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Compaction quality assessment of earth-rock dam materials using roller-integrated compaction monitoring technology

机译:压路机集成压实监测技术评估土石坝材料的压实质量

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The compaction quality of earth-rock dams is normally controlled through compaction parameters (i.e., compaction passes, roller velocity, vibration status, and compacted thickness) during construction and random spot tests after construction. However, using limited spot samples to represent the construction quality of the entire work area can be unreliable and misleading. Additionally, given the time-consuming process, the spot testing method leads to delays in rectifying compaction quality issues at the jobsite. This research utilized roller-integrated compaction monitoring (RICM) technology combined with real-time kinematic global positioning systems (RTK-GPS), adopted compaction value (CV) as a real-time monitoring index for the dam compaction quality, and subsequently proposed a CV-based assessment method to estimate the compaction quality of earth-rock dam materials. Furthermore, the Kriging interpolation method was adopted to obtain estimates for both CVs and compaction quality at any location on the working area, enabling the analysis of the passing rate of compaction quality for the entire work area. A case study on the NZD Project in China indicated that the CV is highly correlated with the compaction parameters, the compactness of the gravel-mixed cohesive soil, and the dry density of rock-fill dam materials; therefore, it can serve as a reliable index for monitoring compaction quality. Quick and continuous assessments of compaction quality on the entire work area can be achieved using the proposed method, which provides a basis for informing the construction with timely feedback information to effectively avoid quality defects and to improve the construction quality of earth-rock dams.
机译:土石坝的压实质量通常通过施工期间的压实参数(即压实通过,压辊速度,振动状态和压实厚度)和施工后的随机点试验来控制。但是,使用有限的现场样本来代表整个工作区域的施工质量可能是不可靠和误导的。此外,鉴于过程很耗时,现场测试方法会导致在现场纠正压实质量问题时出现延迟。本研究利用压路机综合压实监测(RICM)技术与实时运动学全球定位系统(RTK-GPS)相结合,采用压实值(CV)作为大坝压实质量的实时监测指标,随后提出了基于CV的评估方法,估算土石坝材料的压实质量。此外,采用克里格插值法来获得工作区域中任何位置的CV和压实质量的估计值,从而能够分析整个工作区域的压实质量通过率。以中国NZD项目为例,CV与压实参数,砾石混合粘性土的压实度和堆石坝材料的干密度高度相关。因此,它可以作为监测压实质量的可靠指标。提出的方法可以对整个工作区域进行快速,连续的压实质量评估,为及时告知施工人员信息,有效避免质量缺陷,提高土石坝的施工质量提供了依据。

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