Large out-of-core tetrahedral meshing

被引:6
|
作者
Alleaume, Aurelien [1 ]
Francez, Laurent [1 ]
Loriot, Alark [1 ]
Maman, Nathan [1 ]
机构
[1] Distene SAS, Pole Teratec Bard 1, Domaine Grand Rue, F-91680 Bruyeres Le Chatel, France
关键词
D O I
10.1007/978-3-540-75103-8_26
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We present an effective strongly uncoupled method, which, given a closed and watertight surface mesh, generates its Delaunay constrained tetrahedrisation into sub-domains. Uncoupled means here that once chosen, a sub-domain interface will riot be changed anymore. This method aims at preserving in the final tetrahedral mesh the properties of the mesh which would have been produced by the original sequential algorithm, namely the constrained input surface mesh and the quality and properties of the volume mesh. To achieve these objectives, our method reorders internal vertices insertion (applying the sequential constrained Delaunay kernel) such that the data can then be fully decoupled in sub-domains without introducing more constraints. Moreover, the interfaces are carefully chosen such that the load is roughly the same in all parts, and such that the interfaces separating the sub-domains are "invisible" in the final mesh. Successfully applied to out-of-core large scale mesh generation, this method allowed us to generate in double precision a 210 million tet mesh on a 4GB core memory single processor machine, and a 680 million tet mesh for a very complex geometry.
引用
收藏
页码:461 / +
页数:2
相关论文
共 50 条
  • [21] An efficient method for very large scale out-of-core terrain visualization
    Zhang, Huijie
    Sun, Jigui
    Yu, Haihong
    Qi, Changsong
    ICAT 2006: 16TH INTERNATIONAL CONFERENCE ON ARTIFICIAL REALITY AND TELEXISTENCE - WORSHOPS, PROCEEDINGS, 2006, : 36 - 41
  • [22] The Art of Parallelization In Solving Large Electromagnetic Field Problems Out-Of-Core
    Zhang, Y.
    Moon, H.
    Garcia Donoro, D.
    Sarkar, T. K.
    Salazar-Palma, M.
    Ting, S. W.
    2014 IEEE INTERNATIONAL WIRELESS SYMPOSIUM (IWS), 2014,
  • [23] Out-of-core segmentation by deformable models
    Giraldi, G
    Schaefer, L
    Farias, R
    Silva, R
    FUZZY LOGIC AND APPLICATIONS, 2006, 2955 : 216 - 223
  • [24] Amy files for out-of-core computations
    Zhang, Y
    Apon, A
    Pulay, P
    PDPTA'03: PROCEEDINGS OF THE INTERNATIONAL CONFERENCE ON PARALLEL AND DISTRIBUTED PROCESSING TECHNIQUES AND APPLICATIONS, VOLS 1-4, 2003, : 191 - 197
  • [25] Interactive out-of-core isosurface extraction
    Chiang, YJ
    Silva, CT
    Schroeder, WJ
    VISUALIZATION '98, PROCEEDINGS, 1998, : 167 - +
  • [26] Efficient Out-of-Core Contig Generation
    Prieto Entenza, Julio Omar
    Haeusler, Edward Hermann
    Lifschitz, Sergio
    ADVANCES IN BIOINFORMATICS AND COMPUTATIONAL BIOLOGY, BSB 2020, 2020, 12558 : 25 - 37
  • [27] An Out-of-Core Sparse Cholesky Solver
    Reid, John K.
    Scott, Jennifer A.
    ACM TRANSACTIONS ON MATHEMATICAL SOFTWARE, 2009, 36 (02):
  • [28] An out-of-core volume rendering architecture
    Amorim, Paulo H. J.
    de Moraes, Thiago F.
    da Silva, Jorge V. L.
    Pedrini, Helio
    COMPUTATIONAL VISION AND MEDICAL IMAGE PROCESSING IV, 2014, : 173 - 179
  • [29] Scalable out-of-core itemset mining
    Baralis, Elena
    Cerquitelli, Tania
    Chiusano, Silvia
    Grand, Alberto
    INFORMATION SCIENCES, 2015, 293 : 146 - 162
  • [30] Improving the performance of out-of-core computations
    Kandemir, M
    Ramanujam, J
    Choudhary, A
    PROCEEDINGS OF THE 1997 INTERNATIONAL CONFERENCE ON PARALLEL PROCESSING, 1997, : 128 - 136