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Experimental study on real-time control of roller compacted concrete dam compaction quality using unit compaction energy indices

机译:基于单元压实能量指标的碾压混凝土大坝压实质量实时控制试验研究

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摘要

Vibrating compaction is a marked feature distinguishing roller compacted concrete (RCC) from conventional concrete and is the key factor influencing RCC construction quality. The compaction of RCC results from the comprehensive effect of all compaction parameters. Considering every construction parameter separately would increase the difficulty of construction control and not guarantee construction quality. Therefore, real-time monitoring quality indices-namely, unit compaction energy (UCE), including unit volume compaction energy (UVCE) and unit area compaction energy (UACE), which reflect the comprehensive effect of compaction parameters-were proposed to evaluate the compaction quality of RCC matrix and interface, respectively. To investigate the UCE for predicting the compaction quality of an RCC dam, a three-part laboratory compaction experiment was conducted using a hand vibratory roller. Data on compaction parameters, UVCE/UACE and in situ measurements (e.g., nuclear moisture density, shear strength) were collected to perform statistical regression analyses. A density regression model of RCC matrix and a shear strength regression model of RCC interface were established to determine the control criteria of UVCE and UACE, respectively. Furthermore, a UCE-based real-time monitoring system was developed for field quality control, which is the subsequent practical application of the laboratory experimental study and will result in RCC construction quality assurance. 2015 Elsevier Ltd. All rights reserved.
机译:振动压实是区别于传统混凝土的碾压混凝土(RCC)的显着特征,并且是影响RCC施工质量的关键因素。 RCC的压实来自所有压实参数的综合影响。单独考虑每个施工参数会增加施工控制难度,不能保证施工质量。因此,提出了实时监测质量指标,即反映压实参数综合效果的单位压实能量(UCE),包括单位体积压实能量(UVCE)和单位面积压实能量(UACE),以评估压实效果。 RCC矩阵和接口的质量。为了研究UCE来预测RCC大坝的压实质量,使用手动振动压路机进行了三部分的实验室压实实验。收集有关压实参数,UVCE / UACE和原位测量(例如核水分含量,剪切强度)的数据以进行统计回归分析。建立了RCC基质的密度回归模型和RCC界面的剪切强度回归模型,分别确定了UVCE和UACE的控制标准。此外,为现场质量控制开发了基于UCE的实时监控系统,这是实验室实验研究的后续实际应用,将确保RCC施工质量。 2015 Elsevier Ltd.保留所有权利。

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