Alexandre Mendonca Teixeira; Lara de Oliveira Arinelli; Jose Luiz De Medeiros; Ofelia De Queiroz Fernandes Araujo Springer International Publishing AG (2017) Pehmeäkantinen kirja
Andreia Sofia Teixeira; Diogo Pacheco; Marcos Oliveira; Hugo Barbosa; Bruno Gonçalves; Ronaldo Menezes Springer Nature Switzerland AG (2021) Kovakantinen kirja
Andreia Sofia Teixeira; Diogo Pacheco; Marcos Oliveira; Hugo Barbosa; Bruno Gonçalves; Ronaldo Menezes Springer Nature Switzerland AG (2022) Pehmeäkantinen kirja
Andreia Sofia Teixeira; Federico Botta; José Fernando Mendes; Ronaldo Menezes; Giuseppe Mangioni Springer International Publishing AG (2023) Kovakantinen kirja
Andre Teixeira; Muhammad A. Jawad; Manoel dos Passos Galvão Neto; Antonio Torres; Laurent Biertho; João Caetano Marchesini Springer International Publishing AG (2023) Kovakantinen kirja
Mendonca Teixeira Alexandre Mendonca Teixeira; de Oliveira Arinelli Lara de Oliveira Arinelli; de Medei Jose Luiz de Medeiros Springer Nature B.V. (2017) Pehmeäkantinen kirja
Andreia Sofia Teixeira; Federico Botta; José Fernando Mendes; Ronaldo Menezes; Giuseppe Mangioni Springer International Publishing AG (2024) Pehmeäkantinen kirja
Andre Teixeira; Muhammad A. Jawad; Manoel dos Passos Galvão Neto; Antonio Torres; Laurent Biertho; João Caetano Marchesini Springer International Publishing AG (2024) Pehmeäkantinen kirja
Adiel Teixeira de Almeida; Cristiano Alexandre Virgínio Cavalcante; Marcelo Hazin Alencar; Rodrigo José Pires Ferreira; de A Springer International Publishing AG (2015) Kovakantinen kirja
This book addresses several issues related to hydrate inhibition and monoethylene glycol (MEG) recovery units (MRUs) in offshore natural gas fields, from fundamentals to engineering aspects and from energy consumption assessment to advanced topics such as exergy analysis. The assessment of energy degradation in MRUs is critical in offshore rigs, and the topic of exergy theory has by no means been completely explored; it is still being developed. The book presents a comprehensive, yet concise, formulation for exergy flow and examines different approaches for the reference state of MEG and definition of the reference environment so as to obtain an effective exergy analysis with consistent results.
It also provides new and useful information that has a great potential in the field of exergy analysis application by assessing energy degradation for three well-known MRU technologies on offshore rigs: the Traditional Atmospheric Distillation Process; the Full-Stream Process; and the Slip-Stream Process. The book then elucidates how the main design parameters impact the efficiency of MEG recovery units and offers insights into thermodynamic efficiency based on case studies of general distillation-based processes with sharp or not too sharp cut, providing ranges for expected values of efficiencies and enhancing a global comprehension of this subject. Since MEG recovery is an energy consuming process that invariably has to be conducted in a limited space and with limited power supply, the book is a valuable resource for those involved in design, engineering, economic evaluation and environmental evaluation of topside processing on offshore platforms for natural gas production.