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Assessing seismic vulnerability in Dir City, this study uses a modified RVS approach to identify risks and propose strategies ...
Investigating the effects of bentonite, silica fume, and polypropylene fibers, this study highlights their role in enhancing ...
This study reveals how load-bearing wall materials affect building responses to mining vibrations, impacting safety and occupant comfort in seismic regions.
The BO-GBRT model accurately predicts compressive strength in self-compacting concrete with recycled aggregates, improving ...
Download this guide to keep practical insights, real-world use cases, and implementation tips at your fingertips—whether ...
Research shows Roman concrete's advantages are not inherent; sustainability is linked to energy sources used in its ...
A novel heat transfer model reveals critical factors affecting bacterial survival in self-healing concrete, advancing ...
Discover how digital deconstruction is already reshaping construction, using BIM, IoT, AI, and material passports to track, ...
Cement plants could miss out on carbon credit revenue due to inaccurate biogenic CO₂ data. ENVEA’s AMESA-B safeguards data ...
The integration of bamboo stem ash and fibers in mortar enhances performance, presenting a viable solution for lightweight and sustainable building materials.
The review highlights HVBSCs' potential in decarbonizing construction, addressing technical challenges and microstructural ...
MIT researchers have developed a machine learning framework that can identify sustainable natural and industrial materials to partially replace cement, offering a scalable path to significantly reduce ...