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Evaluating the effects of climate change on road maintenance intervention strategies and Life-Cycle Costs

机译:评估气候变化对道路养护干预策略和生命周期成本的影响

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Climate change has the potential to impact long-term road pavement performance. Consequently, to maintain pavements within the same ranges of serviceability as before, current pavement maintenance strategies need to be re-assessed and, if necessary, changed. Changes in maintenance may lead to different agency costs and user costs as a consequence. This paper commences by defining an assessment procedure, showing how maintenance intervention strategies and Life-Cycle Costs (LCC) may be affected by future climate. A typical Virginia flexible pavement structure and anticipated climate change was used as an example. This example is believed to be representative for a great number of localities in the United States. A method using historical climatic data and climate change projections to predict pavement performance using Mechanistic-Empirical Pavement Design Guide (MEPDG) under current or future climate was introduced. Based on pavement performance prediction, maintenance interventions were planned and optimized. The maintenance effects of three treatments (thin overlay, thin overlay with an intermediate layer, and mill & fill) were considered. A Life-Cycle Cost analysis is reported that used binary non-linear programming to minimize the costs (either agency costs or total costs) by optimizing intervention strategies in terms of type and application time. By these means, the differences in maintenance planning and LCC under current and future climate can be derived. It was found, that for this simplified case study, pavement maintenance and LCC may be affected by climate change Optimized maintenance may improve resilience to climate change in terms of intervention strategy and LCC, compared to responsive maintenance. (C) 2015 Elsevier Ltd. All rights reserved.
机译:气候变化可能会影响长期的路面性能。因此,为了使路面保持在与以前相同的使用范围内,需要重新评估当前的路面维护策略,并在必要时进行更改。维护变更可能会导致不同的代理费用和用户费用。本文从定义评估程序开始,说明维护干预策略和生命周期成本(LCC)可能会受到未来气候的影响。以弗吉尼亚州典型的柔性人行道结构和预期的气候变化为例。该示例被认为可以代表美国许多地方。介绍了一种使用历史气候数据和气候变化预测来预测路面性能的方法,该方法使用《机械-经验路面设计指南》(MEPDG)在当前或将来的气候条件下进行。基于路面性能预测,计划和优化维护干预措施。考虑了三种处理方法的维护效果(薄覆盖层,带中间层的薄覆盖层以及研磨和填充)。据报道,生命周期成本分析使用二进制非线性编程,通过根据类型和应用时间优化干预策略来最大程度地降低成本(代理成本或总成本)。通过这些方法,可以得出当前和未来气候下维护计划和LCC的差异。结果发现,对于这种简化的案例研究,与响应式维护相比,路面维护和LCC可能会受到气候变化的影响。与干预策略和LCC相比,优化的维护可以提高干预策略和LCC的抵御气候变化的能力。 (C)2015 Elsevier Ltd.保留所有权利。

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