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Sustainability Assessment of Precast Ultra-High Performance Fiber Reinforced Concrete (UHPFRC) Cantilever Retaining Walls

机译:预制超高性能纤维混凝土(UHPFRC)悬臂式挡土墙的可持续性评估

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This study evaluates the environmental impacts of a newly designed precast Ultra-High Performance Fiber Reinforced Concrete (UHPFRC) cantilever retaining wall as a sustainable alternative approach compared with the conventional precast Reinforced Concrete (RC) cantilever retaining wall. Nowadays, according to the shocking reports of many researchers worldwide global warming is one of the most devastating problems of human being. To date, lots of research has been undertaken in the concrete industry to tackle this issue through reducing the environmental footprints of our structural designs. In this regard, UHPFRC technology offers substantial benefits through efficient use of materials as well as optimization of the structural designs resulting less CO2 emissions, Embodied Energy (EE) and Global Warming Potential (GWP). UHPFRC as a sustainable construction material is mostly appropriate for the use in the fabrication of precast members such as precast concrete cantilever retaining walls. This study demonstrates the overview of the designed precast concrete cantilever retaining wall manufactured from UHPFRC and its Environmental Impact Calculations (EIC) versus the conventional precast RC cantilever retaining walls. Based on the EIC results, the precast UHPFRC cantilever retaining walls are generally more environmentally sustainable than those built of the conventional RC with respect to the reduction of CO2 emissions, EE and GWP. In summary, the precast UHPFRC cantilever retaining wall proposed in this study is an alternative sustainable solution compared with the conventional precast RC cantilever retaining wall which can be used in many civil engineering projects.
机译:这项研究评估了新型设计的预制超高性能纤维混凝土(UHPFRC)悬臂挡土墙与传统预制钢筋混凝土(RC)悬臂挡土墙相比对环境的影响。如今,根据全球许多研究人员的令人震惊的报告,全球变暖是人类最严重的问题之一。迄今为止,混凝土行业已经进行了大量研究,以通过减少结构设计的环境足迹来解决这一问题。在这方面,UHPFRC技术通过有效地使用材料以及优化结构设计而带来了巨大的好处,从而减少了CO 2 的排放,体现的能源(EE)和全球变暖潜力(GWP)。 UHPFRC作为一种可持续的建筑材料,最适合用于制造预制构件,例如预制混凝土悬臂式挡土墙。这项研究展示了由UHPFRC制造的设计预制混凝土悬臂式挡土墙的概况及其与传统的RC预制混凝土悬臂式挡土墙的环境影响计算(EIC)。根据EIC的结果,就减少CO 2 排放,EE和GWP而言,预制的UHPFRC悬臂式挡土墙通常比传统RC更具环境可持续性。总而言之,与可在许多土木工程项目中使用的常规RC预制悬臂式挡土墙相比,本研究提出的预制UHPFRC悬臂式挡土墙是一种替代性可持续解决方案。

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