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ISSN: 2582-8266 (Online)  || UGC Compliant Journal || Google Indexed || Impact Factor: 9.48 || Crossref DOI

Fast Publication within 2 days || Low Article Processing charges || Peer reviewed and Referred Journal

Research and review articles are invited for publication in Volume 18, Issue 2 (February 2026).... Submit articles

Engineering Resilience: Harnessing Smart Technologies for Climate-Proof Infrastructure

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  • Engineering Resilience: Harnessing Smart Technologies for Climate-Proof Infrastructure

OHAKA AMARACHI MAVISCLARA 1, *, IBRAHIM ISIAKA OSHOBUGIE 2, ATOYEBI TEMITOPE OLUFUNMI 3, SULEIMAN MUSTAPHA 4, ADEYINKA TASLIM OLABODE 5, OZURUOHA NKIRUKA ESTHER 6 and OYEBOADE ADEKUNLE YAKUB 7

1 Department of Geography and Planning, Abia State University Uturu Nigeria.
2 Department of Engineering Management, University of Houston Clear Lake U.S.A.
3 Department of Information Technology and Information Systems, Nile University of Nigeria Abuja. Nigeria.
4 Department of Building, Ahmadu Bello University Zaria, Nigeria.
5 Department of Quantity Surveying, University of Lagos Nigeria.
6 Department of Mechanical Engineering, Federal University of Technology Owerri Nigeria.
7 Department of Civil Engineering, University of Lagos Nigeria.

Review Article

World Journal of Advanced Engineering Technology and Sciences, 2025, 17(01), 356–369

Article DOI: 10.30574/wjaets.2025.17.1.1405

DOI url: https://doi.org/10.30574/wjaets.2025.17.1.1405

Received on 06 September 2025; revised on 17 October 2025; accepted on 20 October 2025

As climate change intensifies floods, heatwaves, and sea-level rise, global infrastructure faces unprecedented vulnerabilities, with damages reaching $360 billion in 2022. This review explores how smart technologies,artificial intelligence (AI), Internet of Things (IoT), digital twins, and resilient materials,transform climate-resilient infrastructure to withstand these escalating hazards. Synthesizing recent advancements from the last five years, it examines their applications in urban and rural contexts, drawing on case studies from the Netherlands’ IoT-enabled dikes, Singapore’s AI-driven urban planning, and Ghana’s cost-effective rural solutions. These innovations reduce maintenance costs by 15-25%, enhance flood response times by 40%, and align with Sustainable Development Goals (SDGs) for equitable, sustainable development. However, economic barriers, governance gaps, and equity challenges hinder global adoption, particularly in developing nations where connectivity and funding limit scalability. The review proposes future directions, including open-source platforms, public-private partnerships, and interdisciplinary research to address multi-hazard risks. By integrating data-driven engineering with green infrastructure, this study offers a roadmap for policymakers and engineers to build climate-proof infrastructure that ensures safety, sustainability, and resilience. This comprehensive synthesis underscores the urgent need for collaborative, inclusive strategies to safeguard global infrastructure against climate change, providing actionable insights for a resilient future.

Climate resilience; Smart technologies; Infrastructure; Artificial intelligence; IoT; Digital twins; resilient materials; Sustainability; Urban planning; Rural development; Multi-hazard risks, SDGs

https://wjaets.com/sites/default/files/fulltext_pdf/WJAETS-2025-1405.pdf

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OHAKA AMARACHI MAVISCLARA, IBRAHIM ISIAKA OSHOBUGIE, ATOYEBI TEMITOPE OLUFUNMI, SULEIMAN MUSTAPHA, ADEYINKA TASLIM OLABODE, OZURUOHA NKIRUKA ESTHER and OYEBOADE ADEKUNLE YAKUB. Engineering Resilience: Harnessing Smart Technologies for Climate-Proof Infrastructure. World Journal of Advanced Engineering Technology and Sciences, 2025, 17(01), 356-369. Article DOI: https://doi.org/10.30574/wjaets.2025.17.1.1405.

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