Sea bed mechanics:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New York u.a.
Wiley
1984
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Schriftenreihe: | Ocean engineering
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XX, 335 S. Ill., Kt. |
ISBN: | 047189091X |
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adam_text | SEA BED MECHANICS J. F. A.JSLEATH CAMBRIDGE UNIVERSITY (XL TECHNISCHE
HOCNSCHUTE DARMSTADT T WASSOLDOU 21. FEB. 2008 INV. A WILEY-LNTERSCIENCE
PUBLICATION JOHN WILEY & SONS NEW YORK * CHICHESTER FACHBEREICH 13 ITU
DARMSTADT] IIIIIIIININIII 62507004 BRISBANE TORONTO SINGAPORE CONTENTS
NOTATION 1 BASIC WAVE AND CURRENT THEORY 1.1 INTRODUCTION, 1 WAVES
ALONE, 1 1.2 WHICH WAVE THEORY?, 2 1.3 SMALL-AMPLITUDE WAVE THEORY, 5
1.3.1 THE ASSUMPTIONS, 5 1.3.2 THE BOUNDARY CONDITIONS, 6 1.3.3
FIRST-ORDER SOLUTION, 7 1.3.4 SECOND-ORDER SOLUTION, 10 1.3.5 STANDING
WAVES, 10 1.4 SHALLOW WATER THEORY, 11 1.4.1 THE ASSUMPTIONS, 11 1.4.2
THE BOUNDARY CONDITIONS, 11 1.4.3 CNOIDAL WAVES, 11 1.4.4 SOLITARY
WAVES, 13 1.5 NUMERICAL SOLUTIONS, 14 1.5.1 EXACT SOLUTION, 14 1.5.2
STREAM-FUNCTION WAVE THEORY, 14 1.5.3 VOCOIDAL THEORY, 15 IX X CONTENTS
1.6 ROTATIONAL WAVE THEORY, 16 1.6.1 GERSTNER OR TROCHOIDAL WAVE THEORY,
16 1.7 EDGE WAVES, 17 1.8 INTERNAL WAVES, 18 1.9 BREAKING WAVES, 20
1.9.1 MAXIMUM WAVE HEIGHT, 20 1.9.2 TYPES OF BREAKER, 21 1.10 THE MASS
TRANSPORT VELOCITY, 22 1.11 LONGSHORE CURRENT, 2 5 1.12 RIP CURRENTS, 30
STEADY CURRENTS, 31 1.13 GROWING BOUNDARY LAYER OR FULLY DEVELOPED
FLOW?, 31 1.14 TRANSITION TO TURBULENCE, 32 1.15 FREE SURFACE LAMINAR
FLOW, 33 1.16 TURBULENT FLOW, 33 1.16.1 VELOCITY DISTRIBUTION, 33 1.16.2
POWER LAW OR LOG LAW?, 38 1.16.3 NIKURADSE ROUGHNESS LENGTH, 38 1.16.4
EDDY VISCOSITY AND MIXING LENGTH, 40 1.17 STEADY CURRENTS IN THE MARINE
ENVIRONMENT, 42 1.17.1 TIDES AND TIDAL CURRENTS, 43 1.17.2 LARGE-SCALE
OCEAN CURRENTS, 45 WAVES AND CURRENTS, 48 1.18 PREDICTION OF THE CHANGE
IN WAVE CHARACTERISTICS PRODUCED BY A KNOWN STEADY CURRENT, 48 1.19
PREDICTION OF THE CURRENT PROFILE WHEN THE WAVES ARE KNOWN, 50
REFERENCES, 53 2 FLUID VELOCITIES AND PRESSURES NEAR AND IN THE SEA BED
57 WAVES ALONE, 57 2- 1 TRANSITION, 58 2.1.1 SMOOTH BEDS, 58 2-1.2 FLAT
BEDS OF SAND OR GRAVEL, 60 2-1.3 RIPPLED BEDS, 63 CONTENTS XI 2.2 THE
VELOCITY DISTRIBUTION IN LAMINAR FLOW, 64 2.2.1 FLAT BEDS, 64 2.2.2
RIPPLED BEDS, 70 2.3 OSCILLATORY VELOCITIES IN TURBULENT FLOW, 72 2.3.1
FLAT BEDS, 72 2.3.2 RIPPLED BEDS, 81 ; 2.4 MASS TRANSPORT VELOCITIES IN
TURBULENT FLOW, 83 2.4.1 SMOOTH BEDS, 83 2.4.2 ROUGH BEDS, 84 2.5
PERMEABLE BEDS, 85 2.6 SLOPING BEDS, 90 STEADY CURRENTS ALONE, 91 2.7
THE VELOCITY DISTRIBUTION, 91 2.7.1 SMOOTH BEDS, 91 2.7.2 ROUGH BEDS, 91
WAVES AND CURRENTS, 92 2.8 TRANSITION, 92 2.9 THE VELOCITY DISTRIBUTION
IN LAMINAR FLOW, 94 2.9.1 FLAT BEDS, 94 2.9.2 ROUGH BEDS, 96 2.10 THE
VELOCITY DISTRIBUTION IN TURBULENT FLOW, 96 2.11 EXAMPLES, 99
REFERENCES, 102 3 SEDIMENT PROPERTIES 3.1 SIZE, 109 3.2 SHAPE, 112 3.3
DENSITY, SPECIFIC GRAVITY, AND SPECIFIC WEIGHT, 112 3.4 FALL VELOCITY,
113 3.4.1 FALL VELOCITY OF A SPHERE IN AN INFINITE STILL FLUID, 113
3.4.2 INFLUENCE OF SHAPE, 115 3.4.3 EFFECT OF TEMPERATURE, 116 3.4.4
EFFECT OF SEDIMENT CONCENTRATION, 116 3.4.5 EFFECT OF TURBULENCE, 118
XII CONTENTS 3.5 ANGLE OF REPOSE, 118 3.6 PERMEABILITY AND POROSITY, 120
REFERENCES, 121 4 BED FORMS 123 WAVES ALONE, 123 4.1 SUMMARY OF BED FORM
TYPES, 123 4.2 ROLLING-GRAIN RIPPLES, 125 4.2.1 RIPPLE PROFILE, 126
4.2.2 MECHANISM OF FORMATION, 126 4.2.3 THEORETICAL WORK, 128 4.2.4
EXPERIMENTAL RESULTS FOR RIPPLE GEOMETRY, 129 4.3 VORTEX RIPPLES, 131
4.3.1 RIPPLE PROFILE, 131 4.3.2 MECHANISM OF FORMATION, 134 4.3.3
THEORETICAL MODELS, 136 4.3.4 EXPERIMENTAL RESULTS FOR RIPPLE GEOMETRY,
137 4.3.5 BRICK-PATTERN RIPPLES, 141 4.4 DUNES AND ANTIDUNES, 143 4.5
LIMITS ON RIPPLE FORMATION, 144 4.6 RIPPLE GROWTH TIME, 147 4.7 OFFSHORE
BARS, 147 4.7.1 EXPERIMENTAL RESULTS, 147 4.7.2 MECHANISM OF BAR
FORMATION, 149 4.7.3 BEACH PROFILE, 150 STEADY CURRENTS ALONE, 151 4.8
SUMMARY OF BED FORM TYPES, 151 4.9 BED REGIME BOUNDARIES, 153 4.10
PARTING LINEATION, 155 4.11 RIPPLES, 156 4.11.1 THEORETICAL MODELS, 157
4.11.2 EMPIRICAL RESULTS, 157 4.12 DUNES, 158 4.12.1 THEORETICAL MODELS,
160 4.12.2 EMPIRICAL RESULTS, 164 4.12.3 SPECTRAL ANALYSIS, 165 CONTENTS
XIII 4.13 ANTIDUNES, 166 4.14 SAND RIBBONS, 167 4.15 TIDAL CURRENT
RIDGES, 167 WAVES AND CURRENTS, 168 4.16 CURRENT DOMINATION VERSUS WAVE
DOMINATION, 168 4.17 BED GEOMETRY IN COMBINED FLOWS, 169 4.17.1 RIPPLES,
169 4.17.2 DUNES, 170 4.18 EXAMPLES, 171 REFERENCES, 175 5 BED FRICTION,
ENERGY DISSIPATION, FORCES ON BODIES ON OR NEAR THE BED 181 WAVES ALONE,
181 5.1 BED FRICTION AND ENERGY DISSIPATION FOR SMOOTH BEDS IN LAMINAR
FLOW, 182 5.1.1 IMPERMEABLE BEDS, 182 5.1.2 RIGID PERMEABLE BEDS, 187
5.1.3 NONRIGIDBEDS, 189 5.1.4 SLOPING BEDS, 190 5.1.5 SOLITARY WAVES,
191 5.2 BED FRICTION AND ENERGY DISSIPATION FOR SMOOTH BEDS IN TURBULENT
FLOW, 194 5.3 ROUGH BEDS*BED FRICTION, 196 5.3.1 EXPERIMENTAL RESULTS,
196 5.3.2 THEORETICAL WORK, 197 5.4 ROUGH BEDS*ENERGY DISSIPATION, 202
5.4.1 RIPPLED BEDS, 202 5.4.2 FLAT BEDS OF SAND OR GRAVEL, 203 5.4.3
SITE MEASUREMENTS, 204 5.4.4 SOLITARY WAVES, 206 5.5 FORCES ON BODIES ON
OR NEAR THE BED, 207 5.5.1 THE IN-LINE FORCE, 207 5.5.2 THE LIFT, 217
STEADY CURRENTS, 219 XIV CONTENTS 5.6 BED FRICTION AND FRICTION FACTORS,
219 5.7 FORCES ON BODIES ON OR NEAR THE BED, 221 5.7.1 THE IN-LINE FORCE
AND THE MOMENT, 222 5.7.2 THE LIFT, 228 WAVES AND CURRENTS, 232 5.8
CURRENTS COLLINEAR WITH THE DIRECTION OF WAVE PROPAGATION, 232 5.8.1 THE
RELATIONSHIP BETWEEN BED FRICTION AND WAVE HEIGHT ATTENUATION, 232 5.8.2
FORMULAS FOR BED FRICTION, 234 5.8.3 FORCES ON RIGID BODIES, 237 5.9
CURRENTS AT RIGHT ANGLES TO THE DIRECTION OF WAVE PROPAGATION, 237 5.9.1
BED FRICTION, 237 5.9.2 WAVE HEIGHT ATTENUATION, 239 5.10 EXAMPLES, 239
REFERENCES, 245 6 SEDIMENT TRANSPORT 251 OSCILLATORY FLOW, 251 6.1
INITIAL MOTION, 251 6.1.1 SOME FORMULAS FOR INITIAL MOTION, 252 6.1.2
THEORETICAL BACKGROUND, 256 6.1.3 EFFECT OF BED PERMEABILITY, 261 6.2
SEDIMENT TRANSPORT AS BEDLOAD, 262 6.2.1 EXPERIMENTAL RESULTS, 263 6.2.2
ANALYTICAL MODELS, 265 6.3 SEDIMENT SUSPENSION, 266 6.3.1 ENTRAINMENT OF
SEDIMENT FROM THE BED, 267 6.3.2 ANALYTICAL MODELS, 269 6.3.3
MEASUREMENTS OF SEDIMENT IN SUSPENSION, 272 6.4 EFFECTS OF WAVE
ASYMMETRY, 277 6.5 SOLITARY WAVES, 278 6.6 COHESIVE SEDIMENTS, 279
CONTENTS XV 6.6.1 INITIAL MOTION, 279 6.6.2 TRANSPORT IN SUSPENSION, 280
6.6.3 BEDLOAD TRANSPORT, 281 STEADY FLOW, 282 6.7 INITIAL MOTION, 282
6.8 SUSPENSION, 286 6.8.1 THE VARIATION OF CONCENTRATION WITH HEIGHT,
287 6.8.2 TRANSPORT RATE OF SEDIMENT IN SUSPENSION, 290 6.9 BEDLOAD,
SALTATION, AND TOTAL LOAD, 291 6.9.1 TERMINOLOGY, 291 6.9.2 FORMULAS FOR
BEDLOAD AND TOTAL LOAD, 292 COMBINED STEADY PLUS OSCILLATORY FLOWS, 297
6.10 INITIAL MOTION, 297 6.10.1 WAVE PROPAGATION IN THE DIRECTION OF THE
CURRENT, 297 6.10.2 WAVE PROPAGATION DIRECTION NOT COLLINEAR WITH THE
CURRENT, 298 6.11 ONSHORE-OFFSHORE TRANSPORT AND EQUILIBRIUM GRAIN SIZE
DISTRIBUTION, 298 6.11.1 SEDIMENT TRANSPORT RATE, 298 6.11.2 VARIATION
IN GRAIN SIZE IN THE OFFSHORE DIRECTION, 300 6.12 LONGSHORE TRANSPORT
(LITTORAL DRIFT), 302 6.13 SEDIMENT TRANSPORT IN OTHER WAVE PLUS CURRENT
FLOWS, 306 6.13.1 SUSPENSION, 307 6.13.2 BEDLOAD, 309 6.13.3 TOTAL LOAD,
311 6.14 EXAMPLES, 315 REFERENCES, 318 AUTHOR INDEX 327 SUBJECT INDEX
333
|
any_adam_object | 1 |
author | Sleath, John F. |
author_facet | Sleath, John F. |
author_role | aut |
author_sort | Sleath, John F. |
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building | Verbundindex |
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callnumber-subject | GC - Oceanography |
ctrlnum | (OCoLC)10323760 (DE-599)BVBBV000242414 |
dewey-full | 551.46/08 |
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dewey-ones | 551 - Geology, hydrology, meteorology |
dewey-raw | 551.46/08 |
dewey-search | 551.46/08 |
dewey-sort | 3551.46 18 |
dewey-tens | 550 - Earth sciences |
discipline | Geologie / Paläontologie |
format | Book |
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institution | BVB |
isbn | 047189091X |
language | English |
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physical | XX, 335 S. Ill., Kt. |
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spelling | Sleath, John F. Verfasser aut Sea bed mechanics J. F. A. Sleath New York u.a. Wiley 1984 XX, 335 S. Ill., Kt. txt rdacontent n rdamedia nc rdacarrier Ocean engineering Ocean bottom Ocean currents Ocean waves Meeresboden (DE-588)4129066-5 gnd rswk-swf Geophysik (DE-588)4020252-5 gnd rswk-swf Wellenmechanik (DE-588)4127857-4 gnd rswk-swf Meeresboden (DE-588)4129066-5 s Geophysik (DE-588)4020252-5 s DE-604 Wellenmechanik (DE-588)4127857-4 s HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=000145725&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Sleath, John F. Sea bed mechanics Ocean bottom Ocean currents Ocean engineering Ocean waves Meeresboden (DE-588)4129066-5 gnd Geophysik (DE-588)4020252-5 gnd Wellenmechanik (DE-588)4127857-4 gnd |
subject_GND | (DE-588)4129066-5 (DE-588)4020252-5 (DE-588)4127857-4 |
title | Sea bed mechanics |
title_auth | Sea bed mechanics |
title_exact_search | Sea bed mechanics |
title_full | Sea bed mechanics J. F. A. Sleath |
title_fullStr | Sea bed mechanics J. F. A. Sleath |
title_full_unstemmed | Sea bed mechanics J. F. A. Sleath |
title_short | Sea bed mechanics |
title_sort | sea bed mechanics |
topic | Ocean bottom Ocean currents Ocean engineering Ocean waves Meeresboden (DE-588)4129066-5 gnd Geophysik (DE-588)4020252-5 gnd Wellenmechanik (DE-588)4127857-4 gnd |
topic_facet | Ocean bottom Ocean currents Ocean engineering Ocean waves Meeresboden Geophysik Wellenmechanik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=000145725&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT sleathjohnf seabedmechanics |