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Steel-Concrete Composite Bridges: Design, Life Cycle Assessment, Maintenance, and Decision-Making

机译:钢混凝土复合网桥:设计,生命周期评估,维护和决策

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摘要

Steel-concrete composite bridges are used as an alternative to concrete bridges because of their ability to adapt their geometry to design constraints and the possibility of reusing some of the materials in the structure. In this review, we report the research carried out on the design, behavior, optimization, construction processes, maintenance, impact assessment, and decision-making techniques of composite bridges in order to arrive at a complete design approach. In addition to a qualitative analysis, a multivariate analysis is used to identify knowledge gaps related to bridge design and to detect trends in research. An additional objective is to make visible the gaps in the sustainable design of composite steel-concrete bridges, which allows us to focus on future research studies. The results of this work show how researchers have concentrated their studies on the preliminary design of bridges with a mainly economic approach, while at a global level, concern is directed towards the search for sustainable solutions. It is found that life cycle impact assessment and decision-making strategies allow bridge managers to improve decision-making, particularly at the end of the life cycle of composite bridges.
机译:钢混凝土复合桥用作混凝土桥梁的替代品,因为它们能够使其几何形状适应设计限制以及在结构中重用一些材料的可能性。在本次审查中,我们报告了对复合桥梁的设计,行为,优化,施工过程,维护,影响评估以及决策技术进行了研究,以便以完整的设计方法达成。除了定性分析之外,多变量分析用于识别与桥梁设计相关的知识间隙,并检测研究趋势。额外的目的是在复合钢混凝土桥梁可持续设计中进行可见的空白,这使我们能够专注于未来的研究研究。这项工作的结果展示了研究人员如何集中研究他们对主要经济方法的桥梁初步设计的研究,而在全球范围内,关注的是寻求可持续解决方案的关注。结果发现生命周期影响评估和决策策略允许桥梁管理人员改善决策,特别是在复合桥的生命周期结束时。

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