Asphaltene Deposition Modeling during Natural Depletion and Developing a New Method for Multiphase Flash Calculation

The specific objective of this paper is to develop a fully implicit compositional simulator for modeling asphaltene deposition during natural depletion. In this study, a mathematical model for asphaltene deposition modeling is presented followed by the solution approach using the fully implicit sche...

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Main Authors: Gholamreza Fallahnejad, Riyaz Kharrat
Format: Article
Language:English
Published: Petroleum University of Technology 2016-04-01
Series:Iranian Journal of Oil & Gas Science and Technology
Subjects:
Online Access:http://ijogst.put.ac.ir/article_15798_0a64e3a171d80a3e813e4ce2fd2c9e7f.pdf
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spelling doaj-86cae284ead340999ca951585f1357012020-11-25T03:13:20ZengPetroleum University of TechnologyIranian Journal of Oil & Gas Science and Technology2345-24122345-24202016-04-0152456510.22050/ijogst.2016.1579815798Asphaltene Deposition Modeling during Natural Depletion and Developing a New Method for Multiphase Flash CalculationGholamreza Fallahnejad0Riyaz Kharrat1Department of Petroleum Engineering, Petroleum University of Technology, Ahwaz, IranDepartment of Petroleum Engineering, Petroleum University of Technology, Ahwaz, Iran.The specific objective of this paper is to develop a fully implicit compositional simulator for modeling asphaltene deposition during natural depletion. In this study, a mathematical model for asphaltene deposition modeling is presented followed by the solution approach using the fully implicit scheme. A thermodynamic model for asphaltene precipitation and the numerical methods for performing flash calculation with a solid phase are described. The pure solid model is used to model asphaltene precipitation. The transformation of precipitated solid into flocculated solid is modeled by using a first order chemical reaction. Adsorption, pore throat plugging, and re-entrainment were considered in the deposition model. The simulator has the capability of predicting formation damage including porosity and permeability reduction in each block. A new set of independent unknowns in a fully implicit scheme is presented for asphaltene deposition modeling. In order to find the solution of these variables, the same number of equations is also presented. The description of how to solve the nonlinear system of equations is also described.http://ijogst.put.ac.ir/article_15798_0a64e3a171d80a3e813e4ce2fd2c9e7f.pdfasphaltene depositioncomposition simulationmultiphase flashsolid modelmodeling
collection DOAJ
language English
format Article
sources DOAJ
author Gholamreza Fallahnejad
Riyaz Kharrat
spellingShingle Gholamreza Fallahnejad
Riyaz Kharrat
Asphaltene Deposition Modeling during Natural Depletion and Developing a New Method for Multiphase Flash Calculation
Iranian Journal of Oil & Gas Science and Technology
asphaltene deposition
composition simulation
multiphase flash
solid model
modeling
author_facet Gholamreza Fallahnejad
Riyaz Kharrat
author_sort Gholamreza Fallahnejad
title Asphaltene Deposition Modeling during Natural Depletion and Developing a New Method for Multiphase Flash Calculation
title_short Asphaltene Deposition Modeling during Natural Depletion and Developing a New Method for Multiphase Flash Calculation
title_full Asphaltene Deposition Modeling during Natural Depletion and Developing a New Method for Multiphase Flash Calculation
title_fullStr Asphaltene Deposition Modeling during Natural Depletion and Developing a New Method for Multiphase Flash Calculation
title_full_unstemmed Asphaltene Deposition Modeling during Natural Depletion and Developing a New Method for Multiphase Flash Calculation
title_sort asphaltene deposition modeling during natural depletion and developing a new method for multiphase flash calculation
publisher Petroleum University of Technology
series Iranian Journal of Oil & Gas Science and Technology
issn 2345-2412
2345-2420
publishDate 2016-04-01
description The specific objective of this paper is to develop a fully implicit compositional simulator for modeling asphaltene deposition during natural depletion. In this study, a mathematical model for asphaltene deposition modeling is presented followed by the solution approach using the fully implicit scheme. A thermodynamic model for asphaltene precipitation and the numerical methods for performing flash calculation with a solid phase are described. The pure solid model is used to model asphaltene precipitation. The transformation of precipitated solid into flocculated solid is modeled by using a first order chemical reaction. Adsorption, pore throat plugging, and re-entrainment were considered in the deposition model. The simulator has the capability of predicting formation damage including porosity and permeability reduction in each block. A new set of independent unknowns in a fully implicit scheme is presented for asphaltene deposition modeling. In order to find the solution of these variables, the same number of equations is also presented. The description of how to solve the nonlinear system of equations is also described.
topic asphaltene deposition
composition simulation
multiphase flash
solid model
modeling
url http://ijogst.put.ac.ir/article_15798_0a64e3a171d80a3e813e4ce2fd2c9e7f.pdf
work_keys_str_mv AT gholamrezafallahnejad asphaltenedepositionmodelingduringnaturaldepletionanddevelopinganewmethodformultiphaseflashcalculation
AT riyazkharrat asphaltenedepositionmodelingduringnaturaldepletionanddevelopinganewmethodformultiphaseflashcalculation
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