Computation Thermodynamic Properties of SuperheatedWater* Far from Critical Region

A general equation has been presented in the present work to calculate specific volume, internal energy, enthalpy and entropy of superheated steam. The developed equation appeared in one context in order to confer upon it the status of generalizing form and away it from complexity that accompanies...

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Main Author: Tawfeeq Kadheem Faleh Al-Hamdi
Format: Article
Language:Arabic
Published: Mustansiriyah University/College of Engineering 2011-09-01
Series:Journal of Engineering and Sustainable Development
Subjects:
Online Access:https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1350
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author Tawfeeq Kadheem Faleh Al-Hamdi
author_facet Tawfeeq Kadheem Faleh Al-Hamdi
author_sort Tawfeeq Kadheem Faleh Al-Hamdi
collection DOAJ
description A general equation has been presented in the present work to calculate specific volume, internal energy, enthalpy and entropy of superheated steam. The developed equation appeared in one context in order to confer upon it the status of generalizing form and away it from complexity that accompanies many equations and great number of mathematical terms that appear in those equations, where the number of terms in the equation presented in present work were eleven terms. Present equations showed a good accuracy for 523 experimental data points to evaluate a selected thermodynamic property of superheated steam. The average absolute percentage of error for those properties not exceed 1%, where the average absolute percentage of error 0.687% for specific volume, 0.767% for the internal energy, 0.867% for enthalpy and 0.654% for entropy.
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spelling doaj.art-ff13915934b24bca9c18234d9097bbc82022-12-22T03:35:35ZaraMustansiriyah University/College of EngineeringJournal of Engineering and Sustainable Development2520-09172520-09252011-09-01153Computation Thermodynamic Properties of SuperheatedWater* Far from Critical RegionTawfeeq Kadheem Faleh Al-Hamdi 0Material Engineering Department, College of Engineering, Mustansiriyah University, Baghdad, Iraq A general equation has been presented in the present work to calculate specific volume, internal energy, enthalpy and entropy of superheated steam. The developed equation appeared in one context in order to confer upon it the status of generalizing form and away it from complexity that accompanies many equations and great number of mathematical terms that appear in those equations, where the number of terms in the equation presented in present work were eleven terms. Present equations showed a good accuracy for 523 experimental data points to evaluate a selected thermodynamic property of superheated steam. The average absolute percentage of error for those properties not exceed 1%, where the average absolute percentage of error 0.687% for specific volume, 0.767% for the internal energy, 0.867% for enthalpy and 0.654% for entropy. https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1350specific volumeinternal energyenthalpyentropySuperheated Water
spellingShingle Tawfeeq Kadheem Faleh Al-Hamdi
Computation Thermodynamic Properties of SuperheatedWater* Far from Critical Region
Journal of Engineering and Sustainable Development
specific volume
internal energy
enthalpy
entropy
Superheated Water
title Computation Thermodynamic Properties of SuperheatedWater* Far from Critical Region
title_full Computation Thermodynamic Properties of SuperheatedWater* Far from Critical Region
title_fullStr Computation Thermodynamic Properties of SuperheatedWater* Far from Critical Region
title_full_unstemmed Computation Thermodynamic Properties of SuperheatedWater* Far from Critical Region
title_short Computation Thermodynamic Properties of SuperheatedWater* Far from Critical Region
title_sort computation thermodynamic properties of superheatedwater far from critical region
topic specific volume
internal energy
enthalpy
entropy
Superheated Water
url https://jeasd.uomustansiriyah.edu.iq/index.php/jeasd/article/view/1350
work_keys_str_mv AT tawfeeqkadheemfalehalhamdi computationthermodynamicpropertiesofsuperheatedwaterfarfromcriticalregion