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Instrumentation for monitoring pavement performance in cold regions

机译:监测寒冷地区路面性能的仪器

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摘要

The Mechanistic-Empirical(ME) design guide developed under the National Cooperative Highway Research Program represents a true change in the approach to engineering road structures. Changes in material properties with seasonal variations in moisture and temperature condition, which influence the mechanical response of the materials and hence the structural response of road layers, forced reliance on empirical measures to predict performance. These empirical functions will require calibration to ensure the prediction model is responsive to local conditions including adopted construction practice. The performance of pavements in cold regions clearly reveal the need to properly measure the distribution of stresses, strains, moisture, and thermal regimes, within road layers over a period of time. This paper presents the design, implementation, and use of a practical road instrumentation monitoring system capable of capturing all structural and environmental data for roadways. This proposed road installation scheme is simple yet effective in generating data that be used to calibrate a host of design M-E and visco-elastic models including the new AASHTO design guide. Details include selection of sensors, data acquisition systems, data processing techniques and some actual data.
机译:在国家公路合作研究计划下制定的机械-经验(ME)设计指南代表了工程道路结构方法的真正改变。材料特性的变化随湿度和温度条件的季节性变化而变化,这会影响材料的机械响应,进而影响道路层的结构响应,因此必须依靠经验方法来预测性能。这些经验功能将需要进行校准,以确保预测模型能够响应当地条件,包括采用的施工实践。寒冷地区的人行道性能清楚地表明,有必要在一段时间内正确测量路面各层中的应力,应变,湿度和热状况的分布。本文介绍了一种实用的道路仪表监视系统的设计,实现和使用,该系统能够捕获道路的所有结构和环境数据。拟议的道路安装方案既简单又有效,可以生成用于校准许多设计M-E和粘弹性模型(包括新的AASHTO设计指南)的数据。详细信息包括传感器的选择,数据采集系统,数据处理技术和一些实际数据。

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