膨胀粘土路基含水率变化影响的数值研究

IF 2.3 Q2 ENGINEERING, GEOLOGICAL
Berjees Anisa Ikra, Jay X. Wang
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引用次数: 0

摘要

摘要本文研究的是一个预测膨胀路基含水量波动的数值模型。该模型对气候变化引起的膨胀土路面的垂直运动进行了基于机制的计算。该模型是使用VADOSE/W创建的,用于分析一段时间内水分含量的变化,将气候和环境影响作为强加的边界和初始条件。数值分析中的含水量波动通过美国得克萨斯州大学城附近膨胀性Frelsburg粘土上FM-2乡村公路路面下方的长期含水量测量进行了验证。然后应用VADSOSE/W分析美国路易斯安那州Bossier Parish的I-220路面。,它坐落在路易斯安那州北部高度膨胀的莫兰粘土路基上。利用输入的气候和环境数据完成了为期一年的数值建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical investigation of the effect of water content variations in expansive clay subgrades
ABSTRACT The research presented in this paper was focused on a numerical model predicting moisture content fluctuation in expansive subgrades. The model leads to a mechanism-based calculation of the vertical movement of a pavement sitting on expansive soils due to climate changes. The model was created using VADOSE/W in analysing changes in moisture content over a certain period of time, with climate and environmental effects take as imposed boundary and initial conditions. Moisture content fluctuations from the numerical analyses were validated by the long-term moisture content measurements below the pavement of country road FM-2 on the expansive Frelsburg clay near the city of College Station in Texas, U.S.A. VADSOSE/W was then applied to analyse the pavement of I-220 at Bossier Parish, Louisiana, U.S.A., which sits on subgrades of highly expansive Moreland clay in northern Louisiana. The numerical modelling was completed for a one-year period with input climatic and environmental data.
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来源期刊
CiteScore
5.30
自引率
5.30%
发文量
32
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