouble(this.Typeout);
return new BasicBlock(this.x);
}
Flowmeter.prototype.details = function Flowmeter() {
return this.x;
}
}
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