A New Reduced-Dimension Iteration Two-Grid Crank–Nicolson Finite-Element Method for Unsaturated Soil Water Flow Problem

Author:

Hou Xiaoli12,Teng Fei3,Luo Zhendong2ORCID,Fu Hui1

Affiliation:

1. College of Environment and Ecology, Hunan Agricultural University, Changsha 410128, China

2. School of Digitalized Intelligence Engineering, Hunan Sany Polytechnic College, Changsha 410129, China

3. College of Arts and Sciences, Shanghai Dianji University, Shanghai 201306, China

Abstract

The main objective of this paper is to reduce the dimensionality of unknown coefficient vectors of finite-element (FE) solutions in two-grid (CN) FE (TGCNFE) format for the nonlinear unsaturated soil water flow problem by using a proper orthogonal decomposition (POD) and to design a new reduced-dimension iteration TGCNFE (RDITGCNFE). For this objective, a new time semi-discrete CN (TSDCN) scheme for the nonlinear unsaturated soil water flow problem is first designed and the existence, stability, and error estimates of TSDCN solutions are demonstrated. Subsequently, a new TGCNFE format for the nonlinear unsaturated soil water flow problem is designed and the existence, unconditional stability, and error estimates of TGCNFE solutions are demonstrated. Next, a new RDITGCNFE format with the same FE basis functions as the TGCNFE format is built by the POD method and the existence, unconditional stability, and error estimates of RDITGCNFE solutions are discussed. Ultimately, the rightness of theory results and the superiority of the RDITGCNFE format are verified by two sets of numerical tests. It is worth noting that the RDITGCNFE format differs completely from all previous reduced-dimension methods, including the authors’ previous works. Therefore, the study of this paper can not only provide a new theoretical method for the dimensionality reduction of numerical models for nonlinear problems but also provide an algorithm implementation technology for the numerical simulation of practical engineering problems.

Funder

National Natural Science Foundation of China

Publisher

MDPI AG

Reference41 articles.

1. Numerical simulation of an unsaturated flow equation;Xie;Sci. China Ser. D,1998

2. Bear, J. (1972). Dynamics of Fluids in Porous Media, American Elsevier Publishing Company.

3. Lei, Z.D., Yang, S.X., and Xie, S.C. (1988). Soil Hydrodynamics, Tsinghua University Press. (In Chinese).

4. Effect of range of soil-water characteristic curve measurements on estimation of permeability function;Rahimi;Eng. Geol.,2015

5. Models for predicting the soil-water characteristic curves for coarse and fine-grained soils;Li;J. Hydrol.,2022

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