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Three-dimensional land FD-CSEM forward modeling using edge finite-element method 被引量:3
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作者 LIU Jian-xin LIU Peng-mao TONG Xiao-zhong 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第1期131-140,共10页
A modeling tool for simulating three-dimensional land frequency-domain controlled-source electromagnetic surveys,based on a finite-element discretization of the Helmholtz equation for the electric fields,has been deve... A modeling tool for simulating three-dimensional land frequency-domain controlled-source electromagnetic surveys,based on a finite-element discretization of the Helmholtz equation for the electric fields,has been developed.The main difference between our modeling method and those previous works is edge finite-element approach applied to solving the three-dimensional land frequency-domain electromagnetic responses generated by horizontal electric dipole source.Firstly,the edge finite-element equation is formulated through the Galerkin method based on Helmholtz equation of the electric fields.Secondly,in order to check the validity of the modeling code,the numerical results are compared with the analytical solutions for a homogeneous half-space model.Finally,other three models are simulated with three-dimensional electromagnetic responses.The results indicate that the method can be applied for solving three-dimensional electromagnetic responses.The algorithm has been demonstrated,which can be effective to modeling the complex geo-electrical structures.This efficient algorithm will help to study the distribution laws of3-D land frequency-domain controlled-source electromagnetic responses and to setup basis for research of three-dimensional inversion. 展开更多
关键词 three-dimensional model frequency-domain electromagnetic method horizontal electric dipole forward modeling edge finite-element
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无条件稳定FETD方法中亚网格技术的研究 被引量:1
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作者 王祎心 魏兵 +2 位作者 范凯航 李益文 魏小龙 《电子学报》 EI CAS CSCD 北大核心 2022年第11期2799-2805,共7页
本文在时域有限元(Finite-Element Time-Domain,FETD)方法中实现了一种新型亚网格技术,并通过空间滤模(Spatial Modes Filtering,SMF)发展为无条件稳定亚网格FETD(Subgridding SMF-FETD,SSMF-FETD)方法.本文给出了FETD中亚网格技术的具... 本文在时域有限元(Finite-Element Time-Domain,FETD)方法中实现了一种新型亚网格技术,并通过空间滤模(Spatial Modes Filtering,SMF)发展为无条件稳定亚网格FETD(Subgridding SMF-FETD,SSMF-FETD)方法.本文给出了FETD中亚网格技术的具体实施方案,包括粗细网格交界处粗网格棱边的编号方案、系统矩阵的建立过程以及亚网格FETD(Subgridding FETD,S-FETD)方法的系统迭代方案.亚网格技术的引入在一定程度上会破坏系统矩阵的稀疏度,但基于有限元框架下建立的系统矩阵依然保持对称正定或半正定特性.因此,可以直接将SMF方法应用到S-FETD方法中.通过广义特征值分解获得S-FETD系统矩阵的不稳定模式,并修改其矩阵方程,进而得到SSMF-FETD方法.S-FETD方法能够有效减少未知量数目,在此基础上数值结果表明,SSMF-FETD可以有效扩大时间步长并保持结果准确,从而进一步提升计算效率.在面对含有复杂精细结构的问题时,所提方法具有较高的有效性和准确性. 展开更多
关键词 时域有限元(finite-element Time-Domain FETD) 无条件稳定 特征值 特征模式 亚网格技术 空间滤模
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Petrel2ANSYS: Accessible software for simulation of crustal stress fields using constraints provided by multiple 3D models employing different types of grids 被引量:7
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作者 LIU Yu-yang PAN Mao LIU Shi-qi 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第9期2447-2463,共17页
Crustal stresses play an important role in both exploration and development in the oil and gas industry.However,it is difficult to simulate crustal stress distributions accurately,because of the incompatibilities that... Crustal stresses play an important role in both exploration and development in the oil and gas industry.However,it is difficult to simulate crustal stress distributions accurately,because of the incompatibilities that exist among different software.Here,a series of algorithms is developed and integrated in the Petrel2ANSYS to carry out two-way conversions between the 3D attribute models that employ corner-point grids used in Petrel and the 3D finite-element grids used in ANSYS.Furthermore,a modified method of simulating stress characteristics and analyzing stress fields using the finite-element method and multiple finely resolved 3D models is proposed.Compared to the traditional finite-element simulation-based approach,which involves describing the heterogeneous within a rock body or sedimentary facies in detail and simulating the stress distribution,the single grid cell-based approach focuses on a greater degree on combining the rock mechanics described by 3D corner-point grid models with the finely resolved material characteristics of 3D finite-element models.Different models that use structured and unstructured grids are verified in Petrel2ANSYS to assess the feasibility.In addition,with minor modifications,platforms based on the present algorithms can be extended to other models to convert corner-point grids to the finite-element grids constructed by other software. 展开更多
关键词 numerical simulation of stress fields corner-point grids finite-element grids PETREL ANSYS
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Seismic response analysis of GRPS embankment under oblique incident P wave 被引量:1
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作者 郜新军 钱辉 +1 位作者 郭院成 王非 《Journal of Central South University》 SCIE EI CAS CSCD 2016年第3期721-728,共8页
In order to investigate the seismic performance of geosynthetic reinforced and pile supported(GRPS) embankment under seismic loads, an input method for three-dimensional oblique incidence of P wave was proposed. This ... In order to investigate the seismic performance of geosynthetic reinforced and pile supported(GRPS) embankment under seismic loads, an input method for three-dimensional oblique incidence of P wave was proposed. This method is based on the explicit finite element method while considering the viscous-spring artificial boundary(VSAB) condition. Using the proposed method, a numerical study was conducted, and the influence of oblique incidence on the seismic response of GRPS embankment under the oblique incident P waves was analyzed. The results indicate that in comparison with vertical incidence, the oblique incidence can significantly increase the displacement, velocity and acceleration of key locations in the GRPS embankment. The existence of geosynthetics can alleviate the impact of seismic load on the response of the embankment to a certain degree. Moreover, the number of reinforcement layers and modulus of geogrid also greatly influence the seismic performance of GRPS embankment. 展开更多
关键词 geosynthetic reinforced and pile supported embankment oblique incident waves explicit finite-element model seismicresponse
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Natural frequency of tapered high pier considering pile-soil interaction
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作者 赵明华 杨晶 杨明辉 《Journal of Central South University》 SCIE EI CAS 2010年第3期635-641,共7页
In seismic design of tapered high pier, the analysis of natural vibration frequency is of great importance. According to the engineering features of tapered high pier in mountainous area, a vibration calculation model... In seismic design of tapered high pier, the analysis of natural vibration frequency is of great importance. According to the engineering features of tapered high pier in mountainous area, a vibration calculation model was set up considering the tapered pier characteristics and pile-soil interaction. Based on Southwell frequency composition theory, it consists of elastic deformation of bridge pier and the rigid deformation of group piles, which are respectively solved by the finite-element method and energy method, and then the natural frequency is derived. The comparison between the measured and calculated results shows that the calculation errors with and without considering pile-soil interaction are 4.9% and 14.7%, respectively. Additionally, the main parameters (pier height, section variation coefficient and lateral foundation horizontal proportional coefficient) affecting natural frequency were investigated. The result shows that natural frequency ascends with the increase of the lateral foundation horizontal proportional coefficient; and it is quite necessary to consider the pile-soil interaction in natural frequency calculation of tapered high pier. 展开更多
关键词 tapered pier natural frequency energy method finite-element method Southwell frequency composition theory
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