Experimental methods in chemical engineering: Process simulation

被引:15
作者
De Tommaso, Jacopo [1 ]
Rossi, Francesco [2 ]
Moradi, Nooshin [3 ]
Pirola, Carlo [4 ]
Patience, Gregory S. [1 ]
Galli, Federico [1 ]
机构
[1] Polytech Montreal, Chem Engn, CP 6079, Montreal, PQ H3C 3A7, Canada
[2] Purdue Univ, Davidson Sch Chem Engn, Forney Hall Chem Engn, Sch Chem Engn, W Lafayette, IN 47907 USA
[3] Shiraz Univ, Sch Chem & Petr Engn, Shiraz, Iran
[4] Univ Milan, Dipartimento Chim, Milan, Italy
关键词
cost estimation; design; optimization; process simulation; thermodynamics; INTENSIFICATION EDUCATION CONTRIBUTES; HEAT-EXCHANGER NETWORKS; VAPOR-LIQUID-EQUILIBRIA; DYNAMIC SIMULATION; P-XYLENE; DESIGN; DISTILLATION; SEPARATION; ENERGY; MULTICOMPONENT;
D O I
10.1002/cjce.23857
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Process simulation software designs equipment, simulates operations, optimizes a plant's configuration (heat exchangers network, for example), estimates operating and capital expenses, and serves as an educational tool. However, mastering the theoretical background minimizes common mistakes such as applying an incorrect thermodynamic method, selecting improper algorithms in the case of tear systems, and setting irrational system specifications. Engineers and researchers will exploit this tool more often in the future as constant advancements in simulation science as well as new models are released continually. Process simulators make it easier to build digital twins and thus will facilitate the implementation of the industry 4.0 guidelines. We highlight the mathematical and technical features of process simulators, as well as the capabilities and the fields of application. A bibliometric map of keywords from articles citing Aspen+, Aspen plus, Hysys, and Pro/II indexed byWeb of Sciencebetween 2017 and 2020 identified the main research clusters, such as design, optimization, energy or exergy, biomass; H(2)and CO(2)capture, thermodynamics; and separations and techno-economic analysis.
引用
收藏
页码:2301 / 2320
页数:20
相关论文
共 121 条
[91]  
Rosen E., 1980, ACS PUBLICATIONS, DOI [10.1021/bk-1980-0124, DOI 10.1021/BK-1980-0124]
[92]   A MODIFIED INSIDE-OUT ALGORITHM FOR SIMULATION OF MULTISTAGE MULTICOMPONENT SEPARATION PROCESSES USING THE UNIFAC GROUP-CONTRIBUTION METHOD [J].
SAEGER, RB ;
BISHNOI, PR .
CANADIAN JOURNAL OF CHEMICAL ENGINEERING, 1986, 64 (05) :759-767
[93]   Experimental and simulation study of copper recovery process from copper oxide ore using aspen plus software: Optimization and sensitivity analysis of effective parameters [J].
Saidi, Majid ;
Kadkhodayan, Hossein .
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING, 2020, 8 (03)
[94]   Benchmarking of olefin plant cold-end for shaft work consumption, using process integration concepts [J].
Sardarmehni, Mojtaba ;
Tahouni, Nassim ;
Panjeshahi, M. Hassan .
ENERGY, 2017, 127 :623-633
[95]  
Seider W.D., 2009, Product & process design principles: Synthesis, analysis and evaluation, V3rd
[96]   An improved multi-objective differential evolution with a termination criterion for optimizing chemical processes [J].
Sharma, Shivom ;
Rangaiah, Gade Pandu .
COMPUTERS & CHEMICAL ENGINEERING, 2013, 56 :155-173
[97]   A simulation and experimental study on primary cooler for COG heat pump [J].
Shen, Yijun ;
Tang, Zhigang ;
Guo, Dong ;
Wu, Cuiping ;
Wang, Dengfu ;
Jiang, Aiguo ;
Wen, Yanming .
APPLIED THERMAL ENGINEERING, 2019, 160
[98]  
Sinnott R., 2019, Chemical engineering design
[99]   A branch-and-cut method for 0-1 mixed convex programming [J].
Stubbs, RA ;
Mehrotra, S .
MATHEMATICAL PROGRAMMING, 1999, 86 (03) :515-532
[100]   The use of graphical pinch analysis for visualizing water footprint constraints in biofuel production [J].
Tan, Raymond R. ;
Foo, Dominic Chwan Yee ;
Aviso, Kathleen B. ;
Ng, Denny Kok Sum .
APPLIED ENERGY, 2009, 86 (05) :605-609