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Determining the Effectiveness of Asphalt Concrete Overlays on Rigid Pavement Using Discrete-Event Simulation

机译:使用离散事件模拟确定沥青混凝土叠加在刚性路面上的有效性

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The budget for preserving highway pavement conditions is increasing every year, as well as the impulse to seek transparency of maintenance decisions. This paper presents a new paradigm in applying discrete-event simulation (DES) to capture an indeterministic process of rigid pavement deterioration with an implementation of rehabilitation treatment, namely, asphalt concrete (AC) overlays. This paradigm should facilitate decision makers in establishing the most appropriate maintenance procedure. In this study, the deterioration model was constructed and run over 50 simulated years with various numbers of International Roughness Index (IRI) to determine the rehabilitation cost and average IRI over the analysis period. The result shows that when focusing only on the treatment cost, the best treatment type is Minimal Surface Preparation with 4” AC overlay (MSP). If the treatment performance is considered as the objective for decision making, Crack/Break and Seat section with 8” AC overlay (CB&S8) provides the best pavement condition. Nevertheless, when both objectives are simultaneously considered, Crack/Break and Seat section with 4” AC overlay (CB&S4) outperforms the other rehabilitation types, specifically when the treatment is implemented on a good condition pavement with a relatively low IRI. MSP is, however, the most suitable when a pavement is in a less preferable condition with a relatively high IRI.
机译:保存公路路面条件的预算每年都在增加,以及寻求维护决策透明度的冲动。本文介绍了应用离散事件仿真(DES)以捕获康复处理的实施,即沥青混凝土(AC)覆盖,捕获刚性路面劣化的不确定过程的新范式。此范例应促进决策者建立最合适的维护程序。在这项研究中,通过各种数量的国际粗糙度指数(IRI)构建并运行了50多年的劣化模型,以确定分析期间的康复成本和平均IRI。结果表明,仅在处理成本上专注时,最好的处理类型是具有4“交流覆盖层(MSP)的最小表面制备。如果将处理性能视为决策,裂缝/断裂和带8“交流覆盖层(CB&S8)的裂缝/断裂和座椅部分提供了最佳的路面状况。然而,当同时考虑两个目标时,裂缝/断裂和带4“交流覆盖层(CB&S4)的座椅部分优于其他康复类型,具体地,当处理在具有相对低的IRI的良好状态路面上实施时。然而,MSP是最适合的,当路面处于具有相对高的IRI的不太优选的条件时。

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