Deep-marine systems: processes, deposits, environments, tectonics and sedimentation
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Chichester [u.a.]
Wiley
2016
|
Ausgabe: | 1. publ. |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XII, 657 S. Ill., graph. Darst., Kt. |
ISBN: | 9781118865491 9781405125789 |
Internformat
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adam_text | Titel: Deep-marine systems
Autor: Pickering, Kevin T
Jahr: 2016
Contents
Preface
About the companion website
Part 1 Process and product
1 Physical and biological processes
1.1 Introduction
1.2 Shelf-edge processes
1.2.1 High-level escape of mud from the shelf
1.2.2 Currents in submarine canyons
1.2.3 Internal waves
1.2.4 Sediment slides and mass transport complexes (MTCs)
1.3 Deep, thermohaline, clear-water currents
1.4 Density currents and sediment gravity flows
1.4.1 Classification
1.4.2 Transformations between flow types
1.5 Turbidity currents and turbidites
1.5.1 Definition and equations of flow
1.5.2 Natural variations and triggering processes
1.5.3 Supercritical flow of turbidity currents
1.5.4 Autosuspension in turbidity currents
1.5.5 Effects of obstacles in the flow path
1.5.6 Turbidites
1.5.7 Cross-stratification in turbidites
1.5.8 Antidunes in turbidites
1.5.9 Turbidites from low-concentration flows
1.5.10 Downcurrent grain size-bed thickness trends in turbidites
1.5.11 Time scales for turbidite deposition
1.6 Concentrated density flows and their deposits
1.6.1 Deposits from concentrated density flows
1.6.2 Large mud clasts in concentrated density-flow deposits
1.7 Inflated sandflows and their deposits
1.7.1 Deposits of inflated sandflows
1.8 Cohesive flows and their deposits
1.8.1 Definitions and equations of flow
1.8.2 Turbulence of cohesive flows
1.8.3 Competence of cohesive flows
1.8.4 Deposits of cohesive flows, including debrites
1.8.5 Submarine versus subaerial cohesive flows
1.9 Accumulation of biogenic skeletons and organic matter
1.9.1 Environmental information from biogenic skeletons
2 Sediments (fades)
2.1 Introduction
2.2 Fades classifications
2.2.1 Seismic fades
2.2.2 The Pickering et al. classification scheme
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2.3 Fades Class A: Gravels, muddy gravels, gravelly muds, pebbly sands, 5% gravel grade
2.3.1 Fades Group Al: Disorganised gravels, muddy gravels, gravelly muds and pebbly sands
2.3.2 Fades Group A2: Organised gravels and pebbly sands
2.4 Fades Class B: Sands, 80% sand grade, 5% pebble grade
2.4.1 Fades Group Bl: Disorganised sands
2.4.2 Fades Group B2: Organised sands
2.5 Fades Class C: Sand-mud couplets and muddy sands, 20-80% sand grade, 80% mud grade (mostly silt)
2.5.1 Fades Group CI: Disorganised muddy sands
2.5.2 Fades Group C2: Organised sand - mud couplets
2.6 Fades Class D: Silts, silty muds, and silt-mud couplets, 80% mud, 40% silt, 0-20% sand
2.6.1 Fades Group Dl: Disorganised silts and silty muds
2.6.2 Fades Group D2: Organised silts and muddy silts
2.7 Fades Class E: 95% mud grade, 40% silt grade, 5% sand and coarser grade, 25% biogenics
2.7.1 Fades Group El: Disorganised muds and clays
2.7.2 Fades Group E2: Organised muds
2.8 Fades Class F: Chaotic deposits
2.8.1 Fades Group Fl: Exotic clasts
2.8.2 Fades Group F2: Contorted/disturbed strata
2.9 Fades Class G: Biogenic oozes ( 75% biogenics), muddy oozes (50 - 75% biogenics), biogenic muds
(25-50% biogenics) and chemogenic sediments, 5% terrigenous sand and gravel
2.9.1 Fades Group Gl: Biogenic oozes and muddy oozes
2.9.2 Facies Group G2: Biogenic mud
2.10 Injectites (clastic dykes and sills) (Figs 2.46-2.50)
2.11 Facies associations
3 Deep-water ichnology
3.1 Introduction
3.2 General principles of ichnology
3.2.1 Preservational classification of trace fossils
3.2.2 Ethological classification of trace fossils
3.2.3 Taxonomic classification of common deep-water trace fossils
3.3 Colonisation of SGF deposits: Opportunistic and equilibrium ecology
3.4 Ichnofacies
3.5 Ichnofabrics
3.6 Trace fossils in core
3.7 Case study I: Trace fossils as diagnostic indicators of deep-marine environments, Middle Eocene Ainsa-Jaca basins,
Spanish Pyrenees
3.7.1 Introduction
3.7.2 Study area: Ainsa-Jaca basins
3.7.3 Trace-fossil distributions
3.7.4 Interpretation
3.8 Case study II: Subsurface ichnological characterisation of the Middle Eocene Ainsa deep-marine system,
Spanish Pyrenees
3.8.1 Introduction
3.8.2 Trace-fossil distributions and ichnofabrics in the Ainsa System, Ainsa Basin, Spanish Pyrenees
3.8.3 Interpretation
3.9 Summary of ichnology studies in deep-water systems
3.10 Concluding remarks
4 Time - space integration
4.1 Introduction
4.2 Submarine fan growth phases and sequence stratigraphy
4.2.1 Early models for fan development and relative base-level change
4.2.2 California Borderland submarine fans and base-level change
4.2.3 Recent studies of ancient submarine fans and inferred base-level changes
4.3 Tectono-thermal/glacio-eustatic controls at evolving passive continental margins
4.4 Eustatic sea-level changes at active plate margins
4.5 Changing relative base level and sediment delivery processes
4.6 Autocyclic processes
4.6.1 Autocyclicity in submarine channels
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4.6.2 Fill-and-spill model for slope basins 167
4.6.3 Autocyclicity in fan deltas 170
4.7 Palaeo-seismicity and the stratigraphic record 171
4.8 Deconvolving tectonic and climatic controls on depositional sequences in technically active basins:
Case study from the Eocene, Spanish Pyrenees 171
4.9 Problems in determining controls on sediment delivery 183
4.10 Carbonate versus siliciclastic systems 191
4.11 Computer simulations of deep-water stratigraphy 193
4.12 Laboratory simulations of deep-water stratigraphy 193
4.13 Supercritical versus subcritical fans 194
4.14 Hierarchical classification of depositional units 195
4.15 Concluding comments 196
5 Statistical properties of sediment gravity flow (SGF) deposits 200
5.1 Introduction 200
5.2 Cloridorme Formation, Middle Ordovician, Quebec 205
5.3 Vertical trends 218
5.3.1 Tests for randomness 223
5.3.2 Correlation tests to identify asymmetric trends 224
5.3.3 Realisation that asymmetric trends can be formed, at low probability, by random processes 227
5.3.4 Asymmetric trends in the grain size of SGF deposits 230
Part 2 Systems 237
6 Sediment drifts and abyssal sediment waves 239
6.1 Introduction 239
6.2 Distribution and character of contourites and sediment drifts, North Atlantic Ocean 241
6.2.1 Broad sheeted drifts 243
6.2.2 Elongate drifts 245
6.2.3 Sediment waves 245
6.2.4 Thin contourite sheets 249
6.2.5 Other abyssal current-generated structures 249
6.3 Fades of muddy and sandy contourites 251
6.4 Seismic fades of contourites 255
6.5 The debate concerning bottom-current reworking of sandy fan sediments 255
6.6 Ancient contourites 257
6.6.1 Talme Yafe Formation 258
6.7 Facies model for sediment drifts 260
7 Submarine fans and related depositional systems: modern 262
7.1 Introduction 262
7.2 Major controls on submarine fans 266
7.2.1 Sediment type 266
7.2.2 Tectonic setting and activity 266
7.2.3 Sea-level fluctuations 267
7.3 Submarine canyons 274
7.3.1 Shifting locus of coarse-grained clastic input 277
7.4 Architectural elements of submarine-fan systems 277
7.4.1 Channels and channel-levee systems 280
7.4.2 Waveforms (sediment waves) 290
7.4.3 Lobes 294
7.4.4 Sheets 298
7.4.5 Scours and megaflutes 299
7.4.6 Mass-transport complexes 302
7.5 The distribution of architectural elements in modern submarine fans 303
7.6 Modern non-fan dispersal systems 303
7.7 Concluding remarks 307
8 Submarine fans and related depositional systems: ancient 309
8.1 Introduction 309
8.2 Ancient submarine canyons
8.3 Ancient submarine channels
8.3.1 Channel scale, architecture and stacking patterns
8.3.2 Channel stacking
8.3.3 Case study: Milliners Arm Formation, New World Island, Newfoundland
8.3.4 Levees
8.3.5 Lateral accretion deposits (LAPs)
8.3.6 Post-depositional modification of channel fills
8.4 Comparing modern and ancient channels
8.5 Ancient lobe, lobe-fringe, fan-fringe and distal basin-floor deposits
8.6 Seafloor topography and onlaps
8.7 Scours
8.8 Basin-floor sheet-like systems
8.9 Prodeltaic clastic ramps
8.10 Concluding remarks
Part 3 Plate tectonics and sedimentation
9 Evolving and mature extensional systems
9.1 Introduction
9.2 Models for lithospheric extension
9.3 Subsidence and deep-water facies of rifts and young passive margins
9.4 The post-breakup architecture of passive margins
9.4.1 Passive margins outboard of major deltas
9.4.2 Passive margins underlain by mobile salt
9.4.3 Slope apron of the northwest African margin
9.4.4 Passive margins swept by bottom currents
9.4.5 Glaciated passive margins
9.4.6 Carbonate platforms and ramps
9.5 Failed rift systems
9.6 Fragments of ancient passive margins
9.7 Concluding remarks
10 Subduction margins
10.1 Introduction
10.2 Modern subduction factories
10.2.1 Forearcs
10.2.2 Trench sedimentation
10.2.3 Accretionary prisms
10.2.4 Role of seamounts in subduction factory
10.2.5 Very oblique convergence and strike-slip in subduction factory
10.2.6 Preservation and recognition of trench stratigraphy
10.2.7 Forearc basins/slope basins
10.2.8 Fluid flow and plumbing in forearc settings
10.3 Arc-arc collision zones
10.4 Forearc summary model
10.5 Marginal/backarc basins
10.6 Ancient convergent-margin systems
10.7 Forearc/backarc cycles
10.8 Concluding remarks
11 Foreland basins
11.1 Introduction
11.2 Modern foreland basins
11.2.1 Neogene-Quaternary Taiwan
11.2.2 Neogene Quaternary Southern Banda Arc
11.3 Ancient deep-marine foreland basins
11.3.1 Pernio-Triassic Karoo foreland basin, South Africa
11.3.2 Oligocene-Miocene foreland basin, Italian Apennines
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11.3.3 Lower Palaeozoic foreland basin, Quebec Appalachians 513
11.3.4 South Pyrenean foreland basin and thrust-top/piggyback basins 515
11.4 Concluding remarks 523
12 Strike-slip continental margin basins 528
12.1 Introduction 528
12.2 Kinematic models for strike-slip basins 529
12.3 Suspect terranes 529
12.4 Depositional models for strike-slip basins 532
12.5 Modern strike-slip mobile zones 537
12.5.1 Californian continental margin 541
12.5.2 Gulf of California transtensional ocean basin 555
12.6 Ancient deep-marine oblique-slip mobile zones 557
12.6.1 Mesozoic Pyrenees 560
12.6.2 Lower Palaeozoic north central Newfoundland and Britain 562
12.7 Concluding remarks 566
References 573
Index 647
|
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publisher | Wiley |
record_format | marc |
spelling | Pickering, Kevin T. 1953- Verfasser (DE-588)129534862 aut Deep-marine systems processes, deposits, environments, tectonics and sedimentation Kevin T. Pickering & Richard N. Hiscott 1. publ. Chichester [u.a.] Wiley 2016 XII, 657 S. Ill., graph. Darst., Kt. txt rdacontent n rdamedia nc rdacarrier Marine sediments Plate tectonics Klastische Sedimentation (DE-588)4164047-0 gnd rswk-swf Turbidit (DE-588)4121794-9 gnd rswk-swf Tiefsee (DE-588)4185436-6 gnd rswk-swf Tektonik (DE-588)4059351-4 gnd rswk-swf Suspensionsströmung (DE-588)4121746-9 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Tiefsee (DE-588)4185436-6 s Klastische Sedimentation (DE-588)4164047-0 s Suspensionsströmung (DE-588)4121746-9 s Turbidit (DE-588)4121794-9 s DE-604 Tektonik (DE-588)4059351-4 s Hiscott, Richard N. Verfasser aut HBZ Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028005951&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Pickering, Kevin T. 1953- Hiscott, Richard N. Deep-marine systems processes, deposits, environments, tectonics and sedimentation Marine sediments Plate tectonics Klastische Sedimentation (DE-588)4164047-0 gnd Turbidit (DE-588)4121794-9 gnd Tiefsee (DE-588)4185436-6 gnd Tektonik (DE-588)4059351-4 gnd Suspensionsströmung (DE-588)4121746-9 gnd |
subject_GND | (DE-588)4164047-0 (DE-588)4121794-9 (DE-588)4185436-6 (DE-588)4059351-4 (DE-588)4121746-9 (DE-588)4143413-4 |
title | Deep-marine systems processes, deposits, environments, tectonics and sedimentation |
title_auth | Deep-marine systems processes, deposits, environments, tectonics and sedimentation |
title_exact_search | Deep-marine systems processes, deposits, environments, tectonics and sedimentation |
title_full | Deep-marine systems processes, deposits, environments, tectonics and sedimentation Kevin T. Pickering & Richard N. Hiscott |
title_fullStr | Deep-marine systems processes, deposits, environments, tectonics and sedimentation Kevin T. Pickering & Richard N. Hiscott |
title_full_unstemmed | Deep-marine systems processes, deposits, environments, tectonics and sedimentation Kevin T. Pickering & Richard N. Hiscott |
title_short | Deep-marine systems |
title_sort | deep marine systems processes deposits environments tectonics and sedimentation |
title_sub | processes, deposits, environments, tectonics and sedimentation |
topic | Marine sediments Plate tectonics Klastische Sedimentation (DE-588)4164047-0 gnd Turbidit (DE-588)4121794-9 gnd Tiefsee (DE-588)4185436-6 gnd Tektonik (DE-588)4059351-4 gnd Suspensionsströmung (DE-588)4121746-9 gnd |
topic_facet | Marine sediments Plate tectonics Klastische Sedimentation Turbidit Tiefsee Tektonik Suspensionsströmung Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=028005951&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT pickeringkevint deepmarinesystemsprocessesdepositsenvironmentstectonicsandsedimentation AT hiscottrichardn deepmarinesystemsprocessesdepositsenvironmentstectonicsandsedimentation |