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Geostatistical analysis of intelligent compaction measurements for asphalt pavement compaction

机译:沥青路面压实智能压实测量的地统计分析

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Although unable to address the issue of spatial uniformity, univariate statistics are commonly used to evaluate the compaction uniformity of asphalt layers nowadays. Intelligent compaction (IC) technology can provide the spatial IC measurement values (ICMV) with 100% coverage during compaction and offers an opportunity to perform the geostatistical analysis on the compacted asphalt layers. In this study, the construction quality of two typical asphalt pavement projects, including one new pavement construction project and one resurfacing construction project, were evaluated by performing geostatistical analysis for ICMV. Some critical issues regarding the use of geostatistical method for the evaluation of construction quality were also addressed by the case studies. The results from the geostatistical analyses show that IC technology can offer detailed information about spatial compaction uniformity. Upon comparison of the spatial uniformity between different layers, the semi-variogram after the normal score transformation was suggested due to the measuring depths of the IC roller. The spatial statistics of ICMV could be adopted to monitor the changes in spatial uniformity during compaction. The factors affecting ICMV and geostatistical analysis were further discussed.
机译:尽管无法解决空间均匀性的问题,但如今单变量统计通常用于评估沥青层的压实均匀性。智能压实(IC)技术可以在压实过程中提供100%覆盖的空间IC测量值(ICMV),并提供了对压实的沥青层进行地统计分析的机会。在这项研究中,通过对ICMV进行地统计分析,评估了两个典型的沥青路面项目的施工质量,其中包括一个新的路面施工项目和一个路面重铺施工项目。案例研究还解决了有关使用地统计方法评估建筑质量的一些关键问题。地统计分析的结果表明,集成电路技术可以提供有关空间压实均匀性的详细信息。比较不同层之间的空间均匀性后,由于IC辊的测量深度,建议进行正态分数转换后的半变异函数。 ICMV的空间统计可以用来监测压实过程中空间均匀性的变化。进一步讨论了影响ICMV和地统计分析的因素。

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