Core models, coordinators, and connectors in the dynamic modeling and simulation of multiphase systems

被引:2
|
作者
Rinard, IH
机构
关键词
dynamic modeling; dynamic simulation; multiphase systems; core models; coal gasifier;
D O I
10.1016/0098-1354(96)00169-X
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The dynamic modeling and simulation of large-scale multiphase systems can be very time-consuming given the large number of equipment models that may be required. An approach is presented in which complex equipment models involving two or more phases are assembled by combining core models for each of the individual phases through the use of a coordinator. The main function of a coordinator is to determine the fraction of the total volume occupied by each phase. Connectors are used to handle such tasks as the transfer of mass and energy between the phases as well as heterogeneous kinetics. The efficacy of this approach is demonstrated for three types of equipment: liquid-liquid mixers, multi-fluid heat exchangers, and a fluidized-bed coal gasifier. The work to date indicates that a large variety of equipment models can be constructed from a relatively small set of core models and connectors.
引用
收藏
页码:S969 / S974
页数:6
相关论文
共 50 条
  • [41] Linguistic dynamic systems and computing with words for modeling, simulation, and analysis of complex systems
    Wang, FY
    Lin, Y
    Pu, JB
    DISCRETE EVENT MODELING AND SIMULATION TECHNOLOGIES: A TAPESTRY OF SYSTEMS AND AI-BASED THEORIES AND METHODOLOGIES, 2001, : 75 - 92
  • [42] Modeling of Protection in Dynamic Simulation Using Generic Relay Models and Settings
    Samaan, N. A.
    Dagle, J. E.
    Makarov, Y. V.
    Diao, R.
    Vallem, M. R.
    Nguyen, T. B.
    Miller, L. E.
    Vyakaranam, B. G.
    Tuffner, F. K.
    Pai, M. A.
    Conto, Jose
    Kang, Sun Wook
    2016 IEEE POWER AND ENERGY SOCIETY GENERAL MEETING (PESGM), 2016,
  • [43] ANALYSIS OF BUSINESS PROCESS DYNAMIC MODELS FOR DEVELOPMENT OF SIMULATION MODELING SERVICE
    Aksyonov, Konstantin
    Bykov, Eugene
    Kamelsky, V.
    Aksyonova, Olga
    EUROPEAN SIMULATION AND MODELLING CONFERENCE 2012, 2012, : 227 - 230
  • [44] Molecular simulation approaches for multiphase polymer systems
    Jo, Won Ho
    Yang, Jae Shick
    Advances in Polymer Science, 2002, 156 : 1 - 51
  • [45] Molecular simulation approaches for multiphase polymer systems
    Jo, WH
    Yang, JS
    MOLECULAR SIMULATION FRACTURE GEL THEORY, 2002, 156 : 1 - 51
  • [46] Simulation of intrinsic diffusion in multicomponent multiphase systems
    Hunkel, M
    Bergner, D
    DIFFUSION MECHANISMS IN CRYSTALLINE MATERIALS, 1998, 527 : 93 - 98
  • [47] COMPUTER-SIMULATION OF DIFFUSION IN MULTIPHASE SYSTEMS
    ENGSTROM, A
    HOGLUND, L
    AGREN, J
    METALLURGICAL AND MATERIALS TRANSACTIONS A-PHYSICAL METALLURGY AND MATERIALS SCIENCE, 1994, 25 (06): : 1127 - 1134
  • [48] MULTIPHASE EFFECTS IN DYNAMIC SYSTEMS UNDER VIBRATION
    O'Hern, Timothy J.
    Torczynski, John R.
    Clausen, Jonathan R.
    PROCEEDINGS OF THE ASME FLUIDS ENGINEERING DIVISION SUMMER MEETING, 2016, VOL 1B, 2016,
  • [49] A general dynamic model for multiphase electrolytic systems
    Coussine, C.
    Serin, J. -P.
    Cezac, P.
    Contamine, F.
    Reneaume, J. -M.
    Coussine, C.
    Dubourg, K.
    Knorst, A.
    Cambar, J.
    AICHE JOURNAL, 2012, 58 (12) : 3832 - 3840
  • [50] MODELING AND SIMULATION OF THE CAVITATION PHENOMENON IN A TURBOPUMP: A MULTIPHASE APPROACH
    Caze, Joris
    Petitpas, Fabien
    Daniel, Eric
    Le Martelot, Sebastien
    Queguineur, Matthieu
    PROCEEDINGS OF ASME TURBO EXPO 2022: TURBOMACHINERY TECHNICAL CONFERENCE AND EXPOSITION, GT2022, VOL 10C, 2022,