termo.optimization.errorfunctions.TemperatureMixtureErrorData Maven / Gradle / Ivy
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Thermodynamics properties and
equilibria calculations for
chemical engineering.
/*
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*/
package termo.optimization.errorfunctions;
/**
*
* @author Hugo
*/
public class TemperatureMixtureErrorData {
private double liquidFraction;
private double experimentalVaporFraction;
private double calculatedVaporFraction;
private double experimentalTemperature;
private double calculatedTemperature;
private double relativeError;
double calculatedPressure;
public double getCalculatedPressure() {
return calculatedPressure;
}
public void setCalculatedPressure(double calculatedPressure) {
this.calculatedPressure = calculatedPressure;
}
public double getExperimentalPressure() {
return experimentalPressure;
}
public void setExperimentalPressure(double experimentalPressure) {
this.experimentalPressure = experimentalPressure;
}
double experimentalPressure;
// TemperatureMixtureErrorData(double liquidFraction, double tempExp, double tempCalc) {
// this.liquidFraction= liquidFraction;
// this.experimentalTemperature = tempExp;
// this.calculatedTemperature = tempCalc;
// }
public TemperatureMixtureErrorData(){
}
public TemperatureMixtureErrorData(double liquidFraction, double experimentalVaporFraction, double calculatedVaporFraction, double experimentalTemperature, double calculatedTemperature,
double relativeError) {
this.liquidFraction = liquidFraction;
this.experimentalVaporFraction = experimentalVaporFraction;
this.calculatedVaporFraction = calculatedVaporFraction;
this.experimentalTemperature = experimentalTemperature;
this.calculatedTemperature = calculatedTemperature;
this.relativeError = relativeError;
}
/**
* @return the liquidFraction
*/
public double getLiquidFraction() {
return liquidFraction;
}
/**
* @param liquidFraction the liquidFraction to set
*/
public void setLiquidFraction(double liquidFraction) {
this.liquidFraction = liquidFraction;
}
/**
* @return the experimentalTemperature
*/
public double getExperimentalTemperature() {
return experimentalTemperature;
}
/**
* @param experimentalTemperature the experimentalTemperature to set
*/
public void setExperimentalTemperature(double experimentalTemperature) {
this.experimentalTemperature = experimentalTemperature;
}
/**
* @return the calculatedTemperature
*/
public double getCalculatedTemperature() {
return calculatedTemperature;
}
/**
* @param calculatedTemperature the calculatedTemperature to set
*/
public void setCalculatedTemperature(double calculatedTemperature) {
this.calculatedTemperature = calculatedTemperature;
}
/**
* @return the experimentalVaporFraction
*/
public double getExperimentalVaporFraction() {
return experimentalVaporFraction;
}
/**
* @param experimentalVaporFraction the experimentalVaporFraction to set
*/
public void setExperimentalVaporFraction(double experimentalVaporFraction) {
this.experimentalVaporFraction = experimentalVaporFraction;
}
/**
* @return the calculatedVaporFraction
*/
public double getCalculatedVaporFraction() {
return calculatedVaporFraction;
}
/**
* @param calculatedVaporFraction the calculatedVaporFraction to set
*/
public void setCalculatedVaporFraction(double calculatedVaporFraction) {
this.calculatedVaporFraction = calculatedVaporFraction;
}
/**
* @return the relativeError
*/
public double getRelativeError() {
return relativeError;
}
/**
* @param relativeError the relativeError to set
*/
public void setRelativeError(double relativeError) {
this.relativeError = relativeError;
}
}
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