Numerical scheme for transient seepage analysis under unsaturated conditions

Pham Nguyen Nhat Khanh, N. H. Nghia
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引用次数: 0

Abstract

Unsaturated soil behaviors characterize the failure mechanisms of geotechnical infrastructures with transient seepage conditions. Therefore, an accurate estimate of the unsaturated groundwater flow is vital in improving hazard management and assessment. This study attempts to develop a numerical scheme for 2-D transient analysis under unsaturated conditions. First, the unsaturated groundwater flow was described using the mass conservation law. Then, the Finite Difference Method and Backward Euler approximation were applied for space and time discretization, respectively. Furthermore, the simple Picard iteration was applied to linearize the governing equation. The reliability of the presented method was verified with the analytical solution. The evaluation results demonstrated the sufficiency of the proposed method, quantitatively expressed by the maximum error of 0.04% for opened boundary conditions and 0.15% for closed boundary conditions. The significant advantage of the proposed method is the flexibility with various soil-water characteristic curve models and associated hydraulic conductivity functions, which helps to improve the applicability in practice.
非饱和条件下瞬态渗流分析数值格式
非饱和土特性表征了瞬态渗流条件下岩土基础设施的破坏机制。因此,准确估算非饱和地下水流量对提高灾害管理和评价水平至关重要。本研究试图建立一个非饱和条件下二维瞬态分析的数值格式。首先,利用质量守恒定律对非饱和地下水流动进行了描述。然后分别采用有限差分法和后向欧拉近似进行空间离散和时间离散。在此基础上,采用简单的Picard迭代对控制方程进行线性化。用解析解验证了该方法的可靠性。评价结果表明所提方法的充分性,在开放边界条件下最大误差为0.04%,在封闭边界条件下最大误差为0.15%。该方法的显著优点是具有多种土-水特征曲线模型和相关导水率函数的灵活性,有助于提高在实际中的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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