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Abstrakty
Stress analysis of a chemical reactor head was computationally simulated by a finite element method and probabilistically evaluated in view of several uncertainties in the performance parameters. Cumulative distribution functions and sensitivity factors were computed for overall heat transfer rate due to the structural and thermodynamic random variables. These results can be used to quickly identify the most critical design variables in order to optimize the design and make it cost effective. The analysis leads to the selection of appropriate measurements to be used in structural and heat transfer analysis and to the identification of both the most critical measurements and parameters.
Rocznik
Tom
Strony
589--595
Opis fizyczny
Bibliogr. 6 poz., tab., wykr.
Twórcy
autor
autor
- Department of Mechanical Engineering Cleveland State University Cleveland, OH 44115 U.S.A., r.gorla@yahoo.com
Bibliografia
- Allaire P.E. (1985): Basics of The Finite Element Method. - W.C. Brown Publishers, Dubuque, IA.
- Preiss R. (1999): On the shakedown analysis of Nozzles using elasto-plastic FEA. - Int. J Pressure Vessel and Piping, vol.76, pp.421-434.
- Preiss R. (2000): Design by analysis of a chemical reactor's head under sustained and thermal loads. - Int. J. Pressure Vessel and Piping, vol.77, pp.277-288.
- Taylor N. (2000): Design by Analysis Manual: EUR 19020 EN.
- Zeman J.L. (1997): Some aspects of the work of the european working groups relating to basic pressure vessel design. - Int. J. Pressure Vessel and Piping, vol.70, pp.3-10.
- Zeman J.L. (2000): Design by analysis in CEN's unfired pressure vessel standard. - Proc. ICPVT-9, Sydney, vol.1, pp.419-428.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ5-0017-0020