Downstream changes in floodplain sedimentation and their effects on channel avulsion in stream-dominated alluvial fans: The Cretaceous Duwon Formation in the southern Korean Peninsula
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Abdel-Fattah, 2021, Fluvial architecture of the Upper Cretaceous Nubia Sandstones: an ancient example of sandy braided rivers in central Eastern Desert, Egypt, Sedimentary Geology, 420, 10.1016/j.sedgeo.2021.105923
Adams, 2004, Variations in natural levee morphology in anastomosed channel flood plain complexes, Geomorphology, 61, 127, 10.1016/j.geomorph.2003.10.005
Allen, 1978, Studies in fluviatile sedimentation: an exploratory quantitative model for the architecture of avulsion-controlled alluvial sites, Sedimentary Geology, 21, 129, 10.1016/0037-0738(78)90002-7
Allen, 1981, Sediments and processes on a small stream-flow dominated, Devonian alluvial fan, Shetland Islands, Sedimentary Geology, 29, 31, 10.1016/0037-0738(81)90056-7
Allen, 2013
Alonso-Zarza, 2003, Palaeoenvironmental significance of palustrine carbonates and calcretes in the geological record, Earth-Science Reviews, 60, 261, 10.1016/S0012-8252(02)00106-X
Alonso-Zarza, 2018, Study of a modern calcrete forming in Guadalajara, Central Spain: an analogue for ancient root calcretes, Sedimentary Geology, 373, 180, 10.1016/j.sedgeo.2018.06.006
Arnott, 1989, Bedforms, primary structures and grain fabric in the presence of suspended sediment rain, Journal of Sedimentary Research, 59, 1062
Arzani, 2005, The fluvial megafan of Abarkoh Basin (Central Iran): an example of flash-flood sedimentation in arid lands, 251, 41
Arzani, 2012, Catchment lithology as a major control on alluvial megafan development, Kohrud Mountain range, Central Iran, Earth Surface Processes and Landforms, 37, 726, 10.1002/esp.3194
Arzani, 2016, Upstream controls on evolution of dryland alluvial megafans: quaternary examples from the Kohrud Mountain Range, Central Iran, 440, 245
Ashworth, 1996, Mid-channel bar growth and its relationship to local flow strength and direction, Earth Surface Processes and Landforms, 21, 103, 10.1002/(SICI)1096-9837(199602)21:2<103::AID-ESP569>3.0.CO;2-O
Ashworth, 2004, Relationship between sediment supply and avulsion frequency in braided rivers, Geology, 32, 21, 10.1130/G19919.1
Aslan, 2005, Causes of river avulsion: insights from the Late Holocene avulsion history of the Mississippi River, U.S.A, Journal of Sedimentary Research, 75, 650, 10.2110/jsr.2005.053
Best, 2003, Three-dimensional sedimentary architecture of a large, mid-channel sand braid bar, Jamuna River, Bangladesh, Journal of Sedimentary Research, 73, 516, 10.1306/010603730516
Blair, 1987, Tectonic and hydrologic controls on cyclic alluvial fan, fluvial, and lacustrine rift-basin sedimentation, Jurassic lowermost Cretaceous Todos Santos Formation, Chiapas, Mexico, Journal of Sedimentary Research, 57, 845
Bluck, 1979, Structure of coarse grained braided stream alluvium, Earth and Environmental Science Transactions of the Royal Society of Edinburgh, 70, 181, 10.1017/S0080456800012795
Blum, 2000, Fluvial responses to climate and sea-level change: a review and look forward, Sedimentology, 47, 2, 10.1046/j.1365-3091.2000.00008.x
Bridge, 2008, Numerical modelling of alluvial deposits: recent developments, 40, 97
Bryant, 1995, Experimental study of avulsion frequency and rate of deposition, Geology, 23, 365, 10.1130/0091-7613(1995)023<0365:ESOAFA>2.3.CO;2
Buehler, 2011, Spatial and temporal evolution of an avulsion on the Taquari River distributive fluvial system from satellite image analysis, Journal of Sedimentary Research, 81, 630, 10.2110/jsr.2011.040
Burns, 2017, Anatomy and dimensions of fluvial crevasse-splay deposits: examples from the Cretaceous Castlegate Sandstone and Neslen Formation, Utah, U.S.A, Sedimentary Geology, 351, 21, 10.1016/j.sedgeo.2017.02.003
Burns, 2019, Stratigraphic architecture and hierarchy of fluvial overbank splay deposits, Journal of the Geological Society, 176, 629, 10.1144/jgs2019-001
Chadwick, 2021, Climate-change controls on river delta avulsion location and frequency, Journal of Geophysical Research: Earth Surface, 126
Chae, 2019, Zircon U-Pb ages of Duwon Formation and Goheung Tuff in Goheung area, southern Korea, Journal of the Geological Society of Korea, 55, 583, 10.14770/jgsk.2019.55.5.583
Chae, 2021, Detrital zircon provenance of the Lower Cretaceous Duwon Formation based on LA-MC-ICPMS U–Pb ages and morphology in the Goheung area, southern Korea: a new supply mechanism of Early Cretaceous zircons, Cretaceous Research, 128, 10.1016/j.cretres.2021.104955
Chakraborty, 2010, The geomorphology and sedimentology of the Tista megafan, Darjeeling Himalaya: implications for megafan building processes, Geomorphology, 115, 252, 10.1016/j.geomorph.2009.06.035
Chakraborty, 2010, Kosi Megafan: historical records, geomorphology and the recent avulsion of the Kosi River, Quaternary International, 227, 143, 10.1016/j.quaint.2009.12.002
Chang, 1975, Cretaceous stratigraphy of southeast Korea, Journal of the Geological Society of Korea, 11, 1
Chen, 2017, Alluvial fan facies of the Yongchong Basin: implications for tectonic and paleoclimatic changes during late cretaceous in SE China, Journal of Asian Earth Sciences, 134, 37, 10.1016/j.jseaes.2016.10.010
Cheon, 2020, Tectonic evolution of the Cretaceous Gyeongsang Back-arc Basin, SE Korea: transition from sinistral transtension to strike-slip kinematics, Gondwana Research, 83, 16, 10.1016/j.gr.2020.01.012
Chesley, 2018, Sandstone-body variability in the medial-distal part of an ancient distributive fluvial system, salt wash member of the Morrison Formation, Utah, U.S.A, Journal of Sedimentary Research, 88, 568, 10.2110/jsr.2018.32
Cho, 2000
Choi, 1985, Spores and pollen from the Gyeongsang Supergroup, southeastern Korea and their chronologic and paleoecologic implications, Journal of the Paleontological Society of Korea, 1, 33
Choi, 1986, Sedimentation and evolution of the Cretaceous Gyeongsang Basin, southeastern Korea, Journal of the Geological Society, 143, 29, 10.1144/gsjgs.143.1.0029
Chough, 2010, Tectonic and sedimentary evolution of a Cretaceous continental arc-backarc system in the Korean peninsula: new view, Earth-Science Reviews, 101, 225, 10.1016/j.earscirev.2010.05.004
Chough, 2000, Tectonic and sedimentary evolution of the Korean Peninsula: a review and new view, Earth-Science Reviews, 52, 175, 10.1016/S0012-8252(00)00029-5
Donselaar, 2013, Avulsion processes at the terminus of low-gradient semi-arid fluvial systems: lessons from the Río Colorado, Altiplano endorheic basin, Bolivia, Sedimentary Geology, 283, 1, 10.1016/j.sedgeo.2012.10.007
Donselaar, 2021, Spatio-temporal reconstruction of avulsion history at the terminus of a modern dryland river system, Earth Surface Processes and Landforms, 47, 1212, 10.1002/esp.5311
Edmonds, 2021, Rivers in reverse: upstream-migrating dechannelization and flooding cause avulsions on fluvial fans, Geology, 50, 37, 10.1130/G49318.1
Egozi, 2009, Experimental analysis of braided channel pattern response to increased discharge, Journal of Geophysical Research, 114, F02012, 10.1029/2008JF001099
Ethridge, 1999, Avulsion and crevassing in the sandy braided Niobrara River: complex response to base-level rise and aggradation, 28, 179
Field, 2001, Channel avulsion on alluvial fans in southern Arizona, Geomorphology, 37, 93, 10.1016/S0169-555X(00)00064-7
Fisher, 2007, Unconfined flow deposits in the distal sectors of fluvial distributary systems: examples from the Luna and Huesca Systems, northern Spain, Sedimentary Geology, 195, 55, 10.1016/j.sedgeo.2006.07.005
Fisher, 2008, Sedimentology and architecture of the Douglas Creek terminal splay, Lake Eyre, Central Australia, Sedimentology, 55, 1915, 10.1111/j.1365-3091.2008.00974.x
Ganti, 2016, Avulsion cycles and their stratigraphic signature on an experimental backwater-controlled delta, Journal of Geophysical Research: Earth Surface, 121, 1651, 10.1002/2016JF003915
Ghinassi, 2016, Morphodynamics and facies architecture of streamflow-dominated, sand-rich alluvial fans, Pleistocene upper Valdarno Basin, Italy, 440, 175
Gihm, 2020, Occurrence of the lowermost part of the Yucheon Group and its SHRIMP U-Pb ages in Hyeonpoong and Bugok areas, Economic and Environmental Geology, 53, 397
Gulliford, 2017, Crevasse splay processes and deposits in an ancient distributive fluvial system: the lower Beaufort Group, South Africa, Sedimentary Geology, 358, 1, 10.1016/j.sedgeo.2017.06.005
Gupta, 2014, One-dimensional modeling of a recent Ganga avulsion: assessing the potential effect of tectonic subsidence on a large river, Geomorphology, 213, 24, 10.1016/j.geomorph.2013.12.038
Hajek, 2014, Is river avulsion style controlled by floodplain morphodynamics?, Geology, 42, 199, 10.1130/G35045.1
Hajek, 2012, Simplified process modeling of river avulsion and alluvial architecture: connecting models and field data, Sedimentary Geology, 257–260, 1, 10.1016/j.sedgeo.2011.09.005
Han, 2022, Linking levee-building processes with channel avulsion: geomorphic analysis for assessing avulsion frequency and channel reoccupation, Earth Surface Dynamics, 10, 743, 10.5194/esurf-10-743-2022
Hartley, 2010, Large distributive fluvial systems: characteristics, distribution, and controls on development, Journal of Sedimentary Research, 80, 167, 10.2110/jsr.2010.016
Hein, 1977, Bar evolution and development of stratification in the gravelly, braided, Kicking Horse River, British Columbia, Canadian Journal of Earth Sciences, 14, 562, 10.1139/e77-058
Heller, 1996, Downstream changes in alluvial architecture: an exploration of controls on channel-stacking patterns, Journal of Sedimentary Research, 66, 297
Hjellbakk, 1997, Facies and fluvial architecture of a high-energy braided river: the Upper Proterozoic Seglodden Member, Varanger Peninsula, northern Norway, Sedimentary Geology, 114, 131, 10.1016/S0037-0738(97)00075-4
Horton, 2001, Modern and ancient fluvial megafans in the foreland basin system of the Central Andes, southern Bolivia: implications for drainage network evolution in fold-thrust belts, Basin Research, 13, 43, 10.1046/j.1365-2117.2001.00137.x
Houck, 2006, Life in an active volcanic area: petrology and sedimentology of dinosaur track beds in the Jindong Formation (Cretaceous), Gyeongsang Basin, South Korea, Cretaceous Research, 27, 102, 10.1016/j.cretres.2005.10.004
Hwang, 2019, Chronostratigraphic implication of the Yucheon Group in Gyeongsang Basin, Korea, Journal of the Geological Society of Korea, 55, 633, 10.14770/jgsk.2019.55.5.633
Jerolmack, 2007, Conditions for branching in depositional rivers, Geology, 35, 463, 10.1130/G23308A.1
Jo, 2003, Depositional environments, architecture, and controls of Early Cretaceous non-marine successions in the northwestern part of Kyongsang Basin, Korea, Sedimentary Geology, 161, 269, 10.1016/S0037-0738(03)00130-1
Jo, 2001, Architectural analysis of fluvial sequences in the northwestern part of Kyongsang Basin (Early Cretaceous), SE Korea, Sedimentary Geology, 144, 307, 10.1016/S0037-0738(01)00123-3
Jo, 1997, Distinctive characteristics of a streamflow-dominated alluvial fan deposit: Sanghori area, Kyongsang Basin (Early Cretaceous), southeastern Korea, Sedimentary Geology, 110, 51, 10.1016/S0037-0738(96)00083-8
Jones, 2007, Characterizing avulsion stratigraphy in ancient alluvial deposits, Sedimentary Geology, 202, 124, 10.1016/j.sedgeo.2007.02.003
Jones, 1999, Causes of avulsion: an overview, 28, 171
Kee, 2006, Sedimentary environments and structural evolution of the Cretaceous Namyang Basin, Korea, Journal of the Geological Society of Korea, 42, 329
Kenrick, 2000, Cretaceous plant fossils from the Kohung area, Chonnam, Korea, Journal of the Paleontological Society of Korea, 16, 45
Kim, 2009, Depositional facies, architecture and environments of the Sihwa Formation (Lower Cretaceous), mid-west Korea with special reference to dinosaur eggs, Cretaceous Research, 30, 100, 10.1016/j.cretres.2008.05.016
Kim, 2015
Kirk, 1983, Bar development in a fluvial sandstone (Westphalian “A”), Scotland, Sedimentology, 30, 727, 10.1111/j.1365-3091.1983.tb00706.x
Koneshloo, 2018, The impact of geological uncertainty on primary production from a fluvial reservoir, Petroleum Science, 15, 270, 10.1007/s12182-018-0229-y
Korup, 2004, Landslide-induced river channel avulsions in mountain catchments of Southwest New Zealand, Geomorphology, 63, 57, 10.1016/j.geomorph.2004.03.005
Kraus, 2002, Basin-scale changes in floodplain paleosols: implications for interpreting alluvial architecture, Journal of Sedimentary Research, 72, 500, 10.1306/121701720500
Kraus, 1997, Facies and facies architecture of Paleogene floodplain deposits, Willwood Formation, Bighorn basin, Wyoming, USA, Sedimentary Geology, 114, 33, 10.1016/S0037-0738(97)00083-3
Kraus, 1999, Recognizing avulsion deposits in the ancient stratigraphical record, 28, 251
Kraus, 2015, Alluvial response to the Paleocene-Eocene Thermal Maximum climatic event, Polecat Bench, Wyoming (U.S.A.), Palaeogeography, Palaeoclimatology, Palaeoecology, 435, 177, 10.1016/j.palaeo.2015.06.021
Lee, 2021, The influence of the characteristics of drainage basin on depositional processes of the alluvial fan: an example from the Cretaceous Duwon Formation in Goheung area, Economic and Environmental Geology, 54, 441, 10.9719/EEG.2021.54.4.441
Lee, 2012, Vertical variation of sedimentary facies and depositional environment in the core section of the lower part of the Sindong Group, northwestern part of the Gyeongsang Basin, Journal of the Geological Society of Korea, 48, 365
Lee, 2018, SHRIMP U-Pb ages of detrital zircons from the Early Cretaceous Nakdong Formation, South East Korea: timing of initiation of the Gyeongsang Basin and its provenance, Island Arc, 27, 10.1111/iar.12258
Lee, 2018, Nature and evolution of the Cretaceous basins in the eastern margin of Eurasia: a case study of the Gyeongsang Basin, Journal of Asian Earth Sciences, 166, 19, 10.1016/j.jseaes.2018.07.004
Leenman, 2021, Mechanisms for avulsion on alluvial fans: insights from high-frequency topographic data, Earth Surface Processes and Landforms, 46, 1111, 10.1002/esp.5059
Li, 2015, Crevasse splay morphodynamics in a dryland river terminus: Río Colorado in Salar de Uyuni Bolivia, Quaternary International, 377, 71, 10.1016/j.quaint.2014.11.066
Li, 2014, Landsat imagery-based visualization of the geomorphological development at the terminus of a dryland river system, Quaternary International, 352, 100, 10.1016/j.quaint.2014.06.041
Li, 2021, Visualisation of flooding along an unvegetated, ephemeral river using Google Earth Engine: implications for assessment of channel-floodplain dynamics in a time of rapid environmental change, Journal of Environmental Management, 278, 10.1016/j.jenvman.2020.111559
Mackey, 1995, Three-dimensional model of alluvial stratigraphy; theory and application, Journal of Sedimentary Research, 65, 7, 10.1306/D42681D5-2B26-11D7-8648000102C1865D
Maizels, 1993, Lithofacies variations within sandur deposits: the role of runoff regime, flow dynamics and sediment supply characteristics, Sedimentary Geology, 85, 299, 10.1016/0037-0738(93)90090-R
Makaske, 2012, Upstream and downstream controls of recent avulsions on the Taquari megafan, Pantanal, south-western Brazil, Earth Surface Processes and Landforms, 37, 1313, 10.1002/esp.3278
Miall, 1977, A review of the braided river depositional environment, Earth-Science Reviews, 13, 1, 10.1016/0012-8252(77)90055-1
Miall, 1985, Architectural-element analysis: a new method of facies analysis applied to fluvial deposits, Earth-Science Reviews, 22, 261, 10.1016/0012-8252(85)90001-7
Millard, 2017, Evaluating controls on crevasse-splay size: implications for floodplain-basin filling, Journal of Sedimentary Research, 87, 722, 10.2110/jsr.2017.40
Mohrig, 2000, Interpreting avulsion process from ancient alluvial sequences: Guadalope-Matarranya system (northern Spain) and Wasatch Formation (western Colorado), Geological Society of America Bulletin, 112, 1787, 10.1130/0016-7606(2000)112<1787:IAPFAA>2.0.CO;2
Murray, 2003, Modelling the effect of vegetation on channel pattern in bedload rivers, Earth Surface Processes and Landforms, 28, 131, 10.1002/esp.428
Nadon, 1998, Magnitude and timing of peat-to-coal compaction, Geology, 26, 727, 10.1130/0091-7613(1998)026<0727:MATOPT>2.3.CO;2
Nichols, 2007, Processes, facies and architecture of fluvial distributary system deposits, Sedimentary Geology, 195, 75, 10.1016/j.sedgeo.2006.07.004
Nienhuis, 2018, Crevasse splays versus avulsions: a recipe for land building with levee breaches, Geophysical Research Letters, 45, 4058, 10.1029/2018GL077933
Paik, 2003, Palustrine calcretes of the Cretaceous Gyeongsang Supergroup, Korea: variation and paleoenvironmental implications, Island Arc, 12, 110, 10.1046/j.1440-1738.2003.00384.x
Paik, 2006, Playa lake and sheetflood deposits of the Upper Cretaceous Jindong Formation, Korea: occurrences and palaeoenvironments, Sedimentary Geology, 187, 83, 10.1016/j.sedgeo.2005.12.006
Paik, 1998, Desiccation cracks in vertic palaeosols of the Cretaceous Hasandong Formation, Korea: genesis and palaeoenvironmental implications, Sedimentary Geology, 119, 161, 10.1016/S0037-0738(98)00041-4
Paik, 2001, Dinosaur track-bearing deposits in the Cretaceous Jindong Formation, Korea: occurrence, palaeoenvironments and preservation, Cretaceous Research, 22, 79, 10.1006/cres.2000.0241
Paik, 2007, Traces of evaporites in Upper Cretaceous lacustrine deposits of Korea: origin and paleoenvironmental implications, Journal of Asian Earth Sciences, 30, 93, 10.1016/j.jseaes.2006.07.013
Park, 2021
Pati, 2019, Influence of neotectonism on geomorphology and depositional architecture of the Gandak megafan, middle Ganga plain, India, Geomorphology, 327, 489, 10.1016/j.geomorph.2018.11.029
Peakall, 2000, River response to lateral ground tilting: a synthesis and some implications for the modelling of alluvial architecture in extensional basins, Basin Research, 12, 413, 10.1111/j.1365-2117.2000.00128.x
Pranter, 2011, Static connectivity of fluvial sandstones in a lower coastal-plain setting: an example from the Upper Cretaceous lower Williams Fork Formation, Piceance Basin, Colorado, AAPG Bulletin, 95, 899, 10.1306/12091010008
Pranter, 2008, Characterization and 3D reservoir modelling of fluvial sandstones of the Williams Fork Formation, Rulison Field, Piceance Basin, Colorado, USA, Journal of Geophysics and Engineering, 5, 158, 10.1088/1742-2132/5/2/003
Retallack, 2011, Problematic megafossils in Cambrian palaeosols of South Australia, Palaeontology, 54, 1223, 10.1111/j.1475-4983.2011.01099.x
Retallack, 2020, Ediacaran and Cambrian paleosols from Central Australia, Palaeogeography, Palaeoclimatology, Palaeoecology, 560, 10.1016/j.palaeo.2020.110047
Rhee, 1998, An allostratigraphic approach to a non-marine basin: the northwestern part of Cretaceous Kyongsang Basin, SE Korea, Sedimentology, 45, 449, 10.1046/j.1365-3091.1998.00180.x
Ridgway, 1993, Stream-dominated alluvial fan and lacustrine depositional systems in Cenozoic strike-slip basins, Denali fault system, Yukon Territory, Canada, Sedimentology, 40, 645, 10.1111/j.1365-3091.1993.tb01354.x
Rust, 1989, Bedload transport of mud as pedogenic aggregates in modern and ancient rivers, Sedimentology, 36, 291, 10.1111/j.1365-3091.1989.tb00608.x
Sahu, 2010, Active tectonics and geomorphology in the Sone-Ganga alluvial tract in mid-Ganga Basin, India, Quaternary International, 227, 116, 10.1016/j.quaint.2010.05.023
Slingerland, 2004, River avulsions and their deposits, Annual Review of Earth and Planetary Sciences, 32, 257, 10.1146/annurev.earth.32.101802.120201
Smith, 1974, Sedimentology and bar formation in the upper Kicking Horse River, a braided outwash stream, The Journal of Geology, 82, 205, 10.1086/627959
Soares, 2021, Sedimentology of a distributive fluvial system: the Serra da Galga Formation, a new lithostratigraphic unit (Upper cretaceous, Bauru Basin, Brazil), Geological Journal, 56, 951, 10.1002/gj.3987
Stouthamer, 2005, Reoccupation of channel belts and its influence on alluvial architecture in the Holocene Rhine-Meuse delta, The Netherlands, 83, 319
Stouthamer, 2007, Avulsion: the relative roles of autogenic and allogenic processes, Sedimentary Geology, 198, 309, 10.1016/j.sedgeo.2007.01.017
Tai, 2010, Effects of vegetation on channel morphodynamics; results and insights from laboratory experiments, Earth Surface Processes and Landforms, 35, 1014, 10.1002/esp.1908
Tanner, 2010, Continental carbonates as indicators of paleoclimate, 62, 179
Todd, 1989, Stream-driven, high-density gravelly traction carpets: possible deposits in the Trabeg Conglomerate Formation, SW Ireland and some theoretical considerations of their origin, Sedimentology, 36, 513, 10.1111/j.1365-3091.1989.tb02083.x
Törnqvist, 2002, Spatial variation of overbank aggradation rate and its influence on avulsion frequency, Sedimentology, 49, 891, 10.1046/j.1365-3091.2002.00478.x
Valenza, 2020, Downstream changes in river avulsion style are related to channel morphology, Nature Communications, 11, 2116, 10.1038/s41467-020-15859-9
van Asselen, 2010, Factors controlling peat compaction in alluvial floodplains: a case study in the cold-temperate Cumberland Marshes, Canada, Journal of Sedimentary Research, 80, 155, 10.2110/jsr.2010.015
van Asselen, 2017, The impact of avulsion on ground-water level and peat formation in delta floodbasins during the middle-Holocene transgression in the Rhine-Meuse delta, the Netherlands, The Holocene, 27, 1694, 10.1177/0959683617702224
van Toorenenburg, 2016, On the origin of crevasse-splay amalgamation in the Huesca fluvial fan (Ebro Basin, Spain): implications for connectivity in low net-to-gross fluvial deposits, Sedimentary Geology, 343, 156, 10.1016/j.sedgeo.2016.08.008
van Toorenenburg, 2018, The life cycle of crevasse splays as a key mechanism in the aggradation of alluvial ridges and river avulsion, Earth Surface Processes and Landforms, 43, 2409, 10.1002/esp.4404
Wang, 2019, Stratigraphic complexity in fluvial fans: Lower Eocene Green River Formation, Uinta Basin, USA, Basin Research, 31, 892, 10.1111/bre.12350
Weissmann, 2002, Glacially driven cycles in accumulation space and sequence stratigraphy of a stream-dominated alluvial fan, San Joaquin Valley, California, U.S.A, Journal of Sedimentary Research, 72, 240, 10.1306/062201720240
Weissmann, 2011, Alluvial facies distributions in continental sedimentary basins—distributive fluvial systems, 97, 327
Weissmann, 2013, Prograding distributive fluvial systems—geomorphic models and ancient examples, 104, 131
Weissmann, 2015, Fluvial geomorphic elements in modern sedimentary basins and their potential preservation in the rock record: a review, Geomorphology, 250, 187, 10.1016/j.geomorph.2015.09.005
Wells, 2002, Quantitative evaluation of color measurements II. Analysis of Munsell color values from the Colton and Green River Formations (Eocene, Central Utah), Sedimentary Geology, 151, 17, 10.1016/S0037-0738(01)00205-6
Wohl, 2000, 321, 10.1029/WM014
Zamanian, 2016, Pedogenic carbonates: forms and formation processes, Earth-Science Reviews, 157, 1, 10.1016/j.earscirev.2016.03.003