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Numerical Modeling Strategies for Sustainable Concrete Structures: SSCS 2022

Numerical Modeling Strategies for Sustainable Concrete Structures: SSCS 2022

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This volume showcases the latest advancements, innovations, and applications in sustainable concrete structures, highlighting the relevance of numerical methods in optimizing cement utilization while ensuring lifespan compatibility with sustainable development goals. It presents traditional and new ideas for research and collaboration between specialists.

Format: Hardback
Length: 374 pages
Publication date: 01 July 2022
Publisher: Springer International Publishing AG


This comprehensive volume showcases the latest advancements, innovations, and applications in the field of sustainable concrete structures, as presented by esteemed scientists and engineers during the RILEM International Conference on Numerical Modeling Strategies for Sustainable Concrete Structures (SSCS), held in Marseille, France, from July 4 to 6, 2022. It underscores the significance of numerical methods (such as finite elements, finite volumes, and finite differences) in addressing the critical challenge of optimizing cement utilization in concrete constructions while ensuring their lifespan aligns with the principles of sustainable development. These methods serve as precise tools for designing concrete structures, enabling the consideration of various complexities, including rheological, physicochemical, and mechanical properties of concrete, structural geometry, and environmental boundary conditions.

Moreover, this optimization must adhere to stricter constraints regarding time, money, security, energy, CO2 emissions, and, more broadly, the life cycle, surpassing the reliability of current codes and analytical approaches. Numerical methods, without a doubt, stand as the most effective calculation tools in the service of concrete eco-construction. The contributions included in this volume offer a blend of traditional and novel ideas, paving the way for new research directions and fostering interdisciplinary collaboration among diverse specialists.

Weight: 764g
Dimension: 235 x 155 (mm)
ISBN-13: 9783031077456
Edition number: 1st ed. 2023

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