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Research-informed design, management and maintenance of infrastructure slopes: development of a multi-scalar approach

机译:基础设施斜坡的研究知识设计,管理和维护:多标标方法的开发

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The UK's transport infrastructure is one of the most heavily used in the world. The performance of these networks is critically dependent on the performance of cutting and embankment slopes which make up {found}20B of the {found}60B asset value of major highway infrastructure alone. The rail network in particular is also one of the oldest in the world: many of these slopes are suffering high incidents of instability (increasing with time). This paper describes the development of a fundamental understanding of earthwork material and system behaviour, through the systematic integration of research across a range of spatial and temporal scales. Spatially these range from microscopic studies of soil fabric, through elemental materials behaviour to whole slope modelling and monitoring and scaling up to transport networks. Temporally, historical and current weather event sequences are being used to understand and model soil deterioration processes, and climate change scenarios to examine their potential effects on slope performance in futures up to and including the 2080s. The outputs of this research are being mapped onto the different spatial and temporal scales of infrastructure slope asset management to inform the design of new slopes through to changing the way in which investment is made into aging assets. The aim ultimately is to help create a more reliable, cost effective, safer and more resilient transport system.
机译:英国的运输基础设施是世界上最重大使用的交通基础设施。这些网络的性能批判性地取决于切割和路堤斜坡的性能,该斜率构成的{发现} 20B的主要公路基础设施的{发现} 20B。轨道网络尤其也是世界上最古老的网络之一:许多这些斜坡正在遭受高稳定性的影响(随时间的增加)。本文通过系统集成在一系列空间和时间尺度的系统上整合,介绍了对土方材料和系统行为的基本理解的发展。空间上的这些范围从土壤织物的微观研究,通过元素材料行为到整个坡度建模和监测和扩展到运输网络。在暂时的情况下,历史和当前的天气事件序列正在用于理解和模拟土壤恶化过程,以及气候变化情景,以检查其在期货到2080年代的期货上的坡度绩效的潜在影响。该研究的产出正在映射到基础设施坡度资产管理的不同空间和时间尺度,以通知新斜坡的设计,以改变投资转化为老化资产的方式。目的最终是帮助创造更可靠,成本效益,更安全,更具弹性的运输系统。

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