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A Comprehensive Life-Cycle Cost Analysis Approach Developed for Steel Bridge Deck Pavement Schemes

机译:钢桥甲板路面方案开发了一种综合生命周期成本分析方法

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This study aims to evaluate the economy of a steel bridge deck pavement scheme (SBDPS) using a comprehensive life-cycle cost (LCC) analysis approach. The SBDPS are divided into the “epoxy asphalt concrete system” (EA system) and “Gussasphalt concrete system” (GA system) according to the difference in the material in the lower layer of the SBDPS. A targeted LCC checklist, including manager cost and user cost was proposed, and a Markov-based approach was applied to establish a life-cycle performance model with clear probability characteristics for SBDPS. Representative traffic conditions were designed using a uniform design method, and the LCC of SBDPS under representative traffic conditions and different credibility (construction quality as a random factor) was compared. The reliability of the LCC analysis approach was verified based on the uncertainty analysis method. Based on an expert-scoring approach, a user cost weight was obtained to ensure it is considered reasonably in the LCC analysis. Compared with the cumulative traffic volume, the cumulative equivalent single axle loads (CESAL) have a closer relationship with the LCC. The GA system has better LCC when the CESAL is less, while the EA system is just the opposite. The breaking point of CESAL for the LCC of the EA system and the GA system is 15 million times. The LCC analysis of SBDPS should consider the influence of random factors such as construction quality. The comprehensive LCC analysis approach in this paper can provide suggestions for bridge-management departments to make a reasonable selection on SBDPS.
机译:本研究旨在利用综合生命周期成本(LCC)分析方法来评估钢桥甲板路面方案(SBDPS)的经济。根据SBDPS下层的材料的差异,SBDP分为“环氧沥青混凝土系统”(EA系统)和“GUSSSPALT混凝土系统”(GA系统)。提出了一个有针对性的LCC核对表,包括经理成本和用户成本,并应用了基于马尔可夫的方法来建立一个具有SBDP的明显概率特性的生命周期性能模型。使用统一的设计方法设计了代表性的交通条件,并且比较了代表性交通状况下的SBDP的LCC和不同的可信度(作为随机因子的施工质量)。基于不确定性分析方法验证了LCC分析方法的可靠性。基于专家评分方法,获得了用户成本重量以确保在LCC分析中被认为是合理的。与累积交通量相比,累积等效单轴载荷(CESAL)与LCC有更紧密的关系。当CESAL较少时,GA系统具有更好的LCC,而EA系统则相反。 EA系统和GA系统的LCC的断开点为1500万次。 SBDP的LCC分析应考虑施工质量等随机因子的影响。本文的综合LCC分析方法可以为桥接管理部门提供建议,以便在SBDPS上进行合理的选择。

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