Co-simulation in hydromet process design

被引:0
|
作者
Oshinowo, L [1 ]
Fok, I [1 ]
机构
[1] Hatch Associates Ltd, Mississauga, ON L5K 2R7, Canada
关键词
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Computational Fluid Dynamics (CFD) is used in conjunction with process modelling at HATCH to achieve a superior level of confidence in the process design of hydrometallurgical process plants. The use of these tools to evaluate designs through virtual prototyping reduces the risks associated with making design decisions. This paper highlights the development of a co-simulation strategy at Hatch for the seamless integration of process modeling software addressing different scales (process time and space): flowsheet level models and equipment level models. With co-simulation, the process design engineers can improve design accuracy, troubleshoot and optimize performance and influence decisions impacting equipment operation by representing specific unit operations in the flowsheet model software with detailed CFD models. Specifically, this paper will focus on the co-simulation of a Ni/Co high-pressure acid leach (HPAL) process including heaters/heat exchangers and flash system, autoclave and quench/scrubber system. The knowledge developed can be transferable to other processes.
引用
收藏
页码:335 / 344
页数:10
相关论文
共 50 条
  • [1] A Categorical Model of Process Co-Simulation
    Craciunean, Daniel-Cristian
    Karagiannis, Dimitris
    INTERNATIONAL JOURNAL OF ADVANCED COMPUTER SCIENCE AND APPLICATIONS, 2019, 10 (03) : 430 - 438
  • [2] Process/equipment co-simulation for design and analysis of advanced energy systems
    Zitney, Stephen E.
    COMPUTERS & CHEMICAL ENGINEERING, 2010, 34 (09) : 1532 - 1542
  • [3] Effective heterogenous design and co-simulation
    Chang, WT
    Kalavade, A
    Lee, EA
    HARDWARE/SOFTWARE CO-DESIGN, 1996, 310 : 187 - 212
  • [4] Co-simulation of Socio-Technical Energy Systems: An Interdisciplinary Design Process
    Adelt, Fabian
    Barsanti, Matteo
    Hoffmann, Sebastian
    Sen Sarma, Debopama
    Schwarz, Jan Soren
    Vermeulen, Ben
    Warendorf, Tom
    Binder, Claudia
    Droste-Franke, Bert
    Lehnhoff, Sebastian
    Myrzik, Johanna
    Rehtanz, Christian
    Weyer, Johannes
    ADVANCES IN SOCIAL SIMULATION, ESSA 2022, 2023, : 477 - 488
  • [5] Architecture of a Distributed Process Co-simulation Framework
    Wack, Thorsten
    Schroeder, Andreas
    Yildiz, Evren
    CHEMIE INGENIEUR TECHNIK, 2020, 92 (10) : 1618 - 1625
  • [6] Design and Co-simulation for Tomato Harvesting Robots
    Wang Jun
    Zhou Zhou
    Du XiaoDong
    PROCEEDINGS OF THE 31ST CHINESE CONTROL CONFERENCE, 2012, : 5105 - 5108
  • [7] Wireless control system design and co-simulation
    Bjorkbom, Mikael
    Nethi, Shekar
    Eriksson, Lasse M.
    Jantti, Riku
    CONTROL ENGINEERING PRACTICE, 2011, 19 (09) : 1075 - 1086
  • [8] The co-simulation technology for complex product design
    Xiong, GL
    Chen, XB
    Guo, B
    SYSTEM SIMULATION AND SCIENTIFIC COMPUTING (SHANGHAI), VOLS I AND II, 2002, : 75 - 80
  • [9] Development of a Co-Simulation Process Chain and its Integration into the process
    Bauer, Stefan
    Stueber, Nico
    MeIler, Frank
    Gruber, Karl
    SIM-VEC: BERECHNUNG, SIMULATION UND ERPROBUNG IM FAHRZEUGBAU 2012, 2012, 2169 : 609 - 616
  • [10] The Design and Implementation of Spacecraft Co-simulation Platform
    Yin, Hang
    Gao, Yong Ming
    Wang, Chao
    Li, Xin Xing
    MANUFACTURING ENGINEERING AND AUTOMATION II, PTS 1-3, 2012, 591-593 : 174 - +