Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion:
Gespeichert in:
1. Verfasser: | |
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Format: | Abschlussarbeit Buch |
Sprache: | English |
Veröffentlicht: |
Aachen
Shaker Verlag
2018
|
Schriftenreihe: | Berichte aus der Strömungstechnik
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | viii, 284 Seiten Illustrationen, Diagramme 21 cm, 447 g |
ISBN: | 9783844060133 3844060138 |
Internformat
MARC
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245 | 1 | 0 | |a Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion |c Thomas Reichardt |
264 | 1 | |a Aachen |b Shaker Verlag |c 2018 | |
300 | |a viii, 284 Seiten |b Illustrationen, Diagramme |c 21 cm, 447 g | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 0 | |a Berichte aus der Strömungstechnik | |
502 | |b Dissertation |c Otto-von-Guericke-Universität Magdeburg |d 2018 | ||
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Datensatz im Suchindex
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adam_text | TABLE OF CONTENTS
B RIEF SUM M ARY V
K URZZUSAM M ENFASSUNG VII
1. INTRODUCTION 1
1.1. PROBLEM S TA TE M E N
T...................................................................................
1
1.1.1. MULTIPHASE FLO W
.............................................................................
4
1.1.2. TURBULENT FLOW
.............................................................................
5
1.2. THIS TH E
SIS..................................................................................................
7
2. E ULER/L AGRANGE APPROACH W ITH SP ATIALLY EX TEN D ED COUPLING 11
A B STRAC
T...............................................................................................................
11
2.1.
INTRODUCTION...............................................................................................
12
2.2. NUMERICAL METHOD
...................................................................................
19
2.2.1. CONTINOUS PHASE
..........................................................................
19
2.2.2. DISPERSED P H A SE
.................................................................................21
2.2.3. PARTICLE-FLUID C O U P LIN G
.....................................................................26
2.2.4. FLUID-PARTICLE CO U P LIN G
....................................................................
30
2.2.5. COLLISION M
ODELS.................................................................................32
2.2.6. TIMING OF THE P H A S E S
........................................................................40
2.3. EXAMPLES AND VALID ATIO N
..............................................................................42
2.3.1. SINGLE P
ARTICLE....................................................................................42
2.3.2. DRAFTING-KISSING-TUMBLING PHENOM
ENON.........................................51
2.3.3. PARTICLE S W A R M
.................................................................................62
2.3.4. SINGLE B U B B LE
....................................................................................66
2.3.5. BUBBLE SW ARM
....................................................................................
70
2.3.6. NON-SPHERICAL BUBBLES
.....................................................................75
2.3.7. THREE-PHASE SYSTEM
...........................................................................77
2.4. CONCLUSIONS AND O U TLO O K
..............................................................................83
3. EFFECT O F V ELOCITY FLU CTU ATION S ON TH E RISE O F BUOYANT BUBBLES
89
A B STRAC
T...................................................................................................................89
3.1.
INTRODUCTION...................................................................................................
90
3.1.1. BUBBLE MOTION IN TURBULENT FLO W S
...................................................
90
3.1.2. MOTIVATION AND SCOPE OF THE STU D Y
.................................................. 95
3.2. PROBLEM SE TU P
................................................................................................
95
3.3. NUMERICAL METHOD
.......................................................................................97
3.4. RESULTS AND D ISCU SSIO N
...............................................................................
100
3.4.1. EFFECT OF THE DOMAIN S IZ E
................................................................102
3.4.2. EFFECT OF FORCING ON THE FLOW FIELD
..................................................
107
3.4.3. EFFECT OF FORCING ON BUBBLE TRAJECTORIES AND V ELO CITIES
................
116
3.4.4. EFFECT OF FORCING ON BUBBLE AXES, DEFORMABILITY AND ORIENTATION
125
3.4.5. FREQUENCY ANALYSIS OF BUBBLE VELOCITIES, BUBBLE AXES AND BUBBLE
ORIENTATION........................................................................................
133
3.5. CONCLUSIONS AND O U TLO O K
............................................................................138
4. STEREOSCOPIC IM AGING FOR AN ALYZIN G BUBBLE OSCILLATION IN TURB U
LEN CE
141
A B STRAC
T.................................................................................................................
141
4.1.
INTRODUCTION..................................................................................................142
4.1.1. EXPERIMENTAL STUDIES OF BUBBLE M O TIO N
.......................................
143
4.1.2. MODELING OF BUBBLE MOTION AND BUBBLE
OSCILLATION.....................147
4.1.3. MOTIVATION AND SCOPE OF THE STU D Y
................................................
154
4.2. EXPERIMENTAL S E TU P
.....................................................................................
155
4.2.1. EXPERIMENTAL FA C ILITY
......................................................................155
4.2.2. HIGH-SPEED IMAGING SYSTEM
.........................................................
157
4.2.3. LASER DOPPLER VELOCIMETRY (L D V )
................................................
159
4.3. MEASUREMENT
TECHNIQUES............................................................................160
4.3.1. CALIBRATION TECHNIQUE OF THE IMAGING S Y S TE M
..............................160
4.3.2. IMAGE P
ROCESSING............................................................................163
4.3.3. LIQUID VELOCITY MEASUREMENT
.........................................................
165
4.3.4. BUBBLE VELOCITY M EASU REM EN T
......................................................
170
4.3.5. DRAG COEFFICIENT M EASUREM ENT
......................................................
172
4.4. RESULTS AND D ISCU SSIO N
...............................................................................
173
4.4.1. SINGLE PHASE F LO W
............................................................................173
4.4.2. EVOLUTION OF BUBBLE MOTION WITH HEIGHT FOR STAGNANT WATER
VERSUS
UP-FLOW..................................................................................
178
4.4.3. SAMPLES OF INSTANTANEOUS BUBBLE MOTION FOR STAGNANT WATER
VERSUS
UP-FLOW..................................................................................
183
4.4.4. TYPES OF BUBBLE MOTION FOR STAGNANT WATER VERSUS DOWN-FLOW . 193
4.4.5. BUBBLE V ELO
CITIES............................................................................196
4.4.6. BUBBLE SHAPE DEFORM ATION
............................................................
204
4.4.7. BUBBLE ORIENTATION AND MOTION A N G L E
...........................................
209
4.4.8. DRAG
COEFFICIENT...............................................................................212
4.4.9. PARAMETERS OF INTERACTION BETWEEN BUBBLES AND THE GRID TUR
BULENCE
...........................................................................................
214
4.4.10. BUBBLE PATH
OSCILLATION...................................................................216
4.5. CONCLUSIONS AND O U TLO O K
............................................................................219
A P P EN D IX A . E ULER/L AGRAN GE APPROACH W ITH SP ATIALLY EX TEN D
ED COU
PLING 231
A.L. VOLUME FRACTION OF PARTICLE (VFOP) M E TH O D
..........................................
231
A. 1.1. DETERMINATION OF THE INTERFACE ELEMENT TY P E S
..............................231
A. 1.2. INTERFACE ELEMENT TYPE FO U R
............................................................
231
A. 2. SINGLE P
ARTICLE..........................................................................................235
A P P EN D IX B . STEREOSCOP IC IM AGING FOR ANALYZING B UBBLE O
SCILLATION IN
TURBULENCE 237
B. L. EXPERIMENTAL S E TU P
.................................................................................237
B. 1.1. EXPERIMENTAL FA C ILITY
.................................................................
237
B.1.2. TRACER P A RTIC LE
S...............................................................................239
B.1.3. MEASUREMENT PARAM
ETERS................................................................239
B.2. SINGLE PHASE U P -FLO W
..................................................................................
242
LIST O F FIGURES 245
LIST O F TAB LES 249
N OM ENCLATURE 251
R EFERENCES 257
A CKNOW LEDGM ENTS 279
C URRICULUM V ITA E 281
LIST O F PRESENTATION S AND PUB LICATION S 283
|
any_adam_object | 1 |
author | Reichardt, Thomas 1979- |
author_GND | (DE-588)1164037161 |
author_facet | Reichardt, Thomas 1979- |
author_role | aut |
author_sort | Reichardt, Thomas 1979- |
author_variant | t r tr |
building | Verbundindex |
bvnumber | BV045208090 |
classification_rvk | ZL 3257 |
ctrlnum | (OCoLC)1056974748 (DE-599)DNB1160250405 |
dewey-full | 620.1064 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.1064 |
dewey-search | 620.1064 |
dewey-sort | 3620.1064 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Maschinenbau / Maschinenwesen |
format | Thesis Book |
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id | DE-604.BV045208090 |
illustrated | Illustrated |
indexdate | 2024-07-10T08:11:35Z |
institution | BVB |
institution_GND | (DE-588)1064118135 |
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record_format | marc |
series2 | Berichte aus der Strömungstechnik |
spelling | Reichardt, Thomas 1979- Verfasser (DE-588)1164037161 aut Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion Thomas Reichardt Aachen Shaker Verlag 2018 viii, 284 Seiten Illustrationen, Diagramme 21 cm, 447 g txt rdacontent n rdamedia nc rdacarrier Berichte aus der Strömungstechnik Dissertation Otto-von-Guericke-Universität Magdeburg 2018 CCD-Videokamera (DE-588)4136081-3 gnd rswk-swf Direkte numerische Simulation (DE-588)4494453-6 gnd rswk-swf Laser-Doppler-Anemometrie (DE-588)4166796-7 gnd rswk-swf Luftblase (DE-588)4247840-6 gnd rswk-swf Mehrphasenströmung (DE-588)4169315-2 gnd rswk-swf Bildgebendes Verfahren (DE-588)4006617-4 gnd rswk-swf Numerische Strömungssimulation (DE-588)4690080-9 gnd rswk-swf Euler-Lagrange-Gleichung (DE-588)4700698-5 gnd rswk-swf Particle-Tracking-Velocimetry (DE-588)4461961-3 gnd rswk-swf Blasenströmung (DE-588)4145826-6 gnd rswk-swf (DE-588)4113937-9 Hochschulschrift gnd-content Mehrphasenströmung (DE-588)4169315-2 s Euler-Lagrange-Gleichung (DE-588)4700698-5 s Numerische Strömungssimulation (DE-588)4690080-9 s DE-604 Blasenströmung (DE-588)4145826-6 s Direkte numerische Simulation (DE-588)4494453-6 s Luftblase (DE-588)4247840-6 s Bildgebendes Verfahren (DE-588)4006617-4 s CCD-Videokamera (DE-588)4136081-3 s Particle-Tracking-Velocimetry (DE-588)4461961-3 s Laser-Doppler-Anemometrie (DE-588)4166796-7 s Shaker Verlag (DE-588)1064118135 pbl B:DE-101 application/pdf http://d-nb.info/1160250405/04 Inhaltsverzeichnis DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030596942&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Reichardt, Thomas 1979- Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion CCD-Videokamera (DE-588)4136081-3 gnd Direkte numerische Simulation (DE-588)4494453-6 gnd Laser-Doppler-Anemometrie (DE-588)4166796-7 gnd Luftblase (DE-588)4247840-6 gnd Mehrphasenströmung (DE-588)4169315-2 gnd Bildgebendes Verfahren (DE-588)4006617-4 gnd Numerische Strömungssimulation (DE-588)4690080-9 gnd Euler-Lagrange-Gleichung (DE-588)4700698-5 gnd Particle-Tracking-Velocimetry (DE-588)4461961-3 gnd Blasenströmung (DE-588)4145826-6 gnd |
subject_GND | (DE-588)4136081-3 (DE-588)4494453-6 (DE-588)4166796-7 (DE-588)4247840-6 (DE-588)4169315-2 (DE-588)4006617-4 (DE-588)4690080-9 (DE-588)4700698-5 (DE-588)4461961-3 (DE-588)4145826-6 (DE-588)4113937-9 |
title | Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion |
title_auth | Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion |
title_exact_search | Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion |
title_full | Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion Thomas Reichardt |
title_fullStr | Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion Thomas Reichardt |
title_full_unstemmed | Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion Thomas Reichardt |
title_short | Multiscale Euler/Lagrange approach to simulate finite-sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion |
title_sort | multiscale euler lagrange approach to simulate finite sized solid particles and bubbles as well as numerical and experimental studies to improve the modeling of complex bubble motion |
topic | CCD-Videokamera (DE-588)4136081-3 gnd Direkte numerische Simulation (DE-588)4494453-6 gnd Laser-Doppler-Anemometrie (DE-588)4166796-7 gnd Luftblase (DE-588)4247840-6 gnd Mehrphasenströmung (DE-588)4169315-2 gnd Bildgebendes Verfahren (DE-588)4006617-4 gnd Numerische Strömungssimulation (DE-588)4690080-9 gnd Euler-Lagrange-Gleichung (DE-588)4700698-5 gnd Particle-Tracking-Velocimetry (DE-588)4461961-3 gnd Blasenströmung (DE-588)4145826-6 gnd |
topic_facet | CCD-Videokamera Direkte numerische Simulation Laser-Doppler-Anemometrie Luftblase Mehrphasenströmung Bildgebendes Verfahren Numerische Strömungssimulation Euler-Lagrange-Gleichung Particle-Tracking-Velocimetry Blasenströmung Hochschulschrift |
url | http://d-nb.info/1160250405/04 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=030596942&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT reichardtthomas multiscaleeulerlagrangeapproachtosimulatefinitesizedsolidparticlesandbubblesaswellasnumericalandexperimentalstudiestoimprovethemodelingofcomplexbubblemotion AT shakerverlag multiscaleeulerlagrangeapproachtosimulatefinitesizedsolidparticlesandbubblesaswellasnumericalandexperimentalstudiestoimprovethemodelingofcomplexbubblemotion |
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Inhaltsverzeichnis