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THEORY AND APPLICATION OF FRACTIONAL STEP CHARACTERISTIC FINITE DIFFERENCE METHOD IN NUMERICAL SIMULATION OF SECOND ORDER ENHANCED OIL PRODUCTION 被引量:1
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作者 袁益让 程爱杰 +1 位作者 羊丹平 李长峰 《Acta Mathematica Scientia》 SCIE CSCD 2015年第6期1547-1565,共19页
A kind of second-order implicit fractional step characteristic finite difference method is presented in this paper for the numerically simulation coupled system of enhanced (chemical) oil production in porous media.... A kind of second-order implicit fractional step characteristic finite difference method is presented in this paper for the numerically simulation coupled system of enhanced (chemical) oil production in porous media. Some techniques, such as the calculus of variations, energy analysis method, commutativity of the products of difference operators, decomposition of high-order difference operators and the theory of a priori estimates are introduced and an optimal order error estimates in l^2 norm is derived. This method has been applied successfully to the numerical simulation of enhanced oil production in actual oilfields, and the simulation results ate quite interesting and satisfactory. 展开更多
关键词 enhanced (chemical) oil production three-dimensional porous coupled system second-order implicit characteristic fractional step differences optimal order l^2 estimate application in actual oilfields
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FINITE DIFFERENCE FRACTIONAL STEP METHODS FOR THE TRANSIENT BEHAVIOR OF A SEMICONDUCTOR DEVICE 被引量:4
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作者 袁益让 《Acta Mathematica Scientia》 SCIE CSCD 2005年第3期427-438,共12页
Characteristic finite difference fractional step schemes are put forward. The electric potential equation is described by a seven-point finite difference scheme, and the electron and hole concentration equations are t... Characteristic finite difference fractional step schemes are put forward. The electric potential equation is described by a seven-point finite difference scheme, and the electron and hole concentration equations are treated by a kind of characteristic finite difference fractional step methods. The temperature equation is described by a fractional step method. Thick and thin grids are made use of to form a complete set. Piecewise threefold quadratic interpolation, symmetrical extension, calculus of variations, commutativity of operator product, decomposition of high order difference operators and prior estimates are also made use of. Optimal order estimates in l2 norm are derived to determine the error of the approximate solution. The well-known problem is thorongley and completely solred. 展开更多
关键词 General region semiconductor device 3-dimensional heat conduction characteristic finite difference parallel fractional steps l^2 error estimate.
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The characteristic finite difference fractional steps methods for compressible two-phase displacement problem 被引量:10
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作者 袁益让 《Science China Mathematics》 SCIE 1999年第1期48-57,共10页
For compressible two-phase displacement problem, a kind of characteristic finite difference fractional steps schemes is put forward and thick and thin grids are used to form a complete set. Some techniques, such as pi... For compressible two-phase displacement problem, a kind of characteristic finite difference fractional steps schemes is put forward and thick and thin grids are used to form a complete set. Some techniques, such as piecewise biquadratic interpolation, of calculus of variations, multiplicative commutation rule of difference operators, decomposition of high order difference operators and prior estimates are adopted. Optimal order estimates in L^2 norm are derived to determine the error in the approximate solution. 展开更多
关键词 TWO-PHASE displacement two-dimensional COMPRESSIBILITY fractional stepS characteristic finite difference convergence numerical simulation of energy sources.
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Characteristic finite difference fractional step methods for three-dimensional semiconductor device of heat conduction 被引量:4
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作者 YUAN Yirang Institute of Mathematics. Shandong University, Jinan 250100, China 《Chinese Science Bulletin》 SCIE EI CAS 2000年第2期125-131,共7页
The mathematical model of the semiconductor device of heat conduction has been described by a system of four equations. The optimal order estimates in L2 norm are derived for the error in the approximates solution, pu... The mathematical model of the semiconductor device of heat conduction has been described by a system of four equations. The optimal order estimates in L2 norm are derived for the error in the approximates solution, putting fotward a kind of characteristic finite difference fractional step methods. 展开更多
关键词 semiconductor device THREE-DIMENSIONAL heat conduction parallel characteristic tinite differenceS fractional stepS L2 error estimate.
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A Mixed-finite Volume Element Coupled with the Method of Characteristic Fractional Step Difference for Simulating Transient Behavior of Semiconductor Device of Heat Conductor And Its Numerical Analysis 被引量:1
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作者 Yi-rang YUAN Qing YANG +1 位作者 Chang-feng LI Tong-jun SUN 《Acta Mathematicae Applicatae Sinica》 SCIE CSCD 2017年第4期1053-1072,共20页
The mathematical system is formulated by four partial differential equations combined with initial- boundary value conditions to describe transient behavior of three-dimensional semiconductor device with heat conducti... The mathematical system is formulated by four partial differential equations combined with initial- boundary value conditions to describe transient behavior of three-dimensional semiconductor device with heat conduction. The first equation of an elliptic type is defined with respect to the electric potential, the successive two equations of convection dominated diffusion type are given to define the electron concentration and the hole concentration, and the fourth equation of heat conductor is for the temperature. The electric potential appears in the equations of electron concentration, hole concentration and the temperature in the formation of the intensity. A mass conservative numerical approximation of the electric potential is presented by using the mixed finite volume element, and the accuracy of computation of the electric intensity is improved one order. The method of characteristic fractional step difference is applied to discretize the other three equations, where the hyperbolic terms are approximated by a difference quotient in the characteristics and the diffusion terms are discretized by the method of fractional step difference. The computation of three-dimensional problem works efficiently by dividing it into three one-dimensional subproblems and every subproblem is solved by the method of speedup in parallel. Using a pair of different grids (coarse partition and refined partition), piecewise threefold quadratic interpolation, variation theory, multiplicative commutation rule of differential operators, mathematical induction and priori estimates theory and special technique of differential equations, we derive an optimal second order estimate in L2-norm. This numerical method is valuable in the simulation of semiconductor device theoretically and actually, and gives a powerful tool to solve the international problem presented by J. Douglas, Jr. 展开更多
关键词 transient behavior of three-dimensional semiconductor device numerical simulation mixed finitevolume element modified characteristic fractional step difference second order estimate in L2 norm
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CONVERGENCE ANALYSIS OF MIXED VOLUME ELEMENT-CHARACTERISTIC MIXED VOLUME ELEMENT FOR THREE-DIMENSIONAL CHEMICAL OIL-RECOVERY SEEPAGE COUPLED PROBLEM
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作者 袁益让 程爱杰 +2 位作者 羊丹平 李长峰 杨青 《Acta Mathematica Scientia》 SCIE CSCD 2018年第2期519-545,共27页
The physical model is described by a seepage coupled system for simulating numerically three-dimensional chemical oil recovery, whose mathematical description includes three equations to interpret main concepts. The p... The physical model is described by a seepage coupled system for simulating numerically three-dimensional chemical oil recovery, whose mathematical description includes three equations to interpret main concepts. The pressure equation is a nonlinear parabolic equation, the concentration is defined by a convection-diffusion equation and the saturations of different components are stated by nonlinear convection-diffusion equations. The transport pressure appears in the concentration equation and saturation equations in the form of Darcy velocity, and controls their processes. The flow equation is solved by the conservative mixed volume element and the accuracy is improved one order for approximating Darcy velocity. The method of characteristic mixed volume element is applied to solve the concentration, where the diffusion is discretized by a mixed volume element method and the convection is treated by the method of characteristics. The characteristics can confirm strong computational stability at sharp fronts and it can avoid numerical dispersion and nonphysical oscillation. The scheme can adopt a large step while its numerical results have small time-truncation error and high order of accuracy. The mixed volume element method has the law of conservation on every element for the diffusion and it can obtain numerical solutions of the concentration and adjoint vectors. It is most important in numerical simulation to ensure the physical conservative nature. The saturation different components are obtained by the method of characteristic fractional step difference. The computational work is shortened greatly by decomposing a three-dimensional problem into three successive one-dimensional problems and it is completed easily by using the algorithm of speedup. Using the theory and technique of a priori estimates of differential equations, we derive an optimal second order estimates in 12 norm. Numerical examples are given to show the effectiveness and practicability and the method is testified as a powerful tool to solve the important problems. 展开更多
关键词 Chemical oil recovery mixed volume element-characteristic mixed volume element characteristic fractional step differences local conservation of mass second-order error estimate in l2-norm
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基于特征线的变步长网格划分法 被引量:1
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作者 杨素娟 宋歌 +1 位作者 崔周进 赵宁 《杭州师范大学学报(自然科学版)》 CAS 2014年第2期202-207,共6页
本文首先讨论了用特征线法求解常系数双曲型偏微分方程的解析解,分析了以特征线法为依据构造的几种经典差分格式并给出了数值计算结果,通过分析误差得到最优网格比,结合特征线法提出了变系数双曲型方程的变步长网格划分的数值解方法及... 本文首先讨论了用特征线法求解常系数双曲型偏微分方程的解析解,分析了以特征线法为依据构造的几种经典差分格式并给出了数值计算结果,通过分析误差得到最优网格比,结合特征线法提出了变系数双曲型方程的变步长网格划分的数值解方法及数值计算结果. 展开更多
关键词 双曲型方程 特征线 差分格式 变步长
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计算石油地质等领域的一些新进展 被引量:6
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作者 袁益让 《计算物理》 CSCD 北大核心 2003年第4期283-290,共8页
 主要综述应用计算数学、渗流力学的数值方法和理论研究油田勘探开发中的数值模拟、核废料污染问题的数值方法、海水入侵的预测和防治,半导体瞬态问题的数值模拟.问题的数学模型是一类非线性耦合对流 扩散偏微分方程组的初边值问题.重...  主要综述应用计算数学、渗流力学的数值方法和理论研究油田勘探开发中的数值模拟、核废料污染问题的数值方法、海水入侵的预测和防治,半导体瞬态问题的数值模拟.问题的数学模型是一类非线性耦合对流 扩散偏微分方程组的初边值问题.重点讨论特征差分方法、特征有限元法、分数步数值方法及其理论分析. 展开更多
关键词 石油地质 数学模型 特征差分方法 特征有限元法 分数步法 数值计算 油田
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半导体瞬态问题计算方法的新进展 被引量:8
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作者 袁益让 《计算物理》 EI CSCD 北大核心 2009年第3期317-324,共8页
综述三维热传导型半导体瞬态问题计算方法的新进展.数学模型是一类由四个方程组成的非线性耦合对流-扩散偏微分方程组的初边值问题.重点研究特征分数步差分方法,修正迎风分数步差分方法,特征交替方向变网格有限元方法,区域分裂及并行计算.
关键词 半导体器件 特征和迎风差分 分数步法 交替方向和区域分裂 数值分析
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二维三温热传导方程组的二阶分数步差分格式
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作者 谢树森 薛恒 李弓春 《青岛海洋大学学报(自然科学版)》 CSCD 北大核心 2002年第3期495-500,共6页
对二维三温热传导方程组提出一类分数步有限差分格式。利用变分形式及能量方法 ,得到离散
关键词 三温热传导方程组 分数步有限差分格式 收敛性 稳定性 变分形式 能量方法
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多层非线性渗流耦合系统的特征分数步差分方法
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作者 袁益让 《数学物理学报(A辑)》 CSCD 北大核心 2009年第4期858-872,共15页
对多层非线性渗流耦合系统提出适合并行计算的特征分数步差分格式,利用变分形式、能量方法、粗细网格配套、分片双二次插值、差分算子乘积交换性、高阶差分算子的分解、先验估计的理论和技巧,得到收敛性的最佳阶的l^2误差估计.该方法已... 对多层非线性渗流耦合系统提出适合并行计算的特征分数步差分格式,利用变分形式、能量方法、粗细网格配套、分片双二次插值、差分算子乘积交换性、高阶差分算子的分解、先验估计的理论和技巧,得到收敛性的最佳阶的l^2误差估计.该方法已成功的应用到多层油资源评估的生产实际中. 展开更多
关键词 非线性耦合系统 多层渗流 特征差分 分数步 收敛性
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一类常微分矩阵方程的ADI数值解法
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作者 吕克璞 赵金保 孙建安 《西北师范大学学报(自然科学版)》 CAS 1990年第1期5-8,共4页
本文对于在谱方法求解二维发展方程的数值解以及在常微分方程离散变量方法的累积舍入误差分析中出现的一类常微分矩阵方程作了讨论,给出了一种分数步长 ADI 差分求解格式,并且对误差进行了分析,最后给出了数值算例.
关键词 常微分阵方程 分数步长 AID分格式
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海水入侵数值模拟的分数步长特征差分法 被引量:2
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作者 那顺布和 《内蒙古民族大学学报(自然科学版)》 2005年第4期361-365,共5页
滨海含水层中的海水入侵数值模拟和理论分析,是环境科学中十分重要的理论和实际问题.其中数学模型是一类三维非线性抛物型偏微分方程组的初、边值问题.一个是关于压力的流动方程,另一个是关于含盐浓度的对流方程.在考虑三维有界区域的... 滨海含水层中的海水入侵数值模拟和理论分析,是环境科学中十分重要的理论和实际问题.其中数学模型是一类三维非线性抛物型偏微分方程组的初、边值问题.一个是关于压力的流动方程,另一个是关于含盐浓度的对流方程.在考虑三维有界区域的一般情况下,提出了一类分数步长特征差分格式.应用粗细网格配套、乘积型叁二次插值、变分形式、高阶差分算子的分解和乘积交换性理论和技巧,得到最佳阶l2误差估计. 展开更多
关键词 海水入侵 三维有界区域 分数步长特征差分 l^2误差估计
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隧道台阶法开挖进尺及台阶长度优化分析 被引量:1
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作者 李超 《北方建筑》 2023年第5期27-30,共4页
开挖进尺及台阶长度取值是采用台阶法进行隧道施工的必要参数。本文以某区间隧道工程为依托,采用有限差分软件FLAC3D构建数值计算模型,对比不同开挖进尺及台阶长度工况下初期支护拱顶沉降、水平收敛及地表沉降的影响。数值模拟计算结果... 开挖进尺及台阶长度取值是采用台阶法进行隧道施工的必要参数。本文以某区间隧道工程为依托,采用有限差分软件FLAC3D构建数值计算模型,对比不同开挖进尺及台阶长度工况下初期支护拱顶沉降、水平收敛及地表沉降的影响。数值模拟计算结果表明:拱顶沉降最大沉降值及水平收敛值均随着开挖进尺及台阶长度的减小而减小,拱顶沉降曲线及初期支护水平收敛曲线呈“S”型分布。最终得出,最合理的开挖进尺及台阶长度分别为0.8 m,6 m。 展开更多
关键词 台阶法 开挖进尺 台阶长度 有限差分 方案优化
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分数阶非线性四阶反应扩散方程变步长L 1格式的能量稳定 被引量:1
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作者 孙红 《南京工程学院学报(自然科学版)》 2023年第1期79-83,共5页
基于非均匀L1公式对时间分数阶非线性四阶反应扩散方程建立时间方向变步长的有限差分格式.利用离散互补卷积核,得到非均匀L1公式系数核的梯度分解,从而证明该差分格式在任意非均匀时间网格上保持变分能量耗散率.数值算例验证了格式的精... 基于非均匀L1公式对时间分数阶非线性四阶反应扩散方程建立时间方向变步长的有限差分格式.利用离散互补卷积核,得到非均匀L1公式系数核的梯度分解,从而证明该差分格式在任意非均匀时间网格上保持变分能量耗散率.数值算例验证了格式的精度和有效性. 展开更多
关键词 分数阶非线性反应扩散方程 CAPUTO导数 变步长 有限差分 能量耗散率
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分数阶次扩散方程的时间变步长紧致差分格式
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作者 孙红 《南京工程学院学报(自然科学版)》 2022年第4期82-87,共6页
由于时间分数阶导数在初始时刻存在弱奇异性,解的低正则性会导致在均匀时间网格上精度的降低,从而产生巨大的计算量.针对此问题,对时间分数阶次扩散方程建立时间方向变步长的紧致差分格式.时间分数阶Riemann-Liouville导数采用非均匀的L... 由于时间分数阶导数在初始时刻存在弱奇异性,解的低正则性会导致在均匀时间网格上精度的降低,从而产生巨大的计算量.针对此问题,对时间分数阶次扩散方程建立时间方向变步长的紧致差分格式.时间分数阶Riemann-Liouville导数采用非均匀的L1_(R)公式离散,空间方向采用四阶紧致差分格式近似.对所构造的差分格式的收敛性进行严格理论证明,给出了解的L^(2)模误差估计.数值算例验证了格式的精度和有效性. 展开更多
关键词 分数阶次扩散方程 Riemann-Liouville导数 变步长 紧致差分格式 误差
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二维三温热传导方程组的分数步隐式差分格式 被引量:1
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作者 谢树森 李弓春 薛恒 《应用数学学报》 CSCD 北大核心 2004年第1期27-35,共9页
本文给出一个解二维三温热传导方程组的分数步隐式有限差分格式.利用离散变分形式及能量方法,给出差分格式的最优阶离散H1范数先验误差及稳定性估计.
关键词 分数步隐式差分格式 三温热传导方程组 稳定性 收敛性 先验误差 惯性约束聚变 偏微分方程组
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三维多组分可压缩驱动问题的分数步特征差分方法 被引量:4
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作者 袁益让 《应用数学学报》 CSCD 北大核心 2001年第2期242-249,共8页
本文提出三维多组分驱动问题的分数步长特征差分格式,并应用变分形式、能量方法、粗细网格配套、叁二次插值、高阶差分算子的分解和乘积交换性理论和技巧,得到最佳阶 L~2误差估计.该方法已成功应用到油资源评估、强化采油数值模拟... 本文提出三维多组分驱动问题的分数步长特征差分格式,并应用变分形式、能量方法、粗细网格配套、叁二次插值、高阶差分算子的分解和乘积交换性理论和技巧,得到最佳阶 L~2误差估计.该方法已成功应用到油资源评估、强化采油数值模拟和海水入侵预测和防治的数值模拟中. 展开更多
关键词 多组分驱动 三维可压缩 分数步特征差分 L^2估计 数模应用 非线性偏微分方程组 初边值问题
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