European Symposium on Computer Aided Process Engineering - 13: 36th European Symposium of the Working Party on Computer Aided Process EngineeringElsevier, 2003. gada 7. maijs - 1174 lappuses This book contains papers presented at the 13th European Symposium on Computer Aided Process Engineering (ESCAPE-13). The ESCAPE symposia bring together scientists, students and engineers from academia and industry, who are active in the research and application of Computer Aided Process Engineering. The objective of ESCAPE-13 is to promote CAPE applications into new businesses and technologies by highlighting the use of computers and information technology tools in five specific areas: process design; process control and dynamics; modeling, simulation and optimization; applications in pulp and paper industry; and applications in biotechnology. Includes 190 papers selected from 391 submitted abstracts. All papers have been reviewed by 33 members of the international scientific community. |
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European Symposium on Computer Aided Process Engineering--13: 36th European ... Andrzej Kraslawski,Ilkka Turunen Priekšskatījums nav pieejams - 2003 |
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2003 Elsevier Science Aided Process Engineering algorithm analysis application approach azeotrope B.V. All rights batch batch distillation bubble calculated catalyst Chem Chemical Engineering coefficient component Computer Aided Process concentration configuration constraints cost developed distillation column dynamic Elsevier Science B.V. energy environmental equations equilibrium European Symposium experimental feed Figure flow rate flowrate flowsheet genetic algorithm HAZOP heteroazeotropic input integration interface interval arithmetic Kalman filter kinetic Kraslawski linear liquid mass mass transfer matrix methanol method MINLP mixture model predictive control module nonlinear objective function obtained ontologies operation optimisation optimization parameters performance Petlyuk phase plant polymer polymerization prediction pressure problem process design process models properties proposed reaction reactive distillation reactor reduced reflux rights reserved separation simulation solution solved specific step stream structure Symposium on Computer synthesis tank temperature thermodynamic tool Turunen Editors unit values variables vector
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448. lappuse - No. 98-0102-06-01-3 from the Basic Research Program of the Korea Science & Engineering Foundation. REFERENCES 1. RG Menendez and JE Bernard, "Flight Simulation in Synthetic Environments," IEEE Proceedings of the Digital Avionics Systems Conferences, vol.
287. lappuse - Engineering - National University of Singapore 10 Kent Ridge Crescent...
486. lappuse - GAs operate on a population of potential solutions applying the principle of survival of the fittest to produce (hopefully) better and better approximations to a solution. At each generation, a new set of approximations is created by the process of selecting individuals according to their level of fitness in the problem domain and breeding them together using operators borrowed from natural genetics. This process leads to the evolution of populations of individuals that are better suited to their...
36. lappuse - GA comprises a set of individual elements (the population) and a set of biologically inspired operators defined over the population itself.
465. lappuse - The process has five major units: the reactor, the product condenser, a vapor/liquid separator, a recycle compressor, and a product stripper. The gaseous reactants are fed to the reactor where they react to form liquid products. The gas phase reactions are catalyzed by a non-volatile catalyst dissolved in the liquid phase The reactor has an internal cooling bundle for removing the heat of reaction. The products leave the...
275. lappuse - Department of Chemical Technology, Lappeenranta University of Technology, PO Box 20, FIN-53851 Lappeenranta, Finland. *E-mail...
101. lappuse - Department of Chemical Engineering, Technical University of Denmark, DK-2800 Lyngby, Denmark Abstract...
71. lappuse - Centre for Process Systems Engineering, Department of Chemical Engineering, Imperial College London SW7 2BY, UK Abstract.