By Jacek Jezowski, Jan Thullie
The nineteenth eu Symposium on laptop Aided procedure Engineering includes papers provided on the nineteenth ecu Symposium of desktop Aided strategy Engineering (ESCAPE 19) held in Cracow, Poland, June 14-17, 2009.The break out sequence serves as a discussion board for scientists and engineers from academia and to debate development accomplished within the sector of CAPE. * CD-ROM that accompanies the publication comprises all study papers and contributions * foreign in scope with visitor speeches and keynote talks from leaders in technological know-how and * provides papers overlaying the most recent examine, key most sensible parts and advancements in laptop aided procedure engineering (CAPE)
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Extra resources for 19 European Symposium on Computer Aided Process Engineering
MINLP Dyn. 2. Description of the MIPSYN synthesizer Figure 1 shows the flowchart of the synthesizer. Different methods and related components are integrated in this synthesizer's equation-oriented modular environment: i) GAMS with a variety of different NLP and MILP solvers ii) different versions of the OA algorithms, including the modified OA/ER algorithm and a new logic-based OA/ER algorithm, which are supervised by MIPSYN command files, iii) a simple simulator as initializer which is used to provide NLP subproblems feasible or near-feasible starting points, iv) a library of process unit and interconnected nodes models, different simultaneous models for heat integration, mass integration, and a physical property database for the most common chemical component, and v) a hybrid modelling environment with a link to external FORTRAN routines through procedures for solving the implicit part of synthesis models.
Klanšek and S. Kravanja, 2008, Cost optimization of composite I beam floor system. Am. j. appl. sci. vol. 5(1), pp. 7-17 S. Kravanja, 2003, Optimization of the Sultartangi sliding gates in Iceland, The International Journal on Hydropower & Dams, vol. 9(2), pp. 42-45 S. Kravanja, A. Soršak and Z. Kravanja, 2003, Efficient multilevel MINLP strategies for solving large combinatorial problems in engineering. Optimization and engineering, vol. 4, pp. 97-1 S. Kravanja, S. Šilih and Z. Kravanja, 2005, The multilevel MINLP optimization approach to structural synthesis: the simultaneous topology, material, standard and rounded dimension optimization, Adv.
Undesirable effects of noncovexities are twofold: at the level of NLP subproblems the optimizations can get stuck at poor local optima while at the level of MILP master problems part of the feasible region and, hence the global optimum can be cut off. In order to reduce the effects of the nonconvexities involved at NLP subproblems, global NLP solvers like GAMS/OQNLP can be employed, while at the level of the master problem, various structured modifications, rooted in logic-based disjunctive model formulations and non-structured modifications can be applied in MIPSYN.