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Network-Constrained Renewable Integration in Tunisia: A Deterministic Assessment of Storage Flexibility and Transmission Deliverability

H. Berriri, O. Fekih, M. Nouira, L. Olmos, A. Ramos, M.B. Chiekh, M.S. Guellouz, I. Graabak

Energies Vol. 19, nº. 17, pp. 4113

Resumen:

High renewable-energy shares do not, by themselves, guarantee that renewable electricity can be absorbed, shifted, and delivered through a constrained network. This study uses openTEPES for a deterministic 8736 h assessment of Tunisia’s 2035 power system, represented by 47 domestic nodes. It compares matched cases without and with endogenous battery energy storage system (BESS) investment and evaluates eight sensitivity families. In the no-BESS case, 265.996 GWh of modelled energy not served (ENS) and 1120.263 GWh of renewable curtailment occur in disjoint hours, indicating a temporal mismatch between scarcity and surplus. Under the central assumptions, the model selects 3.590 GW/14.361 GWh of BESS, reducing modelled ENS to zero under the represented deterministic conditions and renewable curtailment to 42.362 GWh. The sensitivity analysis shows that the model-selected BESS capacity and location, together with transmission exposure, depend strongly on demand, imposed duration, renewable-profile stress, interconnection availability, and candidate siting. Within the modelled scenario space, storage, internal transmission, and cross-border exchange therefore provide complementary forms of flexibility. The central BESS quantity is interpreted as a conditional planning benchmark, not as evidence of probabilistic adequacy or a national procurement target.


Resumen divulgativo:

El estudio muestra que una alta penetración de energías renovables no garantiza, por sí sola, la integración eficiente de la electricidad en la red. Los sistemas de almacenamiento con baterías, junto con el refuerzo de la transmisión y las interconexiones, aportan flexibilidad complementaria para reducir los desajustes entre la generación y la demanda.


Palabras Clave: battery energy storage system; renewable curtailment; energy not served; transmission deliverability; nodal power-system planning; openTEPES


Índice de impacto JCR-JIF y cuartil WoS: 3,900 - Q3 (2025)

Referencia DOI: DOI icon https://doi.org/10.3390/en19174113

Publicado en papel: Septiembre 2026.

Publicado on-line: Agosto 2026.



Cita:
H. Berriri, O. Fekih, M. Nouira, L. Olmos, A. Ramos, M.B. Chiekh, M.S. Guellouz, I. Graabak, "Network-Constrained Renewable Integration in Tunisia: A Deterministic Assessment of Storage Flexibility and Transmission Deliverability", Energies, Vol. 19, nº. 17, pp. 4113, Septiembre 2026. [Online: Agosto 2026] doi: 10.3390/en19174113

    Líneas de investigación:
  • Análisis de políticas energéticas sostenibles
  • Escenarios energéticos de largo plazo
  • Co-optimización de la planificación de generación, almacenamiento y transmisión
  • Evaluación técnico-económica de tecnologías para la descarbonización
    Grupos de investigación:
  • Instituto de Investigación Tecnológica (IIT)
    ODS:
  • Objetivo 7: Energía asequible y no contaminante
  • Objetivo 9: Industria, innovación e infraestructuras
  • Objetivo 13: Acción por el clima