Transport by Pipelines and Its Optimization: An Optimization Approach to Design: Petroleum Engineering
Autor Pablo Druetta, Remo Frabotta, Gustavo Luis Cavalloen Limba Engleză Hardback – 14 oct 2024
The book begins with basic concepts of pipelines, including a description of the materials used, heat transfer between the system and medium, and the main components of pumping and compression stations, which are vital for the subsequent chapters. It then presents a simple yet detailed overview of these factors and introduces a mathematical methodology that combines them to deliver an optimized pipe design, minimizing costs and reducing energy consumption. The book also covers the transient verification of this design using well-known balance equations and material property relationships for both incompressible and compressible fluids, to validate the initial design. Finally, the book explores the analysis of multiphase pipelines, where the goal is to transport a particular material (e.g., solid) using a different medium (e.g., air or water).
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Specificații
ISBN-13: 9783031665653
ISBN-10: 3031665651
Pagini: 300
Ilustrații: Approx. 300 p. 100 illus., 60 illus. in color.
Ediția:2025
Editura: Springer Nature Switzerland
Colecția Springer
Seria Petroleum Engineering
Locul publicării:Cham, Switzerland
ISBN-10: 3031665651
Pagini: 300
Ilustrații: Approx. 300 p. 100 illus., 60 illus. in color.
Ediția:2025
Editura: Springer Nature Switzerland
Colecția Springer
Seria Petroleum Engineering
Locul publicării:Cham, Switzerland
Cuprins
Introduction.- Fluids and Fluidifyable Ssubstances.- Definitions Regarding the Fluids to be Transported and the Transportation System.- Transportation Systems.- Necessary Disciplines for the Theoretical Approach of the Treaty.- Fluid Mechanics.- Strength of Materials in Cylindrical Enclosures.- Thermodynamics.- Fundamental Objective of the Text.- Optimization of Piping Systems.- Generalized Lagrange Method for Several Variables.-Transportation of Liquid Substances Through Pipes.- Introduction.- Fluids and Fluidifyable Ssubstances.- Definitions Regarding the Fluids to be Transported and the Transportation System.- Transportation Systems.- Necessary Disciplines for the Theoretical Approach of the Treaty.- Fluid Mechanics.- Strength of Materials in Cylindrical Enclosures.- Thermodynamics.- Fundamental Objective of the Text.- Optimization of Piping Systems.- Generalized Lagrange Method for Several Variables.-Transportation of Liquid Substances Through Pipes.
Notă biografică
Pablo Daniel Druetta is a professional with more than 15 years of experience in the fields of oil & gas, petrochemistry and research/higher education.
Textul de pe ultima copertă
This textbook introduces pipeline design, one of the most efficient techniques for mass and energy transport available today. The global economy heavily relies on pipelines. However, designing a pipeline is more complex than it might seem; it involves many technical and economic factors that must work together to create an optimized system.
The book begins with basic concepts of pipelines, including a description of the materials used, heat transfer between the system and medium, and the main components of pumping and compression stations, which are vital for the subsequent chapters. It then presents a simple yet detailed overview of these factors and introduces a mathematical methodology that combines them to deliver an optimized pipe design, minimizing costs and reducing energy consumption. The book also covers the transient verification of this design using well-known balance equations and material property relationships for both incompressible and compressible fluids, to validate the initial design. Finally, the book explores the analysis of multiphase pipelines, where the goal is to transport a particular material (e.g., solid) using a different medium (e.g., air or water).
The book begins with basic concepts of pipelines, including a description of the materials used, heat transfer between the system and medium, and the main components of pumping and compression stations, which are vital for the subsequent chapters. It then presents a simple yet detailed overview of these factors and introduces a mathematical methodology that combines them to deliver an optimized pipe design, minimizing costs and reducing energy consumption. The book also covers the transient verification of this design using well-known balance equations and material property relationships for both incompressible and compressible fluids, to validate the initial design. Finally, the book explores the analysis of multiphase pipelines, where the goal is to transport a particular material (e.g., solid) using a different medium (e.g., air or water).
Caracteristici
Provides useful optimization techniques Introduces pipeline design in an understandable way With problems and solutions for students