The Partitioned Mixed Model of Finite Element Method and Interface Stress Element Method with Arbitrary Shape of Discrete Block Element

Based on the model of rigid-spring element suitable for homogeneous elastic problem, which was developed by Japanese professor Kawai, the interface stress element model (ISEM) for solving the problem of discontinuous media mechanics has been established. Compared with the traditional finite element...

Full description

Bibliographic Details
Main Authors: Zhang Qing, Zhuo Jiashou, Xia Xiaozhou
Format: Article
Language:English
Published: Hindawi Limited 2013-01-01
Series:Mathematical Problems in Engineering
Online Access:http://dx.doi.org/10.1155/2013/950696
id doaj-f0ce062ffeef436ba2561e717b9a8fcc
record_format Article
spelling doaj-f0ce062ffeef436ba2561e717b9a8fcc2020-11-24T22:33:27ZengHindawi LimitedMathematical Problems in Engineering1024-123X1563-51472013-01-01201310.1155/2013/950696950696The Partitioned Mixed Model of Finite Element Method and Interface Stress Element Method with Arbitrary Shape of Discrete Block ElementZhang Qing0Zhuo Jiashou1Xia Xiaozhou2State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering, Hohai University, Nanjing 210098, ChinaDepartment of Engineering Mechanics, Hohai University, Nanjing 210098, ChinaDepartment of Engineering Mechanics, Hohai University, Nanjing 210098, ChinaBased on the model of rigid-spring element suitable for homogeneous elastic problem, which was developed by Japanese professor Kawai, the interface stress element model (ISEM) for solving the problem of discontinuous media mechanics has been established. Compared with the traditional finite element method (FEM), the ISEM is more accurate and applicable. But the total number of freedom degree of ISEM in dealing with three-dimensional problems is higher than that of FEM, which often brings about the reduction on efficiency of calculation. Therefore, it is necessary to establish a mixed model by gathering the advantages of ISEM and FEM together. By making use of the good compatibility of ISEM and introducing the concept of transitional interface element, this paper combines ISEM and FEM and proposes a mixed model of ISEM-FEM which can solve, to a large extent, the contradictions between accuracy and efficiency of calculation. In addition, using natural coordinate, algorithm of ISEM for block elements of arbitrary shape has been performed. Numerical examples show that the method proposed in this paper is feasible and its accuracy is satisfactory.http://dx.doi.org/10.1155/2013/950696
collection DOAJ
language English
format Article
sources DOAJ
author Zhang Qing
Zhuo Jiashou
Xia Xiaozhou
spellingShingle Zhang Qing
Zhuo Jiashou
Xia Xiaozhou
The Partitioned Mixed Model of Finite Element Method and Interface Stress Element Method with Arbitrary Shape of Discrete Block Element
Mathematical Problems in Engineering
author_facet Zhang Qing
Zhuo Jiashou
Xia Xiaozhou
author_sort Zhang Qing
title The Partitioned Mixed Model of Finite Element Method and Interface Stress Element Method with Arbitrary Shape of Discrete Block Element
title_short The Partitioned Mixed Model of Finite Element Method and Interface Stress Element Method with Arbitrary Shape of Discrete Block Element
title_full The Partitioned Mixed Model of Finite Element Method and Interface Stress Element Method with Arbitrary Shape of Discrete Block Element
title_fullStr The Partitioned Mixed Model of Finite Element Method and Interface Stress Element Method with Arbitrary Shape of Discrete Block Element
title_full_unstemmed The Partitioned Mixed Model of Finite Element Method and Interface Stress Element Method with Arbitrary Shape of Discrete Block Element
title_sort partitioned mixed model of finite element method and interface stress element method with arbitrary shape of discrete block element
publisher Hindawi Limited
series Mathematical Problems in Engineering
issn 1024-123X
1563-5147
publishDate 2013-01-01
description Based on the model of rigid-spring element suitable for homogeneous elastic problem, which was developed by Japanese professor Kawai, the interface stress element model (ISEM) for solving the problem of discontinuous media mechanics has been established. Compared with the traditional finite element method (FEM), the ISEM is more accurate and applicable. But the total number of freedom degree of ISEM in dealing with three-dimensional problems is higher than that of FEM, which often brings about the reduction on efficiency of calculation. Therefore, it is necessary to establish a mixed model by gathering the advantages of ISEM and FEM together. By making use of the good compatibility of ISEM and introducing the concept of transitional interface element, this paper combines ISEM and FEM and proposes a mixed model of ISEM-FEM which can solve, to a large extent, the contradictions between accuracy and efficiency of calculation. In addition, using natural coordinate, algorithm of ISEM for block elements of arbitrary shape has been performed. Numerical examples show that the method proposed in this paper is feasible and its accuracy is satisfactory.
url http://dx.doi.org/10.1155/2013/950696
work_keys_str_mv AT zhangqing thepartitionedmixedmodeloffiniteelementmethodandinterfacestresselementmethodwitharbitraryshapeofdiscreteblockelement
AT zhuojiashou thepartitionedmixedmodeloffiniteelementmethodandinterfacestresselementmethodwitharbitraryshapeofdiscreteblockelement
AT xiaxiaozhou thepartitionedmixedmodeloffiniteelementmethodandinterfacestresselementmethodwitharbitraryshapeofdiscreteblockelement
AT zhangqing partitionedmixedmodeloffiniteelementmethodandinterfacestresselementmethodwitharbitraryshapeofdiscreteblockelement
AT zhuojiashou partitionedmixedmodeloffiniteelementmethodandinterfacestresselementmethodwitharbitraryshapeofdiscreteblockelement
AT xiaxiaozhou partitionedmixedmodeloffiniteelementmethodandinterfacestresselementmethodwitharbitraryshapeofdiscreteblockelement
_version_ 1725730941070999552