A COMPUTATIONAL WORKBENCH ENVIRONMENT FOR VIRTUAL POWER PLANT SIMULATION | |
Bockelie, Mike ; Swensen, Dave ; Denison, Martin ; Senior, Connie ; Chen, Zumao ; Linjewile, Temi ; Sarofim, Adel ; Risio, Bene | |
Reaction Engineering International (United States) | |
关键词: 30 Direct Energy Conversion; Membranes; Recommendations; 01 Coal, Lignite, And Peat; Gasification; | |
DOI : 10.2172/820429 RP-ID : NONE RP-ID : FC26-00NT41047 RP-ID : 820429 |
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美国|英语 | |
来源: UNT Digital Library | |
【 摘 要 】
This is the tenth Quarterly Technical Report for DOE Cooperative Agreement No: DE-FC26-00NT41047. The goal of the project is to develop and demonstrate a computational workbench for simulating the performance of Vision 21 Power Plant Systems. Within the last quarter, good progress has been made on all aspects of the project. Calculations for a full Vision 21 plant configuration have been performed for two gasifier types. An improved process model for simulating entrained flow gasifiers has been implemented into the workbench. Model development has focused on: a pre-processor module to compute global gasification parameters from standard fuel properties and intrinsic rate information; a membrane based water gas shift; and reactors to oxidize fuel cell exhaust gas. The data visualization capabilities of the workbench have been extended by implementing the VTK visualization software that supports advanced visualization methods, including inexpensive Virtual Reality techniques. The ease-of-use, functionality and plug-and-play features of the workbench were highlighted through demonstrations of the workbench at a DOE sponsored coal utilization conference. A white paper has been completed that contains recommendations on the use of component architectures, model interface protocols and software frameworks for developing a Vision 21 plant simulator.
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