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A design methodology to reduce the embodied carbon of concrete buildings using thin-shell floors

机译:一种使用薄壳地板减少混凝土建筑物内含碳的设计方法

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This paper explores the potential of thin concrete shells as low-carbon alternatives to floor slabs and beams, which typically make up the majority of structural material in multi-storey buildings. A simple and practical system is proposed, featuring pre-cast textile reinforced concrete shells with a network of prestressed steel tension ties. A non-structural fill is included to provide a level top surface. Building on previous experimental and theoretical work, a complete design methodology is presented. This is then used to explore the structural behaviour of the proposed system, refine its design, and evaluate potential carbon savings.Compared to flat slabs of equivalent structural performance, significant embodied carbon reductions (53-58%) are demonstrated across spans of 6-18 m. Self-weight reductions of 43-53% are also achieved, which would save additional material in columns and foundations. The simplicity of the proposed structure, and conservatism of the design methodology, indicate that further savings could be made with future refinements.These results show that considerable embodied carbon reductions are possible through innovative structural design, and that thin-shell floors are a practical means of achieving this.
机译:本文探讨了薄混凝土外壳作为楼板和梁的低碳替代品的潜力,楼板和梁通常构成多层建筑中的大多数结构材料。提出了一种简单实用的系统,其特征在于,预制的纺织品增强混凝土壳体具有预应力钢拉紧网络。包含非结构填充以提供水平的上表面。在先前的实验和理论工作的基础上,提出了完整的设计方法。然后将其用于探索拟议系统的结构行为,完善其设计并评估潜在的碳节省。与等效结构性能的平板相比,在6-60跨度内显着降低了碳含量(53-58%)。 18 m。还实现了43-53%的自重降低,这将节省柱子和地基中的其他材料。拟议的结构简单,设计方法保守,表明未来的改进可以进一步节省成本。这些结果表明,通过创新的结构设计可以显着减少碳排放,薄壳地板是一种实用的方法实现这一目标。

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