Oscillatory flow through porous media:
Gespeichert in:
1. Verfasser: | |
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Format: | Abschlussarbeit Buch |
Sprache: | English |
Veröffentlicht: |
München
Technische Universität München, Professur für Hydromechanik
[2024]
|
Schriftenreihe: | Mitteilung / Professur für Hydromechanik
Nr. 92 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Inhaltsverzeichnis |
Beschreibung: | XIX, 277, 38 Seiten Illustrationen, Diagramme 21 cm |
ISBN: | 9783941746190 |
Internformat
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100 | 1 | |a Unglehrt, Lukas |e Verfasser |0 (DE-588)1336284188 |4 aut | |
245 | 1 | 0 | |a Oscillatory flow through porous media |c Lukas Unglehrt |
264 | 1 | |a München |b Technische Universität München, Professur für Hydromechanik |c [2024] | |
300 | |a XIX, 277, 38 Seiten |b Illustrationen, Diagramme |c 21 cm | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
338 | |b nc |2 rdacarrier | ||
490 | 1 | |a Mitteilung / Professur für Hydromechanik |v Nr. 92 | |
502 | |b Dissertation |c Technische Universität München |d 2024 | ||
655 | 7 | |0 (DE-588)4113937-9 |a Hochschulschrift |2 gnd-content | |
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Datensatz im Suchindex
_version_ | 1818050910205509632 |
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adam_text |
CONTENTS
ZUSAMMENFASSUNG
I
ABSTRACT
II
PREFACE
III
LIST
OF
TABLES
IX
LIST
OF
FIGURES
X
NOMENCLATURE
XV
1.
INTRODUCTION
1
1.1.
MOTIVATION
.
1
1.2.
DESCRIPTION
OF
POROUS
MEDIA
FLOW
.
2
1.2.1.
CONCEPT
OF
A
POROUS
MEDIUM
.
2
1.2.2.
VOLUME-AVERAGING
THEORY
.
3
1.2.3.
PERIODIC
HOMOGENISATION
.
7
1.2.4.
OTHER
APPROACHES
.
10
1.3.
REVIEW
OF
PRIOR
RESEARCH
.
11
1.3.1.
INVESTIGATIONS
OF
OSCILLATORY
FLOW
.
11
1.3.2.
INVESTIGATIONS
OF
STATIONARY
POROUS
MEDIA
FLOW
.
20
1.3.3.
INVESTIGATIONS
OF
UNSTEADY
POROUS
MEDIA
FLOW
.
24
1.4.
RESEARCH
QUESTIONS
.
27
1.5.
OUTLINE
OF
THE
DISSERTATION
.
27
2.
METHODOLOGY
29
2.1.
OUTLINE
OF
THE
APPROACH
.
29
2.2.
PROBLEM
STATEMENT
.
30
2.2.1.
GEOMETRY
OF
THE
HEXAGONAL
SPHERE
PACK
.
30
2.2.2.
SYMMETRIES
OF
THE
HEXAGONAL
SPHERE
PACK
.
33
2.2.3.
SIZE
OF
THE
SIMULATION
DOMAIN
.
36
2.2.4.
GOVERNING
EQUATIONS
.
37
2.3.
CHOICE
OF
SIMULATION
PARAMETERS
.
38
2.4.
NUMERICAL
NIETHOD
.
43
2.4.1.
DISCUSSION
OF
NUMERICAL
METHODS
.
43
2.4.2.
DESCRIPTION
OF
THE
FLOW
SOLVER
.
43
2.4.3.
VERIFICATION
OF
THE
FLOW
SOLVER
.
45
2.5.
GRID
DESIGN
.
49
2.5.1.
DESCRIPTION
OF
THE
GRID
CONFIGURATION
.
49
2.5.2.
RESOLUTION
OF
THE
GEOMETRY
.
49
2.5.3.
RESOLUTION
OF
THE
FLOW
.
51
2.6.
LARGE-EDDY
SIMULATION
OF
THE
CASE
HF7
.
56
2.6.1.
DISCUSSION
OF
THE
SUB-GRID
SCALE
MODEL
.
56
2.6.2.
VERIFICATION
OF
THE
SUB-GRID
SCALE
MODEL
IMPLEMENTATION
.
57
2.7.
TEMPORAL
RESOLUTION
.
58
2.8.
SAMPLING
STRATEGY
.
60
3.
FLOW
REGIMES
63
3.1.
DESCRIPTION
OF
THE
SIMULATION
DATASET
.
63
3.1.1.
AMPLITUDE
AND
PHASE
BEHAVIOUR
.
63
3.1.2.
VELOCITY
AND
VORTICITY
FIELD
AT
THE
MAXIMUM
SUPERFICIAL
VELOCITY
.
64
3.2.
SUMMARY:
ONSET
OF
NONLINEARITY
IN
OSCILLATORY
FLOW
THROUGH
A
HEXAGONAL
SPHERE
PACK
.
70
3.3.
SUMMARY:
SYMMETRY
BREAKING
AND
TURBULENCE
IN
OSCILLATORY
FLOW
THROUGH
A
HEXAGONAL
SPHERE
PACK
.
71
3.4.
SUMMARY:
DIRECT
AND
LARGE
EDDY
SIMULATION
OF
TURBULENT
OSCILLATORY
FLOW
THROUGH
A
HEXAGONAL
SPHERE
PACK
.
72
3.5.
DISCUSSION
.
72
3.5.1.
FLOW
REGIMES
IN
THE
PARAMETER
SPACE
.
72
3.5.2.
COMPARISON
WITH
MACROSCOPIC
FLOW
REGIMES
.
74
3.5.3.
CONCEPTUAL
VIEW
OF
FLOW
INSTABILITIES
.
75
3.5.4.
PHYSICAL
INSTABILITY
MECHANISMS
.
79
4.
MODELLING
87
4.1.
MODELLING
FRAMEWORK
AND
OBJECTIVES
.
87
4.2.
STATE
VARIABLES
.
88
4.3.
SUMMARY:
ASSESSMENT
OF
MODELS
IN
NONLINEAR
OSCILLATORY
FLOW
THROUGH
A
HEXAG
ONAL
SPHERE
PACK
.
90
4.4.
SUMMARY:
A
MODEL
FOR
THE
DISSIPATION
RATE
IN
LINEAR
UNSTEADY
FLOW
THROUGH
POROUS
MEDIA
.
91
4.5.
SUMMARY:
DECOMPOSITION
OF
THE
DRAG
FORCE
IN
STEADY
OSCILLATORY
FLOW
THROUGH
A
HEXAGONAL
SPHERE
PACK
.
92
4.6.
A
NEW
MODEL
FOR
UNSTEADY
FLOW
THROUGH
POROUS
MEDIA
.
93
4.6.1.
PARAMETRISATION
OF
THE
FRICTION
AND
THE
VISCOUS
PRESSURE
DRAG
.
93
4.6.2.
DETERMINATION
OF
THE
MODEL
PARAMETERS
.
96
4.6.3.
A
PRIORI
VALIDATION
.
97
4.6.4.
A
POSTERIORI
VALIDATION
.
98
4.7.
DISCUSSION
.
YY
.
104
4.7.1.
SUMMARY
.
104
4.7.2.
MODELLING
THE
CONVECTIVE
PRESSURE
DRAG
.
106
4.7.3.
MACHINE-LEARNING
APPROACHES
.
109
5.
CONCLUSION
AND
OUTLOOK
113
5.1.
CONCLUSION
.
113
5.1.1.
PORE
SCALE
FLOW
.
113
5.1.2.
DRAG
PROCESSES
.
113
5.1.3.
MODELLING
.
114
5.2.
OUTLOOK
.
115
5.2.1.
VELOCITY
DISTRIBUTION
AND
DISPERSION
MODELLING
.
115
5.2.2.
WALL
SHEAR
STRESS
.
115
5.2.3.
TRANSIENT
BEHAVIOUR
.
116
5.2.4.
TURBULENT
OSCILLATORY
FLOW
.
116
5.2.5.
TRANSITION
TO
TURBULENCE
.
117
5.2.6.
EXTENSION
OF
THE
KNOWN
PARAMETER
SPACE
.
117
5.2.7.
GENERALISED
SETTINGS
.
117
5.2.8.
EXPERIMENTAL
VALIDATION
.
118
REFERENCES
119
A.
APPENDIX:
METHODOLOGY
146
A.1.
TETRAHEDRAL
AND
OCTAHEDRAL
PORES
.
146
A.2.
EIGENVALUES
OF
THE
SPATIAL
DISCRETISATION
.
147
B.
APPENDIX:
MODELLING
149
B.L.
TIME
DOMAIN
FORMULATION
OF
THE
MODEL
OF
PRIDE
ET
AL.
(1993)
.
149
B.2.
DERIVATION
OF
THE
DISCRETISATIONS
OF
THE
DYNAMIC
PERMEABILITY
NIODELS
.
151
B.2.1.
DERIVATION
OF
THE
DISCRETISATION
OF
THE
MODEL
OF
PRIDE
ET
AL.
(1993)
.
.
151
B.2.2.
DERIVATION
OF
THE
DISCRETISATION
OF
THE
MODEL
OF
TURO
&
UMNOVA
(2013)
153
B.3.
KELVIN
'
S
MINIMUM
ENERGY
THEOREM
.
154
B.
4.
HELMHOLTZ
'
S
MINIMUM
DISSIPATION
THEOREM
.
157
B.4.1.
IDENTITY
OF
FILTER
VELOCITY
AND
SUPERFICIAL
VELOCITY
AVERAGE
.
157
B.4.2.
DERIVATION
OF
HELMHOLTZ'S
MINIMUM
DISSIPATION
THEOREM
.
158
B.5.
SCALING
OF
THE
FRICTION
DRAG
AND
THE
VISCOUS
PRESSURE
DRAG
AT
HIGH
FREQUENCIES
160
C.
APPENDIX:
WALL
SHEAR
STRESS
161
C.L.
CALCULATION
OF
THE
WALL
SHEAR
STRESS
FIELD
.
161
C.2.
DETECTION
AND
CLASSIFICATION
OF
CRITICAL
POINTS
.
161
C.
2.1.
EULER
CHARACTERISTIC
.
161
C.2.2.
POINCARE
INDEX
.
162
C.
2.3.
POINCARE-HOPF
THEOREM
.
162
C.2.4.
DISCRETE
POINCARE-HOPF
THEOREM
.
164
C.2.5.
DETECTION
OF
CRITICAL
POINTS
USING
THE
DISCRETE
POINCARE-HOPF
THEOREM
166
C.2.6.
RESULTS
.
167
C.3.
DETECTION
OF
SEPARATION
LINES
.
173
C.3.1.
DEFINITION
OF
THE
SEPARATION
LINE
.
173
C.3.2.
CALCULATION
OF
SEPARATION
LINES
.
175
D.
PUBLICATIONS
177
D.L.
ONSET
OF
NONLINEARITY
IN
OSCILLATORY
FLOW
THROUGH
A
HEXAGONAL
SPHERE
PACK
.
.
177
D.2.
SYMMETRY
BREAKING
AND
TURBULENCE
IN
OSCILLATORY
FLOW
THROUGH
A
HEXAGONAL
SPHERE
PACK
.
210
D.3.
DIRECT
AND
LARGE-EDDY
SIMULATION
OF
TURBULENT
OSCILLATORY
FLOW
THROUGH
A
HEXAGONAL
SPHERE
PACK
.
217
D.4.
ASSESSMENT
OF
MODELS
IN
NONLINEAR
OSCILLATORY
FLOW
THROUGH
A
HEXAGONAL
SPHERE
PACK
.
224
D.5.
A
MODEL
FOR
THE
DISSIPATION
RATE
IN
LINEAR
UNSTEADY
FLOW
THROUGH
POROUS
MEDIA
261
D.6.
DECOMPOSITION
OF
THE
DRAG
FORCE
IN
STEADY
AND
OSCILLATORY
FLOW
THROUGH
A
HEXAGONAL
SPHERE
PACK
.
277 |
any_adam_object | 1 |
author | Unglehrt, Lukas |
author_GND | (DE-588)1336284188 |
author_facet | Unglehrt, Lukas |
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ctrlnum | (OCoLC)1461580982 (DE-599)DNB1343020018 |
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genre | (DE-588)4113937-9 Hochschulschrift gnd-content |
genre_facet | Hochschulschrift |
id | DE-604.BV049936924 |
illustrated | Illustrated |
indexdate | 2024-12-10T11:00:58Z |
institution | BVB |
isbn | 9783941746190 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-035275216 |
oclc_num | 1461580982 |
open_access_boolean | |
owner | DE-12 DE-91 DE-BY-TUM |
owner_facet | DE-12 DE-91 DE-BY-TUM |
physical | XIX, 277, 38 Seiten Illustrationen, Diagramme 21 cm |
publishDate | 2024 |
publishDateSearch | 2024 |
publishDateSort | 2024 |
publisher | Technische Universität München, Professur für Hydromechanik |
record_format | marc |
series2 | Mitteilung / Professur für Hydromechanik |
spelling | Unglehrt, Lukas Verfasser (DE-588)1336284188 aut Oscillatory flow through porous media Lukas Unglehrt München Technische Universität München, Professur für Hydromechanik [2024] XIX, 277, 38 Seiten Illustrationen, Diagramme 21 cm txt rdacontent n rdamedia nc rdacarrier Mitteilung / Professur für Hydromechanik Nr. 92 Dissertation Technische Universität München 2024 (DE-588)4113937-9 Hochschulschrift gnd-content Professur für Hydromechanik Mitteilung Nr. 92 (DE-604)BV019829439 92 B:DE-101 application/pdf https://d-nb.info/1343020018/04 Inhaltsverzeichnis DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035275216&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p emakn 0,04984 20241001 DE-101 https://d-nb.info/provenance/plan#emakn 2\p dnb 20241010 DE-101 https://d-nb.info/provenance/plan#dnb |
spellingShingle | Unglehrt, Lukas Oscillatory flow through porous media |
subject_GND | (DE-588)4113937-9 |
title | Oscillatory flow through porous media |
title_auth | Oscillatory flow through porous media |
title_exact_search | Oscillatory flow through porous media |
title_full | Oscillatory flow through porous media Lukas Unglehrt |
title_fullStr | Oscillatory flow through porous media Lukas Unglehrt |
title_full_unstemmed | Oscillatory flow through porous media Lukas Unglehrt |
title_short | Oscillatory flow through porous media |
title_sort | oscillatory flow through porous media |
topic_facet | Hochschulschrift |
url | https://d-nb.info/1343020018/04 http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035275216&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV019829439 |
work_keys_str_mv | AT unglehrtlukas oscillatoryflowthroughporousmedia |
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