Your browser does not allow JavaScript!
JavaScript is necessary for the proper functioning of this website. Please enable JavaScript or use a modern browser.
|
|
SLO
|
ENG
|
Cookies and privacy
DKUM
EPF - Faculty of Business and Economics
FE - Faculty of Energy Technology
FERI - Faculty of Electrical Engineering and Computer Science
FF - Faculty of Arts
FGPA - Faculty of Civil Engineering, Transportation Engineering and Architecture
FKBV - Faculty of Agriculture and Life Sciences
FKKT - Faculty of Chemistry and Chemical Engineering
FL - Faculty of Logistic
FNM - Faculty of Natural Sciences and Mathematics
FOV - Faculty of Organizational Sciences in Kranj
FS - Faculty of Mechanical Engineering
FT - Faculty of Tourism
FVV - Faculty of Criminal Justice and Security
FZV - Faculty of Health Sciences
MF - Faculty of Medicine
PEF - Faculty of Education
PF - Faculty of Law
UKM - University of Maribor Library
UM - University of Maribor
UZUM - University of Maribor Press
COBISS
Faculty of Business and Economic, Maribor
Faculty of Agriculture and Life Sciences, Maribor
Faculty of Logistics, Celje, Krško
Faculty of Organizational Sciences, Kranj
Faculty of Criminal Justice and Security, Ljubljana
Faculty of Health Sciences
Library of Technical Faculties, Maribor
Faculty of Medicine, Maribor
Miklošič Library FPNM, Maribor
Faculty of Law, Maribor
University of Maribor Library
Bigger font
|
Smaller font
Introduction
Search
Browsing
Upload document
Statistics
Login
First page
>
Show document
Show document
Title:
Numerična simulacija kavitacijskega toka skozi divergentno radialno rego
Authors:
ID
Mišković, Nikola
(
Author
)
ID
Biluš, Ignacijo
(
Mentor
)
More about this mentor...
ID
Lešnik, Luka
(
Comentor
)
Files:
UN_Miskovic_Nikola_2016.pdf
(3,28 MB)
MD5: 00B7ADD6E7CAB5351E112FCA765B7D6E
Language:
Slovenian
Work type:
Undergraduate thesis
Typology:
2.11 - Undergraduate Thesis
Organization:
FS - Faculty of Mechanical Engineering
Abstract:
Kavitacija je pojav prehoda kapljevine v parno fazo in nazaj v kapljevino do katerega pride pri nenadnem padcu tlaka. Pozitivne učinke kavitacije s pridom izkoriščajo v medicini med tem ko imajo njeni negativni učinki vpliv na obratovanje turbinskih in drugih strojev. Verjetno najbolj pogost negativen učinek kavitacije je kavitacijska erozija, ki nastane zaradi implozije kavitacijskih mehurčkov v bližini trdne površine. V diplomskem delu smo z uporabo programa računalniške dinamike tekočin ANSYS CFX preučili natančnost treh različnih kavitacijskih modelov. Kavitacijski modeli so bili testirani na primeru toka vode skozi divergentno radialno rego. Rezultati numeričnih simulacij so bili primerjani z rezultati meritev opravljenimi na Univerzi v Grenoblu. Izvedli smo časovno neodvisne simulacije z vsemi tremi kavitacijskimi modeli ter eno časovno odvisno simulacijo z uporabo Zwartovega kavitacijskega modela. Na podlagi dobljenih rezultatov smo zaključili, da vsi uporabljeni kavitacijski modeli pravilno napovejo področje nastanka parne faze.
Keywords:
Kavitacija
,
kavitacijska erozija
,
numerična simulacija
,
računalniška dinamika tekočin
Place of publishing:
Maribor
Publisher:
[N. Mišković]
Year of publishing:
2016
PID:
20.500.12556/DKUM-61939
UDC:
004.94:532.528(043.2)
COBISS.SI-ID:
20308502
NUK URN:
URN:SI:UM:DK:ZZN5FA4Y
Publication date in DKUM:
28.09.2016
Views:
2402
Downloads:
169
Metadata:
Categories:
KTFMB - FS
Cite this work
Plain text
BibTeX
EndNote XML
EndNote/Refer
RIS
ABNT
ACM Ref
AMA
APA
Chicago 17th Author-Date
Harvard
IEEE
ISO 690
MLA
Vancouver
:
Copy citation
Average score:
(0 votes)
Your score:
Voting is allowed only for
logged in
users.
Share:
Hover the mouse pointer over a document title to show the abstract or click on the title to get all document metadata.
Secondary language
Language:
English
Title:
Numerical simulation of cavitating flow through radial divergent section
Abstract:
Cavitation is a phenomenon of liquid transition to the vapor and back to liquid. It occurs at sudden drop in pressure. The positive effects of cavitation are commonly used in medicine while its negative effects impact on the operations of turbine and other machinery. Probable the most common negative effect of cavitation is the cavitation erosion caused by the implosion of vapor bubbles near a solid surface. The thesis discusses about the accuracy of three different mass transfer models for prediction of cavitation which were tested numerically using ANSYS CFX simulation program. They were tested on the model of divergent radial test section. The results of numerical simulations were compared with the results of experimental measurements performed at the University of Grenoble. In the thesis we performed out steady simulations using all three mass transfer models. We also performed out transient simulation using Zwart model. Based on the presented results we concluded that all mass transfer models correctly predict the area of cavitation formation.
Keywords:
Cavitation
,
cavitation erosion
,
numerical simulation
,
computational fluid dynamics
Comments
Leave comment
You must
log in
to leave a comment.
Comments (0)
0 - 0 / 0
There are no comments!
Back