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Simulation-based determination of optimal life-cycle cost for FRP bridge deck panels

机译:基于仿真的FRP桥面板最佳生命周期成本确定

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Fiber-reinforced polymer (FRP) composites are increasingly being used in civil infrastructure applications. FRP composites, however, are still relatively unknown to the practicing civil engineer and infrastructure systems planner. There are several unresolved issues to be considered in order to increase their application in construction of infrastructure. Recently, life-cycle cost analysis (LCCA) has been shown to identify how cost-effective FRP composites are compared with conventional materials [Hastak, Makarand and Daniel W. Halpin (2000). Assessment of life-cycle benefit-cost of composites in construction. Journal of Composites for Construction, ASCE, 4 (3) 103-111]. Although many models for estimation of life-cycle cost in FRP composites have been proposed, it remains difficult to predict the end of service life for new advanced materials. It is, therefore, important to assess the life-cycle costs of replacing conventional construction materials with advanced composites. This paper introduces an analytical model to determine optimal life-cycle cost under different discount factors (i.e., interest rates) and inflation rates. It presents a method to estimate the service life for FRP bridge deck panels. Monte Carlo simulation is used to account for uncertainty in those two parameters.
机译:纤维增强聚合物(FRP)复合材料正越来越多地用于民用基础设施应用中。然而,FRP复合材料仍然对实践的土木工程师和基础设施系统规划者来说还是个未知数。为了增加其在基础设施建设中的应用,有几个未解决的问题需要考虑。最近,生命周期成本分析(LCCA)已显示出可以确定如何将具有成本效益的FRP复合材料与传统材料进行比较[Hastak,Makarand和Daniel W. Halpin(2000)。建筑复合材料生命周期效益成本评估。建筑复合材料学报,ASCE,4(3)103-111]。尽管已经提出了许多估算FRP复合材料生命周期成本的模型,但仍然很难预测新型先进材料的使用寿命。因此,评估用高级复合材料替代传统建筑材料的生命周期成本非常重要。本文介绍了一种分析模型,以确定在不同折现率(即利率)和通货膨胀率下的最佳生命周期成本。它提出了一种估算FRP桥面板的使用寿命的方法。蒙特卡罗模拟用于说明这两个参数的不确定性。

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