High-Performance Glass Pervious Concrete: Material Innovation, Structural Optimization, and Sustainability Evaluation
The recycling of waste glass presents a promising yet underutilized opportunity in sustainable construction materials due to challenges associated with alkali–silica reaction (ASR). This study introduces a comprehensive approach to developing high-performance glass pervious concrete (HPGPC), integrating material innovation, structural optimization, and multi-dimensional sustainability assessment. By combining waste glass powder in ultra-high-strength mortar and introducing a reinforced ternary composite cover, the research addresses both durability and load-bearing limitations typically found in pervious concrete applications. Material Design Using Waste Glass Powder for Enhanced Bonding A central focus of the research lies in the development of an ultra-high-strength mortar formulated with waste glass powder, aimed at improving aggregate bonding within HPGPC. This innovative material design strategy allows the integration of up to 20% waste glass aggregates while maintaining compre...