Modelamiento y simulación de un sistema no convencional de levantamiento multifasico

The importance of the multiphase flow is caused in that when the produced fluid is displaced from the reservoir to the surface, energy is released in both the vertical and horizontal flow; this energy or pressure is possessed by the fluid while it is in the reservoir. Therefore, it is required to ma...

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Main Authors: Julio César Pérez Angulo, Manuel Enrique Cabarcas Simancas, Nicolás Santos Santos
Format: Article
Language:Spanish
Published: Universidad Industrial de Santander 2016-06-01
Series:Revista Fuentes El Reventón Energético
Subjects:
Online Access:https://doi.org/10.18273/revfue.v14n1-2016002
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spelling doaj-19911e2728a94227b72f6b4e8755a6ef2020-11-24T21:21:02ZspaUniversidad Industrial de SantanderRevista Fuentes El Reventón Energético1657-65272145-85022016-06-011411933https://doi.org/10.18273/revfue.v14n1-2016002Modelamiento y simulación de un sistema no convencional de levantamiento multifasicoJulio César Pérez Angulo0Manuel Enrique Cabarcas Simancas1Nicolás Santos Santos2UNIVERSIDAD INDUSTRIAL DE SANTANDERUNIVERSIDAD INDUSTRIAL DE SANTANDERUNIVERSIDAD INDUSTRIAL DE SANTANDERThe importance of the multiphase flow is caused in that when the produced fluid is displaced from the reservoir to the surface, energy is released in both the vertical and horizontal flow; this energy or pressure is possessed by the fluid while it is in the reservoir. Therefore, it is required to make a good design teams well, flowlines, throttles, separators and other connections. For optimum design, it is necessary to conduct a detailed study of the behavior of multiphase flow in each component. This paper presents the software developed which allows determine through correlations and mechanistic models, the profiles of pressure and temperature that occur along the pipes. The software was developed in a graphic interface in Java programming language and was validated with PIPESIM commercial software. In this way it can be further studied the behavior of multiphase flow in vertical and horizontal pipe.https://doi.org/10.18273/revfue.v14n1-2016002Hold UpFlow PatternsMultiphase flow
collection DOAJ
language Spanish
format Article
sources DOAJ
author Julio César Pérez Angulo
Manuel Enrique Cabarcas Simancas
Nicolás Santos Santos
spellingShingle Julio César Pérez Angulo
Manuel Enrique Cabarcas Simancas
Nicolás Santos Santos
Modelamiento y simulación de un sistema no convencional de levantamiento multifasico
Revista Fuentes El Reventón Energético
Hold Up
Flow Patterns
Multiphase flow
author_facet Julio César Pérez Angulo
Manuel Enrique Cabarcas Simancas
Nicolás Santos Santos
author_sort Julio César Pérez Angulo
title Modelamiento y simulación de un sistema no convencional de levantamiento multifasico
title_short Modelamiento y simulación de un sistema no convencional de levantamiento multifasico
title_full Modelamiento y simulación de un sistema no convencional de levantamiento multifasico
title_fullStr Modelamiento y simulación de un sistema no convencional de levantamiento multifasico
title_full_unstemmed Modelamiento y simulación de un sistema no convencional de levantamiento multifasico
title_sort modelamiento y simulación de un sistema no convencional de levantamiento multifasico
publisher Universidad Industrial de Santander
series Revista Fuentes El Reventón Energético
issn 1657-6527
2145-8502
publishDate 2016-06-01
description The importance of the multiphase flow is caused in that when the produced fluid is displaced from the reservoir to the surface, energy is released in both the vertical and horizontal flow; this energy or pressure is possessed by the fluid while it is in the reservoir. Therefore, it is required to make a good design teams well, flowlines, throttles, separators and other connections. For optimum design, it is necessary to conduct a detailed study of the behavior of multiphase flow in each component. This paper presents the software developed which allows determine through correlations and mechanistic models, the profiles of pressure and temperature that occur along the pipes. The software was developed in a graphic interface in Java programming language and was validated with PIPESIM commercial software. In this way it can be further studied the behavior of multiphase flow in vertical and horizontal pipe.
topic Hold Up
Flow Patterns
Multiphase flow
url https://doi.org/10.18273/revfue.v14n1-2016002
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