Showing posts with label Production Engineering. Show all posts
Showing posts with label Production Engineering. Show all posts

Thursday, September 30, 2010

Gas lift design and technology


Most wells completed in oil producing sands will flow naturally for some period of time after they begin producing. Reservoir pressure and formation gas provide enough energy to bring fluid to the surface in a flowing well. As the well produces this energy is consumed, and at some point there is no longer enough energy available to bring the fluid to the surface and the well will cease to flow. When the reservoir energy is too low for the well to flow, or the production rate desired is greater than the reservoir energy can deliver, it becomes necessary to put the well on some form of artificial lift to provide the energy to bring the fluid to the surface. The types of artificial lift available are illustrated in Figure 1-1. When gas lift is used, high-pressure gas provides the energy to enable the well to produce.

DETALLES
Name: Gas lift design and technology
Author: Schlumberger
Capacity disk: 3 MB
Publisher:
Schlumberger
Languaje: English
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Api Gas Lift Manual


Artificial lift represents an increasingly important part of the oil business. In fact, at the time of this writing, over 90% of the oil wells in the United States used some form of artificial lift. The four basic typeso f artificial lift used in the oil industry are: rod pumping, electric submersible pumping, hydraulic pumping, and gas lift. As the name implies,l i gfta s is the only oneo f the artificial lift systems that does nuost e some formo f mechanical pump to physically force the fluid from one place to another. Becaouf steh is phenomenon; gas lift has certain advantages over the other systems in some instances and occupies a rather unique and important place as a lift mechanism.

DETALLES
Name: Api Gas Lift Manual
Author: AMERICAN PETROLEUM INSTITUTE
Capacity disk: 11 MB
Publisher:
AMERICAN PETROLEUM INSTITUTE
Languaje: English
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Wednesday, September 29, 2010

The technology of artificial lift methods- volume 2a


“In October, 1859, Colonel Edwin Drake rigged up a pump to produce an oil and water mixture a distance of ten feet to the surface. It was the world’s first commercial oil well and the first use of artificial lift to commercially produce oil.” Today, 140 years later, pumps are employed in more than 80% of all artificial-lift wells.

When oil or gas is being produced the reservoir pressure reduces. At a certain point in time it can happen that the pressure in the reservoir becomes too low for production and artificial lift can be required. Artificial-lift methods fall into two groups, those that use pumps and those that use gas.


Features and add-on options

By choosing from various add-on options, such as coalbed methane, gas field operations, reservoir coupling, EOR, multisegmented wells, and surface networks, ECLIPSE simulators can be tailored to your needs and greatly enhance the scope of your simulation studies.

DETALLES
Name: The technology of artificial lift methods- volume 2a
Author: Brown, K., Day, J., Byrd, J., and Mach, J
Capacity disk: 62 MB
Publisher:
Petroleum Publishing Co.
Languaje: English
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ARTIFICIAL LIFT MANUAL PART 2A - Gas Lift Design Guide


This document is primarily intended as an introduction to gas lift for Production Technology, Production Operations and Process Engineering staff involved in the design and operation of gas lifted production systems. The primary focus of the document is gas lift well behaviour and string design, although some attention has also been paid to gas lift system design and operation. It is also the intention that the guide will serve as the hasis for Croup training material..

Features and add-on options

By choosing from various add-on options, such as coalbed methane, gas field operations, reservoir coupling, EOR, multisegmented wells, and surface networks, ECLIPSE simulators can be tailored to your needs and greatly enhance the scope of your simulation studies.

DETALLES
Name: ARTIFICIAL LIFT MANUAL PART 2A - Gas Lift Design Guide
Author: Shell
Capacity disk: 24 MB
Publisher:
Shell
Languaje: English
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Saturday, May 8, 2010

Artificial Lift Manual Part 2A- Gas Lift Design Guide


Gas lifting can be used throughout the whole lifespan of an oil well: from the time it dies until its abandonment. The Gas Lift Manual is a thorough, handy reference that is essential to the practicing engineer needing to successfully perform this type of artificial lift project. In his manual, Takacs imparts more than 30 years experience and research in the artificial lift methods arena. He starts the manual with an introduction to gas lift, and then moves on to the various parts of the gas lift model, including analysis and troubleshooting, as well as, common gas lift malfunctions. This book will be particularly useful to those needing to research this technology, as the author has supplied extensive resource references to other literature sources.


DETALLES
Name: Artificial Lift Manual Part 2A- Gas Lift Design Guide
Author: N/A
Pages: 155
Publisher: Shell
Languaje: English
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Tuesday, April 27, 2010

Production Operations: Well Completions, Workover, and Stimulation


This two-volume set of books encompasses well production operations from the time the first potential oil or gas horizon is penetrated until the well is abandoned. Primary focus is on well completions, workovers, and stimulation, which are key and critical to producing operations.

These books emphasize the importance of total reservoir description including geology and fluid flow characteristics, the role of effective communication between the reservoir and the wellbore, the pitfalls of flow restriction around the wellbore, the importance of knowing where fluids are and where they are moving, and the problems of excluding undesired fluids.


All these factors become more important in the areas of waterflooding and enhanced methods to maximize recovery of increasingly valuable hydrocarbon fluids. Practical approaches to defining and solving these problems constitutes the substance of these volumes.


DETALLES
Nombre: Production Operations: Well Completions, Workover, and Stimulation
Autor: Thomas O. Allen And Alan P. Roberts
Paginas: 720 Pages
Publicador: Oil & Gas Consultants Intl
Idioma: Ingles
Contraseña: www.casapetrolera.blogspot.com

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Petroleum Production Engineering By B. Guo, W.C. Lyons


Petroleum Production Engineering, A Computer-Assisted Approach provides handy guidelines to designing, analyzing and optimizing petroleum production systems. Broken into four parts, this book covers the full scope of petroleum production engineering, featuring stepwise calculations and computer-based spreadsheet programs. Part one contains discussions of petroleum production engineering fundamentals, empirical models for production decline analysis, and the performance of oil and natural gas wells. Part two presents principles of designing and selecting the main components of petroleum production systems including: well tubing, separation and dehydration systems, liquid pumps, gas compressors, and pipelines for oil and gas transportation. Part three introduces artificial lift methods, including sucker rod pumping systems, gas lift technology, electrical submersible pumps and other artificial lift systems. Part four is comprised of production enhancement techniques including, identifying well problems, designing acidizing jobs, guidelines to hydraulic fracturing and job evaluation techniques, and production optimization techniques.

DETALLES
Nombre: Petroleum Production Engineering By B. Guo, W.C. Lyons
Autor: Boyun Guo, William C. Lyons
Paginas: 312 Pages
Publicador: Gulf Professional Publishing
Idioma: Ingles
Contraseña: www.casapetrolera.blogspot.com

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Production optimization using nodal analysis Beggs


Any production well is drilled and completed to move the oil or gas from its original location in the reservoir to the stock tanck or sales line. Movement or transportof these fluids requires energy to overcome friction losses in the system and to lift tha prodcuts to the surface. The fluids must travel through the reservoir and the piping system and ultimately flow into a separator for gas-liquid separation. The production system can be relatively simple or can include many components in wich energy or pressure occur.

  • Production System Analysis
  • Reservoir Performance
  • Flow in Pipes and Restrictions

DETALLES
Nombre: Production optimization using nodal analysis Beggs
Autor: H. dales. Beggs
Paginas: 1076 Pages
Publicador: Gulf Professional Publishing (Oct 1996)
Idioma: Ingles
Contraseña: www.casapetrolera.blogspot.com

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Well Performance : By Michael Golan, Curtis H. Whitson


Explores the engineering operations and tasks involved with analyzing the production behaviour of oil and gas wells. The book discusses the effect of well size, reservoir data and operating conditions on the production site. --This text refers to an out of print or unavailable edition of this title.

This book explores engineering operations and tasks involved with analyzing the production behavior of oil and gas wells. Offering a wealth of practical guidelines, readers will understand:

The affect of well size, reservoir data, and operating conditions on the production rate

Hydraulic design of wells and how to analyze their performance using numerical methods

Methods for establishing the productivity of wells using test data in ways to predict productivity changes that occur due to stimulation treatment or reservoir depletion

The utilization of well performance design In assessing the mechanical status of the well and the development planning of large oil fields. And the application of artificial lift methods

The book offers readers numerous examples demonstrating how each procedure. can be applied to their practical analysis chores".


DETALLES
Nombre: Well Performance : By Michael Golan, Curtis H. Whitson
Autor:
Michael Golan, Curtis H. Whitson
Paginas: 628 Pages
Publicador: Springer; 1 edition (August 31, 1987)
Idioma: Ingles
Contraseña: www.casapetrolera.blogspot.com

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Curso de análisis nodal

Los fluidos producidos en un yacimiento hidrocarburífero, deben recorrer un largo trayecto a través de distintos medios, desde el reservorio hasta el punto de entrega de los mismos. Cada uno de estos componentes, forman parte de lo que denominamos “Sistema de Producción” donde podemos mencionar: el reservorio, la completación, la línea de producción hacia superficie (pozo), los sistemas de levantamiento artificial y las instalaciones de superficie con sus respectivas líneas de flujo y restricciones.


Deben considerarse aspectos tales como la caída de presión en todo el sistema (diferencia de presión entre la presión en superficie y la presión en el reservorio), que es el resultado de la suma de las caídas de presión en cada uno de los componentes. Esto tiene como efecto que el cambio de presión en alguno de ellos, afecte la presión en los otros componentes debido a su interacción (visión sistémica). Considerando estos conceptos, la producción de un sistema puede restringirse a menudo por el funcionamiento deficiente de un solo componente.

Durante este curso se revisarán todos los conceptos teóricos y prácticos que hacen a la definición y análisis de cada uno de los principales componentes que conforman un sistema de producción, integrándolos a partir del uso del Análisis Nodal


DETALLES
Nombre: Curso de análisis nodal
Autor: Ricardo Maggiolo
Paginas: 121 Pages
Publicador: Asesoria en ingenieria de petroleos Ltda (2005)
Idioma: Espanol
Contraseña: www.casapetrolera.blogspot.com

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