含水量对路基智能压实质量影响的数值模拟分析

IF 1 4区 数学 Q1 MATHEMATICS
Yuan Ma, Y. Luan, Shuangquan Jiang, Jianming Zhang, Chuan Wang
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引用次数: 1

摘要

在路基智能压实过程中,路基含水率是影响压实质量的重要因素之一。为了分析含水率对路基压实质量的影响,利用二次开发的Abaqus有限元数值模拟软件开发了本文。同时,设置了人工粘性边界,消除了有限元建模过程中边界条件对结果的影响,使数值模拟能够精细化到模型化。在此基础上,对路基压实过程的动力响应进行有限元数值模拟分析。建立了路基压实度与智能压实指标CMV的相关性,分析了含水率对路基压实质量的影响。研究结果表明:竖向加速度幅值几乎与含水率无关,竖向位移主要发生在静压阶段;振动轮与路基接触后的前0.5 s垂直位移变化剧烈。路基压实质量提高的主要阶段是第一次压实结束前。第一次压实结束时,路基压实度由80%迅速提高到91.68%、95.34%和97.41%。随着含水量的增加,CMV逐渐升高。在第二次压实结束时,CMV较第一次压实结束时略有增加,在第二次压实结束时趋于稳定。在本文的假设范围内,路基施工时应考虑设置比路基最优含水率略高1%左右的路基含水率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical simulation analysis for the effect of water content on the intelligent compaction quality of roadbed
In the process of intelligent compaction of roadbeds, the water content of the roadbed is one of the important influencing factors of compaction quality. In order to analyze the effect of water content on the compaction quality of roadbeds, this paper is developed by secondary development of Abaqus finite element numerical simulation software. At the same time, the artificial viscous boundary was set to eliminate the influence of boundary conditions on the results in the finite element modeling process, so that the numerical simulation can be refined to model. On this basis, the dynamic response analysis of the roadbed compaction process is performed on the finite element numerical simulation results. This paper established the correlation between compaction degree and intelligent compaction index CMV (Compaction Meter Value) and then analyzed the effect of water content on the compaction quality for the roadbed. The results of this paper show that the amplitude of the vertical acceleration is almost independent of the moisture content, and the vertical displacement mainly occurs in the static compaction stage. The vertical displacement changes sharply in the first 0.5 s when the vibrating wheel is in contact with the roadbed. The main stage of roadbed compaction quality increase is before the end of the first compaction. At the end of the first compaction, the roadbed compaction degree increased rapidly from 80% to 91.68%, 95.34% and 97.41%, respectively. With the increase in water content, the CMV gradually increased. At the end of the second compaction, CMV increased slightly compared with that at the end of the first compaction and stabilized at the end of the second compaction. The water content of the roadbed should be considered to be set slightly higher than the optimal water content of the roadbed by about 1% during the construction of the roadbed within the assumptions of this paper.
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来源期刊
CiteScore
1.30
自引率
12.50%
发文量
170
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