Optimization Model of Network-Level Pavement Maintenance Decision considering User Travel Time and Vehicle Fuel Consumption Costs

IF 1.6 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY
Leilei Chen, Zepeng Fan, Pengfei Liu, Z. Qian
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引用次数: 6

Abstract

The maintenance management decisions of network-level asphalt pavements have long been a challenge to highway agencies, and a great amount of factors have been involved. In this study, a network-level optimization method was established by integrating the maintenance benefits into the zero-one programming optimization model. An optimized performance evaluation method of asphalt pavement was proposed which contains 11 different kinds of combinations. The benefit model quantifies the cost savings of user travel time and vehicle fuel consumption to the pavement condition index (PCI) and ride quality index (RQI), respectively. Based on the simplified evaluation method as well as the quantified maintenance benefit model, an optimization model was established by employing the zero-one programming. This optimization model aimed to maximize the improvements/price ratio of pavement maintenance for the whole pavement network. The calculation results present the optimal strategies of maintenance for every road section in the network. The applicability of the newly proposed model was validated by a case study. The methodology developed in this study helps to offer guidelines to highway agencies in managing and making decisions about network-level pavement maintenance.
考虑用户出行时间和车辆油耗成本的路网级路面养护决策优化模型
网级沥青路面养护管理决策一直是困扰公路管理机构的难题,涉及的因素很多。在本研究中,将维修效益纳入零-一规划优化模型,建立了一种网络级优化方法。提出了一种包含11种不同组合的沥青路面优化性能评价方法。效益模型将用户出行时间和车辆油耗的成本节约分别量化为路面状况指数(PCI)和乘坐质量指数(RQI)。在简化评价方法和量化维修效益模型的基础上,采用0 - 1规划方法建立了维修效益优化模型。该优化模型的目标是使整个路面网络的路面维修的改进/价格比最大化。计算结果给出了路网各路段的最优养护策略。通过实例验证了该模型的适用性。本研究开发的方法有助于为公路机构管理和决策网络级路面养护提供指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Civil Engineering
Advances in Civil Engineering Engineering-Civil and Structural Engineering
CiteScore
4.00
自引率
5.60%
发文量
612
审稿时长
15 weeks
期刊介绍: Advances in Civil Engineering publishes papers in all areas of civil engineering. The journal welcomes submissions across a range of disciplines, and publishes both theoretical and practical studies. Contributions from academia and from industry are equally encouraged. Subject areas include (but are by no means limited to): -Structural mechanics and engineering- Structural design and construction management- Structural analysis and computational mechanics- Construction technology and implementation- Construction materials design and engineering- Highway and transport engineering- Bridge and tunnel engineering- Municipal and urban engineering- Coastal, harbour and offshore engineering-- Geotechnical and earthquake engineering Engineering for water, waste, energy, and environmental applications- Hydraulic engineering and fluid mechanics- Surveying, monitoring, and control systems in construction- Health and safety in a civil engineering setting. Advances in Civil Engineering also publishes focused review articles that examine the state of the art, identify emerging trends, and suggest future directions for developing fields.
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