Buch, Englisch, 376 Seiten, Format (B × H): 156 mm x 234 mm
Smart Strategies for Resilient Infrastructure
Buch, Englisch, 376 Seiten, Format (B × H): 156 mm x 234 mm
ISBN: 978-1-041-12317-0
Verlag: Taylor & Francis Ltd
This book explores the convergence of cutting-edge engineering techniques, innovative design approaches, and fundamental ecological principles to address the challenges associated with sustainable infrastructure, including green construction, resilient urban planning, integration of smart systems, low-carbon emissions, and waste reduction. Each chapter focuses on a specific aspect of sustainable infrastructure, such as eco-friendly building materials, energy-efficient systems, and waste management practices, supported by case studies, illustrated processes, and detailed technical explanations.
Key features
- Alignment with the central theme of eco-smart infrastructure, emphasizing sustainability, innovative technologies, and global best practices
- Discussion of critical aspects of climate-resilient infrastructure
- Coverage of essential topics such as eco-friendly materials, waste management, and life-cycle assessment to address key challenges in sustainable infrastructure
- Exploration of smart waste management systems
- Review of real-world case studies supported by detailed technical explanations
This book is intended for graduate students and researchers in civil engineering, infrastructure development, sustainability, and urban planning.
Zielgruppe
Academic and Postgraduate
Autoren/Hrsg.
Weitere Infos & Material
1. Biochar as a Sustainable Supplement in Cement Mortar and Concrete 2.Examining the Use of Biochar as a Sustainable Green Supplement in Cement Mortar and Concrete Blend: A Comprehensive Review 3.Stabilization of problematic soils using industrial sludge derived-pozzolanic biochar 4.Self-compacting concrete for sustainable infrastructure: A smart strategy for durable and eco-efficient construction 5.Performance and Sustainability Assessment of Self-Compacting Concrete with Mineral Powder Additions for Resilient Infrastructure 6.The rise of zero-cement geopolymer concrete: a sustainable revolution in construction 7. Alkali-Activated Permeable Geopolymer Concrete Technologies: Carbon Neutral Solutions Towards Construction of Climate Resilient Cities 8.Alkali-Activated Binders in Infrastructure Development: The Rise of Energy Storing, Self-Healing—Redefining Infrastructure with Smart AAB Binders 9. Sustainable Innovation – Smart strategies for resilient infrastructure 10. Enhancing the Mechanical and Durability Properties of Concrete through the Valorization of Bamboo Aggregates and Fibers 11.Performance Assessment of Concrete with Partial Replacement of Fine and Coarse Aggregates Using Ceramic Waste 12. Sustainable Utilization of Coconut Ash and Coir Fiber in Ferrocement Wall Panels 13.Stabilization of Sand using Sugarcane Bagasse, Yeast, Human Hair Fibers and Lime 14.Rheological and Topological Optimization Behaviour of Concrete Using Lightweight Green Aggregate (LiGra) 15.Behaviour of Standard and High-Strength Concrete Under Cyclic Heating 16. Green Mortar Innovation: Integrating Titanium Dioxide for Structural and Environmental Benefits 17. Life Cycle Assessment in Sustainable Waste Management: Tools, Trends, and Impact Pathways 18. Competitive Adsorption of Aqueous Selenium & Phenol Species onto Activated Carbon: RSM-based Modelling 19.Structural Performance of Sustainable Concrete with Waste-Derived Recycled Aggregates and Pozzolans: A Review 20. Laboratory performance of composite modified binders and asphalt mixes containing waste plastic




