Stergios-Aristoteles Mitoulis
Biographic Data
| ID | 6587685 |
|---|---|
| NAME | Stergios-Aristoteles Mitoulis |
| GIVEN NAMES | Stergios-Aristoteles |
| FAMILY NAME | Mitoulis |
| SIGNATURE | MITOULIS S |
| AFFILIATIONS | The Bartlett School of Sustainable Construction University College London London UK |
| ORCID | 0000-0001-7201-2703 |
| VERIFIED | Yes |
| TOTAL WORKS | 4 |
| TOTAL CITATIONS | 0 |
| AUTHOR COUNT | 4 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2021 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 0 |
Threat-agnostic resilience
Critical infrastructure is not indestructible. Interdependencies between infrastructure systems and the environment compound consequences at vulnerable locations but can be harnessed to maximize operational efficiency, recovery capability, and long-term sustainability. Threats, both emergent and systemic, have propagated beyond historical norms, exposing the limitations of hazard-specific resilience approaches. These approaches, by their nature, …
Enhancing Sustainability and Resilience Against Natural Hazard of the Built Environment—State of the Art and Development of a Novel Framework
As climate change poses increasing challenges, it is vital to create climate‐resilient cities and promote sustainable practices for responsible resource management. This paper aims to develop integrative methodologies combining resilience and sustainability assessments for built systems, both new and existing. It classifies published research by the frameworks used for these assessments and identifies gaps in understanding specific aspects of sus…
Conflict-resilience framework for critical infrastructure peacebuilding
Apart from security issues, war-torn societies and countries face immense challenges in rebuilding damaged critical infrastructure. Existing post-conflict recovery frameworks mainly focus on social impacts and mitigation. Also, existing frameworks for resilience to natural hazards are mainly based on design and intervention, yet, they are not fit for post-conflict infrastructure recovery for a number of reasons explained in this paper. Post-confl…
Innovations in earthquake risk reduction for resilience
The Sendai Framework for Disaster Risk Reduction 2015–2030 (SFDRR) highlights the importance of scientific research, supporting the ‘availability and application of science and technology to decision making’ in disaster risk reduction (DRR). Science and technology can play a crucial role in the world's ability to reduce casualties, physical damage, and interruption to critical infrastructure due to natural hazards and their complex interactions. …
No prominent works on this page.
Innovations in earthquake risk reduction for resilience
The Sendai Framework for Disaster Risk Reduction 2015–2030 (SFDRR) highlights the importance of scientific research, supporting the ‘availability and application of science and technology to decision making’ in disaster risk reduction (DRR). Science and technology can play a crucial role in the world's ability to reduce casualties, physical damage, and interruption to critical infrastructure due to natural hazards and their complex interactions. …
Conflict-resilience framework for critical infrastructure peacebuilding
Apart from security issues, war-torn societies and countries face immense challenges in rebuilding damaged critical infrastructure. Existing post-conflict recovery frameworks mainly focus on social impacts and mitigation. Also, existing frameworks for resilience to natural hazards are mainly based on design and intervention, yet, they are not fit for post-conflict infrastructure recovery for a number of reasons explained in this paper. Post-confl…
Threat-agnostic resilience
Critical infrastructure is not indestructible. Interdependencies between infrastructure systems and the environment compound consequences at vulnerable locations but can be harnessed to maximize operational efficiency, recovery capability, and long-term sustainability. Threats, both emergent and systemic, have propagated beyond historical norms, exposing the limitations of hazard-specific resilience approaches. These approaches, by their nature, …
Enhancing Sustainability and Resilience Against Natural Hazard of the Built Environment—State of the Art and Development of a Novel Framework
As climate change poses increasing challenges, it is vital to create climate‐resilient cities and promote sustainable practices for responsible resource management. This paper aims to develop integrative methodologies combining resilience and sustainability assessments for built systems, both new and existing. It classifies published research by the frameworks used for these assessments and identifies gaps in understanding specific aspects of sus…
Business (4 works) · Computer Science (3 works) · Environmental planning (3 works) · Environmental Science (3 works) · Infrastructure Resilience and Vulnerability Analysis (3 works) · Political science (3 works) · Computer security (2 works) · Engineering (2 works) · Forensic engineering (2 works) · Materials Science (2 works)