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1.
K-网格上有限元的超收敛性及渐近准确的后验误差估计黄云清,陈艳萍(湘潭大学数学系)THESUPERCONVERGENCEANDASYMPTOTICALLYEXACTAPOSTERIORIERRORESTIMATEOFTHEFINITEELEMENTO...  相似文献   

2.
THEINTERVALESTIMATIONSFORTHEPARAMETERSANDOTHERRELIABILITYCHARACTERSOFATHREEPARAMETERWEIBULLDISTRIBUTIONCHENDIAbstract:Thispap...  相似文献   

3.
ON A STRONG ROOTED THEOREM OF ONE CLASS OF COMPLEX ANALYTIC SYSTEMSONASTRONGROOTEDTHEOREMOFONECLASSOFCOMPLEXANALYTICSYSTEMS¥L...  相似文献   

4.
THE NON-EXISTENCE OF PERIODIC SOLUTIONS OF A CERTAIN CLASS OF N-TH ORDER DIFFERENTIAL EQUATIONSTHENON-EXISTENCEOFPERIODICSOLU...  相似文献   

5.
ONTHEEXISTENCEANDUNIQUENESSTHEOREMSOFSOLUTIONSFORACLASSOFTHESYSTEMSOFMIXEDMONOTONEOPERATOREQUATIONSWITHAPPLICATIONSHENPEILONG...  相似文献   

6.
EXISTENCEANDTHENUMBEROFPERIODICSOLUTIONSABOUTONECLASSDIFFERENTIALEQUATIONFengZhaosheng(冯兆生)(NorthernJiaotongUniversity,北方交通大学...  相似文献   

7.
(刘德辅)BEHAVIORASt→∞OFTHESOLUTIONSOFTHELINEARSYSTEMOFELASTICTHEORYONNON-STAR-SHAPEDEXTERIORDOMAINS¥LiuDefu(Dept.ofApplMath.,Bei...  相似文献   

8.
COMPARISON AND OSCILLATION THEOREMS FOR AN ADVANCED TYPE DIFFERENCE EQUATIONCOMPARISONANDOSCILLATIONTHEOREMSFORANADVANCEDTYPE...  相似文献   

9.
ONBAHADUR-TYPEASYMPTOTICEFFICIENCYOFPOINTESTIMATORSUNDERIRREGULARTRUNCATEDDISTRIBUTIONFAMILY¥ChenGuijing(陈桂景)(DepartmentofMat...  相似文献   

10.
STOKESCOUPLING METHODFORTHEEXTERIORFLOW PARTII:WELL-POSEDNESS ANALYSIS¥LiKaitai(李开泰)BeYinnian(何银年)(Rose4rchCenterforAppliedMa...  相似文献   

11.
提出交替方向特征有限元方法,对电场位势方程采用混合元格式,对电子,空穴浓度方程采用交替方向特征有限元格式,对温度方程提出交替方向格式.应用向量积计算及先验估计理论和技巧,得到最佳的L2误差估计.  相似文献   

12.
方程u_(tt)=u_(xxt)+f(u_x)_x初边值问题的差分法   总被引:10,自引:0,他引:10  
The finite difference method is considered for the followinginitial-boundary-value problem: arrayllutt=uxxt+f(ux)x, & (x,t) QT, u(x,0) =(x), & x [0,1], ut(x,0) = (x), & x [0,1], u(0,t) =u(1,t) =0, & t [0,T],array. where f(s),(x) and (x) are given functions;QT=[0,1] [0,T]. The convergence of the finite difference schemesis verified by discrete functional analysis methods and prior estimationtechniques.  相似文献   

13.
考虑对流占优扩散方程初边值问题的特征有限体积元方法,并给出特征有限体积元解的误差分析.理论分析表明特征有限体积元解具有最优阶L~2和H~1模误差估计.数值算例说明此方法是有效的.  相似文献   

14.
1.IntroductionItiswellknownthatthestandaxdfiniteelementdiscretizatiollsoftheReissner-Mindlinplateproblemproducepoorapproximationswhenthethicknessistoosmall...incomparisonwiththediameteroftheregionoccupiedbythemidsectionoftheplate.TherootisthesthcaJled"locking"phenomenonwhichisbynowwellunderstood.Amongseveralapproachestoavoidinglockingisamodificationofthestandardfiniteelementschemesbyinterpolatingorprojectingthediscretetrallsverseshearforceintoalower-orderfiniteelemelltspaJce.Thiskindofmethod…  相似文献   

15.
陈刚 《数学杂志》2005,25(2):217-220
本文确定了一个有限群特征标环通过代数整数环扩张后素谱的结构,在此基础之上,利用与[1]中类似的方法证明了这个扩张后的特征标环素谱的连通性。同时还计算了有限群的复类函数空间的幂等元.  相似文献   

16.
关于非守恒形式差分格式的能量守恒问题   总被引:2,自引:1,他引:1  
李德元 《计算数学》1981,3(2):129-142
在建立流体力学方程组的差分格式时,对能量方程有两种不同的选择:一种是采用关于总能量(即内能与动能之和)的守恒形式的方程;另一种是采用关于内能的非守恒形式的方程.对于守恒形式的方程,容易建立能量守恒的差分格式(下面称之为守恒形式的差分格式),而对非守恒形式的方程建立的格式(下面称之为非守恒形式的差分格式),则在  相似文献   

17.
张铁 《计算数学》2000,22(4):401-408
1.引言 有限元后验误差估计和超收敛性质在有限元计算中具有重要的实际意义.近年来,这方面的研究工作已取得较丰富的研究结果[1-4],其中林群等提出的有限元插值后处理技术是一种很有效的研究手段.但目前的已有结果主要是关于椭圆问题有限元近似.本文将研究与时间依赖问题有限元方法密切相关的有限元 Ritz- Volterra投影问,在一些超收敛估计的基础上,利用插值后处理技术,得到了该投影经插值后处理后在 L2, H1, L∞和 W∞1范数下的整体超收敛性,进而导出在相应范数下的渐进准确后验误差估计.这些结果…  相似文献   

18.
In this paper we apply the nonconforming theory in Z.C.Shi to construct a hybrid 5-node finite element satisfying the F1-patch test. We show that the hybrid 5-node finitc element for two-order elliptic equation is convergent and obtain an error estimate.  相似文献   

19.
We consider the numerical approximations of the three-dimensional steady potential flow around a body moving in a liquid of finite constant depth at constant speed and distance below a free surface in a channel. One vertical side is introduced as the up-stream artificial boundary and two vertical sides are introduced as the downstream arti-ficial boundaries. On the artificial boundaries, a sequence of high-order global artificial boundary conditions are given. Then the original problem is reduced to a problem defined on a finite computational domain, which is equivalent to a variational problem. After solving the variational problem by the finite element method, we obtain the numerical approximation of the original problem. The numerical examples show that the artificial boundary conditions given in this paper are very effective.  相似文献   

20.
1. IntroductionIn the numerical simulation of the Navier-Stokes equations one encounters three seriousdifficulties in the case of large Reynolds numbers f the treatment of the incomPressibility con-dition divu = 0, the treatment of the noIilinear terms and the large time integration. For thetreatment of the incoInPressibility condition, one use the penalty method in the case of finiteelemellts [1--2l and for the treatmen of the noulinar terms and the large tfor integration, oneuse the nonlin…  相似文献   

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