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Estimation of unsaturated flow parameters and hysteresis curve from field instrumentation

机译:从现场仪器估计不饱和流参数和滞后曲线

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Abstract: The negative pore water pressure or soil suction has significant effect on the performance of geotechnical infrastructures (e.g., slope, pavement, embankment etc.). The unsaturated behavior of soil is not static, rather offers variation in response to climatic loading. The objective of the study was to evaluate field-based techniques of SWCC construction in terms of capturing these variation as compared to laboratory methods and predictive models. The field assessment could allow the quantification of hysteresis effect on the SWCC. Instrumentation data from one Texas, USA highway was used in this study. Soil Water Characteristic Curves (SWCCs) were regenerated utilizing co-located moisture and suction data from the field. Laboratory and field measured SWCCs from the instrumented site were fitted by van Genuchten model. Previously developed predicted models were also utilized to evaluate the SWCC parameters. Based on the evapotranspiration and rainfall amounts, distinct drying and wetting cycles were recorded. Though hourly data was collected in this study, average daily values were used for the analysis. Unsaturated flow parameters (α, n, m) were determined from both laboratory testing and field moisture-suction data along with the predictive models. Clear differences were observed between the values obtained from predictive models and field generated SWCC. The outcome from this study revealed that field reconstructed SWCCs can be used to simulate higher precision in numerical modeling in numerous geotechnical applications.
机译:摘要:负孔隙水压力或土壤吸力对岩土基础设施的性能(例如,斜坡,路面,堤防等)具有显着影响。土壤的不饱和行为不是静态的,而是提供对气候载荷的反应变异。该研究的目的是在与实验室方法和预测模型相比,在捕获这些变化方面评估SWCC施工的基础基础技术。现场评估可以允许在SWCC上定量滞后效应。在本研究中使用了来自美国公路的一个德克萨斯州的仪器数据。土壤水特征曲线(SWCCs)利用来自现场的共同定位的水分和吸入数据进行再生。从仪表网站的实验室和现场测量的SWCC由Van Genuchten模型安装。之前开发的预测模型也用于评估SWCC参数。基于蒸发量和降雨量,记录了不同的干燥和润湿循环。虽然在本研究中收集了每小时数据,但平均每日值用于分析。从实验室测试和现场湿气抽吸数据以及预测模型中确定不饱和流量参数(α,N,M)。在从预测模型和现场生成的SWCC获得的值之间观察到清晰的差异。本研究的结果揭示了现场重建的SWCCs可用于在许多岩土应用中的数值模型中模拟更高的精度。

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