A Thermodynamic Model for Wax Deposition Phenomena
Publish place: 11th National Iranian Chemical Engineering Congress
Publish Year: 1385
Type: Conference paper
Language: English
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Document National Code:
NICEC11_071
Index date: 24 April 2007
A Thermodynamic Model for Wax Deposition Phenomena abstract
Wax precipitation is a serious problem in the petroleum industry because it may result in the plugging of well bores, production facilities and transportation pipelines during oil/gas production. To avoid this problem it is necessary to predict the wax appearance temperature (WAT) accurately. Consequently, a reliable thermodynamic model for predicting WAT is crucial in the design of production and transportation facilities. In this work, a thermodynamic model, based on multi-solid phase theory, has been developed. In this model the vapor and liquid phase fugacities are
calculated using the Modified Peng Robinson (MPR) equation of state. The solid phase fugacities of pure components are evaluated indirectly from equation of state by the fugacity ratio. Fraction properties are estimated by use of PNA analysis and for evaluating enthalpy of fusion a correlation is developed. The major aim for performing this research was to develop a thermodynamic – computerized model for predicting WAT and the amount of precipitated wax in petroleum mixtures. The model has been applied to calculate wax appearance temperature and the amount of
precipitated wax for some North Sea and synthetic oils. The predicted results are in very good agreement with experimental data.
A Thermodynamic Model for Wax Deposition Phenomena Keywords:
A Thermodynamic Model for Wax Deposition Phenomena authors
seyed reza dalirsefat
Chemical Engineering Department, Iran University of Science and Technology, Tehran, Iran
Farzandeh Feyzi
Chemical Engineering Department, Iran University of Science and Technology, Tehran, Iran
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