The evolution of resilience from its ecological roots to critical infrastructure applications: Concepts, definitions and future directions

D. Nikolopoulos, and C. Makropoulos, The evolution of resilience from its ecological roots to critical infrastructure applications: Concepts, definitions and future directions, International Journal of Critical Infrastructure Protection, 100848, doi:10.1016/j.ijcip.2026.100848, 2026.

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[Αγγλικά]

Εργασίες μας στις οποίες αναφέρεται αυτή η εργασία:

1. C. Makropoulos, D. Nikolopoulos, L. Palmen, S. Kools, A. Segrave, D. Vries, S. Koop, H. J. van Alphen, E. Vonk, P. van Thienen, E. Rozos, and G. Medema, A resilience assessment method for urban water systems, Urban Water Journal, 15 (4), 316–328, doi:10.1080/1573062X.2018.1457166, 2018.
2. D. Nikolopoulos, H. J. van Alphen, D. Vries, L. Palmen, S. Koop, P. van Thienen, G. Medema, and C. Makropoulos, Tackling the “new normal”: A resilience assessment method applied to real-world urban water systems, Water, 11 (2), 330, doi:10.3390/w11020330, 2019.
3. D. Bouziotas, D. van Duuren, H. J. van Alphen, J. Frijns, D. Nikolopoulos, and C. Makropoulos, Towards circular water neighborhoods: Simulation-based decision support for integrated decentralized urban water systems, Water, 11 (6), 1227, doi:10.3390/w11061227, 2019.
4. A. Efstratiadis, and G.-K. Sakki, Revisiting the management of water–energy systems under the umbrella of resilience optimization, Environmental Sciences Proceedings, 21 (1), 72, doi:10.3390/environsciproc2022021072, 2022.
5. D. Nikolopoulos, P. Kossieris, I. Tsoukalas, and C. Makropoulos, Stress-testing framework for urban water systems: A source to tap approach for stochastic resilience assessment, Water, 14 (2), 154, doi:10.3390/w14020154, 2022.
6. G. Moraitis, G.-K. Sakki, G. Karavokiros, D. Nikolopoulos, P. Kossieris, I. Tsoukalas, and C. Makropoulos, Exploring the cyber-physical threat landscape of water systems: A socio-technical modelling approach, Water, 15 (9), 1687, doi:10.3390/w15091687, 2023.