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非饱和土壤水流问题基于POD 方法的降阶有限体积元格式及外推算法实现
引用本文:罗振东,李宏,陈静.非饱和土壤水流问题基于POD 方法的降阶有限体积元格式及外推算法实现[J].中国科学:数学,2012,42(12):1263-1280.
作者姓名:罗振东  李宏  陈静
作者单位:华北电力大学数理学院, 北京 102206;
内蒙古大学数学科学学院, 呼和浩特 010021;
中国农业大学理学院, 北京 100083
基金项目:国家自然科学基金(批准号: 11271127、11061021、11061009 和11271367)、河北省自然科学基金(批准号: A2010001663)、内蒙古自然科学基金(批准号: 2012MS0106)、内蒙古自治区高等学校研究项目(批准号: NJ10006)、贵州省科技计划项目(批准号: 黔科合J 字[2011]2367) 和北京市共建项目专项资助项目
摘    要:利用特征投影分解(proper orthogonal decomposition, 简记为POD) 方法对非饱和土壤水流问题的经典有限体积元格式做降阶处理, 建立一种具有足够高精度维数较低的降阶有限体积元格式, 并给出这种降阶有限体积元解的误差估计和外推算法的实现, 最后用数值例子说明数值结果与理论结果是相吻合的. 进一步表明了基于POD 方法的降阶有限体积元格式对求解非饱和土壤水流问题数值解是可靠和有效的.

关 键 词:特征投影分解方法  非饱和土壤水流问题  降阶有限体积元格式  误差估计  数值模拟

A reduced-order finite volume element formulation based on POD method and implementation of its extrapolation algorithm for unsaturated soil water flow equation
LUO ZhenDong,LI Hong,CHEN Jing.A reduced-order finite volume element formulation based on POD method and implementation of its extrapolation algorithm for unsaturated soil water flow equation[J].Scientia Sinica Mathemation,2012,42(12):1263-1280.
Authors:LUO ZhenDong  LI Hong  CHEN Jing
Abstract:A proper orthogonal decomposition (POD) method is used to treat a classical finite volume element (FVE) formulation for unsaturated soil water flow problem. A reduced-order FVE formulation with lower dimensions and sufficiently high accuracy for two-dimensional unsaturated soil water flow problem is established and the error estimates between the reduced-order FVE solutions and the classical FVE solutions and the implementation of extrapolation algorithm for solving the reduced-order FVE formulation are provided. Some numerical examples illustrate that the results of numerical computation are consistent with theoretical conclusions. Moreover, it is shown that the reduced-order FVE formulation based on POD method is feasible and efficient for solving two-dimensional unsaturated soil water flow problem.
Keywords:proper orthogonal decomposition method  unsaturated soil water flow problem  reduced-order finite volume element formulation  error estimate  numerical simulation
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