Francisca Jalil

Francisca Jalil

Ph.D en Modelamiento de Sistemas de Energía
Profesor Hora
FACULTAD DE INGENIERÍA Y CIENCIAS
CHILE
Stgo

Francisca Jalil

Francisca Jalil es Ph.D en Modelamiento de Sistemas de Energía por el Imperial College London, Reino Unido (2014-2018), y Magíster en Futuro de Energía Sostenible por la misma casa de estudios (2012-2013). También tiene un Magíster en Ciencias de la Ingeniería de la Universidad de Chile, de donde egresó de Ingeniería Civil Mecánica. Sus áreas de investigación se centran en el modelamiento y optimización de sistemas nacionales y urbanos de energía con alta resolución espacial; transiciones energéticas; interrelación entre suministro de energía, infraestructura de redes, tecnologías, y políticas energéticas; modelamiento y optimización de cadenas de suministro de combustibles; sostenibilidad, seguridad energética y descarbonización de los sistemas energéticos. Se incorporó al área de Energía de la Facultad de Ingeniería y Ciencias UAI en septiembre de 2020. También es profesora visitante del Imperial College London (Reino Unido); investigadora asociada del Solar Energy Research Center (SERC Chile); e investigadora invitada del Instituto de Sistemas Complejos de Ingeniería (ISCI, Chile).

Environmental life cycle assessment of novel PV systems for desert conditions</>

Cruz, J., Schmidt Rivera, X., Jalil-Vega, F., O'Ryan, R., Valencia, F., Rabanal-Arabach, J., Ayllón Opazo, E., Morris Carmona, P. & Larrain Yañez, P., jun. 2026, In: Sustainable Production and Consumption, 65, p. 115-129.

Modelling UK air quality implications of decarbonisation using hydrogen</>

Brighty, A., Jalil-Vega, F., Kameid, N., Kim, S., Oxley, T., Mehlig, D., Holland, M., Dodds, P. & ApSimon, H., jun. 2026, In: Energy Policy, 213.

Incorporating intra-hour renewable variability into the design of stand-alone electrolytic hydrogen production systems</>

Vargas-Ferrer, P., Sauma, E. & Jalil-Vega, F., feb. 2026, In: Applied Energy, 404.

Integrated long-term energy planning with vehicle-to-grid for decarbonization of the Chilean energy system</>

Ferrada, F., Babonneau, F., Homem-de-Mello, T. & Jalil-Vega, F., sep. 2025, In: Journal of Cleaner Production, 523.

Complying with low-emission hydrogen standards in long-term integrated supply chains</>

Vargas-Ferrer, P., Jalil-Vega, F., Pozo, D. & Sauma, E., mar. 2025, In: Energy Policy, 198.

A multi-energy multi-microgrid system planning model for decarbonisation and decontamination of isolated systems</>

Carvallo, C., Jalil-Vega, F. & Moreno, R., ago. 2023, In: Applied Energy, 343.

Integration of high levels of electrolytic hydrogen production</>

Vargas-Ferrer, P., Álvarez-Miranda, E., Tenreiro, C. & Jalil-Vega, F., jul. 2023, In: Journal of Cleaner Production, 409.

The role of hydrogen for deep decarbonization of energy systems</>

Ferrada, F., Babonneau, F., Homem-de-Mello, T. & Jalil-Vega, F., jun. 2023, In: Energy Policy, 177.

Assessing flexibility for integrating renewable energies into carbon neutral multi-regional systems</>

Vargas-Ferrer, P., Álvarez-Miranda, E., Tenreiro, C. & Jalil-Vega, F., oct. 2022, In: Energy for Sustainable Development, 70, p. 442-455.

Energy planning policies for residential and commercial sectors under ambitious global and local emissions objectives</>

Ferrada, F., Babonneau, F., Homem-de-Mello, T. & Jalil-Vega, F., may. 2022, In: Journal of Cleaner Production, 350.

Liquefied biomethane from sugarcane vinasse and municipal solid waste</>

Nunes Ferraz Júnior, A., Machado, P., Jalil-Vega, F., Coelho, S. & Woods, J., feb. 2022, In: Journal of Cleaner Production, 335.

The Trade-Off between Spatial Resolution and Uncertainty in Energy System Modelling</>

Yliruka, M., Moret, S., Jalil-Vega, F., Hawkes, A. & Shah, N., ene. 2022.

The role of aeroponic container farms in sustainable food systems – The environmental credentials</>

Schmidt Rivera, X., Rodgers, B., Odanye, T., Jalil-Vega, F. & Farmer, J., 2022, In: Science of the Total Environment, 860.

Organic waste to energy</>

Ludlow, J., Jalil-Vega, F., Schmidt Rivera, X., Garrido, R., Hawkes, A., Staffell, I. & Balcombe, P., oct. 2021, In: Sustainable Production and Consumption, 28, p. 1522-1537.

Spatially-resolved urban energy systems model to study decarbonisation pathways for energy services in cities</>

Jalil-Vega, F., García Kerdan, I. & Hawkes, A., mar. 2020, In: Applied Energy, 262.

Modelling cost-effective pathways for natural gas infrastructure</>

García Kerdan, I., Jalil-Vega, F., Toole, J., Gulati, S., Giarola, S. & Hawkes, A., dic. 2019, In: Applied Energy, 255.

The effect of spatial resolution on outcomes from energy systems modelling of heat decarbonisation</>

Jalil-Vega, F. & Hawkes, A., jul. 2018, In: Energy, 155, p. 339-350.

Spatially Resolved Optimization for Studying the Role of Hydrogen for Heat Decarbonization Pathways</>

Jalil-Vega, F. & Hawkes, A., may. 2018, In: ACS Sustainable Chemistry and Engineering, 6, 5, p. 5835-5842.

Spatially resolved model for studying decarbonisation pathways for heat supply and infrastructure trade-offs</>

Jalil-Vega, F. & Hawkes, A., ene. 2018, In: Applied Energy, 210, p. 1051-1072.