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Cost and environmental analyses of reinforcement alternatives for a concrete bridge

机译:混凝土桥梁加固替代品的成本和环境分析

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Reinforced Concrete (RC) and Prestressed Concrete (PC) structures using conventional materials in aggressive exposure conditions are susceptible to corrosion. Non-corrosive reinforcement materials such as: Glass Fiber-Reinforced Polymer (GFRP) rebars; Carbon Fiber-Reinforced Polymer (CFRP) strands; Stainless-Steel (SS); and Epoxy-coated steel (ECS) reinforcing bars, are attracting attention as more appropriate options in concrete structures. This paper addresses a Life Cycle Cost (LCC) analysis that verifies the cost performance of four different alternative reinforcement bars for the design of a demonstration FRP-RC/PC bridge in Florida, namely Halls River Bridge (HRB). The four different alternatives to be compared are namely Carbon Steel (CS), SS, FRP, and ECS, and the analysis is performed over 100-years. Additionally, a Life-Cycle Assessment (LCA) is included in the analysis to investigate the environmental credentials of the four design alternatives. Cost sensitivity analyses over specific parameters are included. The parameters analyzed are: reinforcement cost, changes in chloride concentration levels over the bridge service life, and discount rate values. Conclusions and recommendations for standard practices and design of future alternative solutions are then presented.
机译:使用常规材料在激进的暴露条件下使用常规材料的钢筋混凝土(RC)和预应力混凝土(PC)结构易受腐蚀。非腐蚀性加固材料,如:玻璃纤维增​​强聚合物(GFRP)钢筋;碳纤维增强聚合物(CFRP)股;不锈钢(SS);和环氧涂层钢(ECS)加强棒,在混凝土结构中吸引了更适当的选择。本文解决了生命周期成本(LCC)分析,验证了四种不同替代加固栏的成本性能,用于佛罗里达州佛罗里达州的演示FRP-RC / PC桥设计,即霍尔河桥(HRB)。要比较的四种不同的替代方案是碳钢(CS),SS,FRP和ECS,分析超过100年。此外,将在分析中包含生命周期评估(LCA)以调查四种设计替代品的环境凭证。包括特定参数的成本敏感性分析。分析的参数是:增强成本,氯化物浓度水平在桥梁使用寿命和折扣率值上变化。然后介绍了未来替代解决方案的标准实践和设计的结论和建议。

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