Implementation of a Grid-enabled problem solving environment in Matlab

被引:0
|
作者
Eres, H [1 ]
Pound, G [1 ]
Jiao, ZA [1 ]
Wason, J [1 ]
Xu, FL [1 ]
Keane, A [1 ]
Cox, S [1 ]
机构
[1] Univ Southampton, Sch Engn Sci, Southampton SO17 1BJ, Hants, England
关键词
D O I
暂无
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
In many areas of design search and optimisation one needs to utilize Computational Fluid Dynamics (CFD) methods in order to obtain numerical solution of the flow field in and/or around a proposed design. From this solution measures of quality for the design may be calculated, which are required by optimisation methods. In large models the processing time for the CFD computations can very well be many orders of magnitude larger than the optimisation methods; and the overall optimisation process usually demands a combination of computational and database resources; therefore this class of problems is well suited to Grid computing. The Geodise toolkit is a suite of tools for Grid-enabled parametric geometry generation, meshing, CFD analysis, design optimisation and search, database, and notification tools within the Matlab environment. These grid services are presented to the design engineer as Matlab functions that conform to the usual syntax of Matlab. The use of the Geodise toolkit in Matlab introduces a flexible and Grid-enabled problem solving environment (PSE) for design search and optimisation. This PSE is illustrated here with an exemplar problem.
引用
收藏
页码:420 / 429
页数:10
相关论文
共 50 条
  • [41] An architecture for Grid-enabled distributed simulation
    Jiang, Ming
    Theodoropoulos, Georgios
    Anane, Rachid
    International Journal of High Performance Computing and Networking, 2009, 6 (01) : 47 - 55
  • [42] Observations in using Grid-enabled technologies for solving multi-objective optimization problems
    Luna, F.
    Nebro, A. J.
    Alba, E.
    PARALLEL COMPUTING, 2006, 32 (5-6) : 377 - 393
  • [43] Monitoring grid applications with grid-enabled OMIS monitor
    Balis, B
    Bubak, M
    Funika, W
    Szepieniec, T
    Wismüller, R
    Radecki, M
    GRID COMPUTING, 2004, 2970 : 230 - 239
  • [44] DIANE - Distributed Analysis Environment for GRID-enabled simulation and analysis of physics data
    Moscicki, JT
    2003 IEEE NUCLEAR SCIENCE SYMPOSIUM, CONFERENCE RECORD, VOLS 1-5, 2004, : 1617 - 1620
  • [45] 3D anatomical model visualization within a grid-enabled environment
    Grimstead, Ian J.
    Walker, David W.
    Avis, Nick J.
    Kleinermann, Frederic
    McClure, John
    COMPUTING IN SCIENCE & ENGINEERING, 2007, 9 (05) : 32 - 38
  • [46] XG: A grid-enabled query processing engine
    Sion, Radu
    Natarajan, Ramesh
    Narang, Inderpal
    Phan, Thomas
    ADVANCES IN DATABASE TECHNOLOGY - EDBT 2006, 2006, 3896 : 1115 - 1120
  • [47] A grid-enabled architecture for geospatial data sharing
    Shu, Yanfeng
    Zhang, Jack Fan
    Zhou, Xiaofang
    APSCC: 2006 IEEE ASIA-PACIFIC CONFERENCE ON SERVICES COMPUTING, PROCEEDINGS, 2006, : 369 - +
  • [48] Architecture of a grid-enabled Web search engine
    Cambazoglu, B. Barla
    Karaca, Evren
    Kucukyilmaz, Tayfun
    Turk, Ata
    Aykanat, Cevdet
    INFORMATION PROCESSING & MANAGEMENT, 2007, 43 (03) : 609 - 623
  • [49] Grid-Enabled BLASTZ: Application to Comparative Genomics
    Chunxi Chen
    Jagath C. Rajapakse
    The Journal of VLSI Signal Processing Systems for Signal, Image, and Video Technology, 2007, 48 : 301 - 309
  • [50] Grid-enabled metropolis shared research platform
    Chen, Y
    Wang, YQ
    Zhu, YY
    ADVANCED WEB AND NETWORK TECHNOLOGIES, AND APPLICATIONS, PROCEEDINGS, 2006, 3842 : 477 - 485