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Title:Projektiranje 0,5 l tlačnega reaktorja
Authors:Strašek, Jakob (Author)
Glodež, Srečko (Mentor) More about this mentor... New window
Files:.pdf UNI_Strasek_Jakob_2014.pdf (3,82 MB)
 
Language:Slovenian
Work type:Bachelor thesis/paper (mb11)
Typology:2.11 - Undergraduate Thesis
Organization:FS - Faculty of Mechanical Engineering
Abstract:V diplomski nalogi je opisano projektiranje majhnega tlačnega reaktorja, v katerem pod visokim tlakom in temperaturo potekajo kemične reakcije. Njegova majhna izvedba je pri projektiranju zahtevala drugačne konstrukcijske rešitve kot pri večjih tlačnih reaktorjih. V prvem delu naloge je opisana zakonodaja ter nerjaveča jekla, iz katerih so izdelane tlačne komponente. Nato je predstavljena teorija preračuna tlačnih posod. Trdnostni preračun ter konstruiranje je izvedeno po navodilih standarda "AD 2000 Regelwerk". Posamezni analitični izračuni so izvedeni s programom podjetja "Lauterbach verfahrenstechnik GmbH", numerični preračun pa s programom "ABAQUS 6.10". CAD model reaktorja je bil narejen v "PTC Pro ENGINEER Wildfire 4.0". V zadnjem delu so predstavljeni rezultati analitičnega in numeričnega preračuna.
Keywords:tlačni reaktor, tlačna posoda, nerjavno jeklo
Year of publishing:2014
Publisher:[J. Strašek]
Source:Maribor
UDC:621.772-11(043.2)
URN:URN:SI:UM:DK:M83XTP8J
COBISS_ID:18410518 Link is opened in a new window
Views:758
Downloads:173
Metadata:XML RDF-CHPDL DC-XML DC-RDF
Categories:KTFMB - FS
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Secondary language

Language:English
Title:Constructing of 0,5 l pressure reactor
Abstract:pressure reactor, pressure vessel, stainless steel
Keywords:The thesis describes constructing of a small pressure reactor in which chemical reactions occur under high pressure and temperature. Because of the small size of the pressure reactor, different constructing solutions, had to be implemented than with ordinary big pressure reactors. First part describes legislation and materials, used for manufacturing pressure equipment. Next part covers theoretical background for calculating structural integrity of pressure reactor. All calculations for structural integrity comply with "AD 2000 Regelwerk" standard, analytical calculations were done with the application from "Lauterbach verfahrenstechnik GmbH" company. Numerical analysis is done with "ABAQUS 6.10" application. "PTC Pro ENGINEER Wildfire 4.0" program is used for creating CAD model. In conclusion are presented and discussed results.


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