Repositorio Institucional
Repositorio Institucional
CONICET Digital
  • Inicio
  • EXPLORAR
    • AUTORES
    • DISCIPLINAS
    • COMUNIDADES
  • Estadísticas
  • Novedades
    • Noticias
    • Boletines
  • Ayuda
    • General
    • Datos de investigación
  • Acerca de
    • CONICET Digital
    • Equipo
    • Red Federal
  • Contacto
JavaScript is disabled for your browser. Some features of this site may not work without it.
  • INFORMACIÓN GENERAL
  • RESUMEN
  • ESTADISTICAS
 
Artículo

A mathematical programming model for the optimal utilization of deep saline aquifers for CO2 storage

Trucco, Diego José; Presser, Demian JavierIcon ; Cafaro, Diego CarlosIcon ; Grossmann, Ignacio E.; Usgaonkar, Saurabh Shenvi; Zhang, Qi; Misra, Pratik; Binagia, Heather; Rowe, Wayne; Mehta, Sanjay
Fecha de publicación: 12/2025
Editorial: Pergamon-Elsevier Science Ltd
Revista: Computers and Chemical Engineering
ISSN: 0098-1354
Idioma: Inglés
Tipo de recurso: Artículo publicado
Clasificación temática:
Ingeniería de Procesos Químicos

Resumen

This work presents a novel nonlinear programming (NLP) formulation aimed at maximizing the overall amount of CO2 stored into deep saline aquifers in the long term. The goal is to optimally determine CO2 injection rates into vertical wells while properly managing bottom-hole pressures over time. The reservoir may comprise several layers with heterogeneous physical properties. The injection plan should meet the subsurface engineering policies for safe operations along with existing technical constraints. The major challenge is to track the CO2 migration across the reservoir to ensure containment during the injection periods and also in the long term. The NLP formulation is based on a discrete space and time representation of the reservoir, comprising pressure propagation and mass balance equations between every pair of adjacent blocks in the grid. Results for several illustrative case studies in two dimensions show the potential of the model to find optimal solutions in few seconds. Injection plans suggested by the optimization model are efficient and have been validated by accurate simulation runs. Based on these findings, the model has the potential to be extended to three dimensions and adapted to real-world cases.
Palabras clave: Optimization , CCUS , Saline Aquifers , Injection Strategy , Injectivity , Containment
Ver el registro completo
 
Archivos asociados
Tamaño: 2.676Mb
Formato: PDF
.
Solicitar
Licencia
info:eu-repo/semantics/restrictedAccess Excepto donde se diga explícitamente, este item se publica bajo la siguiente descripción: Creative Commons Attribution-NonCommercial-ShareAlike 2.5 Unported (CC BY-NC-SA 2.5)
Identificadores
URI: http://hdl.handle.net/11336/280439
URL: https://linkinghub.elsevier.com/retrieve/pii/S009813542500345X
DOI: http://dx.doi.org/10.1016/j.compchemeng.2025.109343
Colecciones
Articulos(INTEC)
Articulos de INST.DE DES.TECNOL.PARA LA IND.QUIMICA (I)
Citación
Trucco, Diego José; Presser, Demian Javier; Cafaro, Diego Carlos; Grossmann, Ignacio E.; Usgaonkar, Saurabh Shenvi; et al.; A mathematical programming model for the optimal utilization of deep saline aquifers for CO2 storage; Pergamon-Elsevier Science Ltd; Computers and Chemical Engineering; 203; 12-2025; 1-15
Compartir
Altmétricas
 

Enviar por e-mail
Separar cada destinatario (hasta 5) con punto y coma.
  • Facebook
  • X Conicet Digital
  • Instagram
  • YouTube
  • Sound Cloud
  • LinkedIn

Los contenidos del CONICET están licenciados bajo Creative Commons Reconocimiento 2.5 Argentina License

https://www.conicet.gov.ar/ - CONICET

Inicio

Explorar

  • Autores
  • Disciplinas
  • Comunidades

Estadísticas

Novedades

  • Noticias
  • Boletines

Ayuda

Acerca de

  • CONICET Digital
  • Equipo
  • Red Federal

Contacto

Godoy Cruz 2290 (C1425FQB) CABA – República Argentina – Tel: +5411 4899-5400 repositorio@conicet.gov.ar
TÉRMINOS Y CONDICIONES