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Head-based isogeometric analysis of transient flow in unsaturated soils

机译:非饱和土壤瞬变流的基于头的等几何分析

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An isogeometric analysis (IGA) is introduced to obtain a head-based solution to Richards equation for unsaturated flow in porous media. IGA uses Non-Uniform Rational B-Spline (NURBS) as shape functions, which provide a higher level of inter-element continuity in comparison with Lagrange shape functions. The semi-discrete nonlinear algebraic equations are solved using a combination of implicit backwardEuler time-integration and Newton-Raphson scheme. The time-step size is adaptively controlled based on the rate of changes in the pore pressure. The results from the proposed formulation are compared and verified against an analytical solution for one-dimensional transient unsaturated flow in a homogenous soil column. The proposed method is then applied to four more complex problems including twodimensional unsaturated flow in a two-layered soil and a semi-circular furrow. The test cases in two layered soil system involve sharp variations in the pressure gradient at the intersection of the two media, where the pore water pressure abruptly changes. It is shown that the proposed head-based IGA is able to properly simulate changes in pore pressure at the soils interface using fewer degrees of freedom and higher orders of approximation in comparison with the conventional finite element method. (C) 2016 Elsevier Ltd. All rights reserved.
机译:引入了等几何分析(IGA),以获得针对多孔介质中非饱和流动的Richards方程的基于头的解决方案。 IGA使用非均匀有理B样条(NURBS)作为形状函数,与Lagrange形状函数相比,它提供更高水平的元素间连续性。半离散非线性代数方程是使用隐式向后Euler时间积分和Newton-Raphson方案组合求解的。基于孔隙压力的变化率来自适应地控制时间步长。将拟议配方的结果与均质土柱中一维瞬态非饱和流的分析解决方案进行比较和验证。然后,将所提出的方法应用于四个更复杂的问题,包括两层土壤中的二维非饱和流和半圆形沟槽。在两层土壤系统中的测试案例涉及两种介质相交处压力梯度的急剧变化,其中孔隙水压力突然变化。结果表明,与传统的有限元方法相比,所提出的基于头的IGA能够使用较少的自由度和较高的逼近度来正确模拟土壤界面处的孔隙压力变化。 (C)2016 Elsevier Ltd.保留所有权利。

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