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A list of all pages that have property "Fullcaption" with value "'''Figure 50''' Channel incision of delta sediments.". Since there have been only a few results, also nearby values are displayed.

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  • File:C605-Figure-45.jpg  + ('''Figure 45''' Interpretive cross section of the Winslow-Henderson channel. BR, Brereton Limestone; HR, Herrin Coal; BH/BT, Briar Hill/Bucktown Coal; SD/AC, St. David/Alum Cave Limestone; TM, Turner Mine Shale.)
  • Galatia Channel:Baker Coal and Winslow-Henderson Channel  + ('''Figure 44''' Map showing the Winslow–Henderson channel.)
  • File:C605-Figure-46.jpg  + ('''Figure 46''' Disruption of the Danvill'''Figure 46''' Disruption of the Danville Coal, with the seam “split” by a thick wedge of mudstone. Note the ragged splaying of coal into mudstone, with a thin coal stringer crossing diagonally from the lower to upper “bench.” The site is the box cut at a portal of the Prosperity Mine in Gibson County, Indiana.Prosperity Mine in Gibson County, Indiana.)
  • Galatia Channel:Danville Coal  + ('''Figure 40''' Stratigraphic column showing the units mentioned in the section on channels affecting coal seams other than the Springfield.)
  • File:C605-Figure-47.jpg  + ('''Figure 47''' Map showing the thickness of the Murphysboro Coal near the Oraville channel in Jackson and Perry Counties, southwestern Illinois. From Jacobson (1983)'"`UNIQ--ref-00000001-QINU`"')
  • File:C605-Figure-48.jpg  + ('''Figure 48''' Interpretive cross section of the Oraville channel.)
  • Galatia Channel:Murphysboro Coal and Oraville Channel  + ('''Figure 39''' Map of the Illinois Basin showing channels and gray shale wedges affecting the Murphysboro, Colchester, Herrin, Baker, and Danville Coals.)
  • File:C605-Figure-49.jpg  + ('''Figure 49''' Stage 1: Deposition of the Delafield Member as a series of coalescing deltas during the onset of a glacial stage as the sea level began to fall. The product is a thick succession of clastic rocks that coarsen upward.)
  • Galatia Channel:Model of Channel Development  + ('''Figure 49''' Stage 1: Deposition of the Delafield Member as a series of coalescing deltas during the onset of a glacial stage as the sea level began to fall. The product is a thick succession of clastic rocks that coarsen upward.)
  • Galatia Channel:Figures  + ('''Figure 3''' Satellite image of the mouth of the Mississippi River showing natural levees and crevasse splays. Fron Earthstar Geographic SIO, © 2020.)
 ('''Figure 50''' Channel incision of delta sediments.)
  • File:C605-Figure-50.jpg  + ('''Figure 50''' Stage 2: Channel incision of delta sediments.)
  • Galatia Channel:Model of Channel Development  + ('''Figure 49''' Stage 1: Deposition of the Delafield Member as a series of coalescing deltas during the onset of a glacial stage as the sea level began to fall. The product is a thick succession of clastic rocks that coarsen upward.)
  • Galatia Channel:Figures  + ('''Figure 3''' Satellite image of the mouth of the Mississippi River showing natural levees and crevasse splays. Fron Earthstar Geographic SIO, © 2020.)
  • File:C605-Figure-51.jpg  + ('''Figure 51''' Stage 3: The Galatia channel developed a meander belt.)
  • File:C605-Figure-52.jpg  + ('''Figure 52''' Stage 4: The change to a humid climate caused the Springfield peat to begin to form.)
  • File:C605-Figure-53.jpg  + ('''Figure 53''' Stage 5: Springfield peat accumulates across a large area of the basin.)
  • File:C605-Figure-54.jpg  + ('''Figure 54''' Stage 6: A warming climate brought rapid melting of the glaciers and a sea-level rise. The Galatia channel became an estuary, subject to strong tidal currents.)
  • File:C605-Figure-55.jpg  + ('''Figure 55''' Stage 7: Peat swamps drowned as the estuary became an embayment. Dykersburg sediments rapidly buried the peat.)
  • File:C605-Figure-56.jpg  + ('''Figure 56''' Stage 8: As the transgression continued apace, the entire basin area was submerged in deep water, which became stratified and anoxic, and black mud (Turner Mine Shale) was deposited.)
  • File:C605-Figure-57.jpg  + ('''Figure 57''' Stage 9: Normal marine circulation resumed near the apex of an interglacial stage (marine highstand), bringing a brief interlude of carbonate sedimentation (St. David Limestone).)
  • File:C605-Figure-58.jpg  + ('''Figure 58''' Stage 10: Marine regression begins the next cycle.)
  • Galatia Channel:Channels and Cyclothems: A Summary Model  + ('''Figure 58''' Stage 10: Marine regression begins the next cycle.)
  • File:C605-Figure-59.jpg  + ('''Figure 59''' Conceptual model of Pange'''Figure 59''' Conceptual model of Pangea during a glacial episode of the Pennsylvanian. From Cecil,</br>C.B., F.T. Dulong, R.R. West, R. Stamm, B. Wardlaw, and N.T. Edgar, 2003b, Climate controls on the stratigraphy of a Middle Pennsylvanian cyclothem in North America, in C.B. Cecil and N.T. Edgar, eds., Climate controls on stratigraphy: SEPM Special Publication 77, p. 151–180. Copyright © 2003, used with permission of SEPM; permission conveyed through Copyright Clearance Center, Inc. ITCZ, intertropical</br>convergence zone.Inc. ITCZ, intertropical convergence zone.)
  • Galatia Channel:Linkage of Climate and Eustasy  + ('''Figure 59''' Conceptual model of Pange'''Figure 59''' Conceptual model of Pangea during a glacial episode of the Pennsylvanian. From Cecil,</br>C.B., F.T. Dulong, R.R. West, R. Stamm, B. Wardlaw, and N.T. Edgar, 2003b, Climate controls on the stratigraphy of a Middle Pennsylvanian cyclothem in North America, in C.B. Cecil and N.T. Edgar, eds., Climate controls on stratigraphy: SEPM Special Publication 77, p. 151–180. Copyright © 2003, used with permission of SEPM; permission conveyed through Copyright Clearance Center, Inc. ITCZ, intertropical</br>convergence zone.Inc. ITCZ, intertropical convergence zone.)
  • File:C605-Figure-05a.jpg  + ('''Figure 5a''' Wireline log illustrating'''Figure 5a''' Wireline log illustrating the typical response of key units. (a) Electric log of Carter Oil No. 1 Beers well in sec. 28, T8S, R4E, Williamson County, Illinois (county no. 2107). B, Brereton Limestone; H, Herrin Coal; Sp, Springfield Coal; Han, Hanover Limestone; HC, Houchin Creek Coal; SV, Survant Coal; MQ, Mecca Quarry Shale; C, Colchester Coal. (b) Gamma-ray–resistivity log of Peabody Natural Gas No. 2 Short, in sec. 14, T7S, R7E, Hamilton County (county no. 25375)., R7E, Hamilton County (county no. 25375).)
  • Galatia Channel:Delafield Member  + ('''Figure 4''' Diagram showing units between the Houchin Creek and Herrin Coals, including members newly named in this report.)
  • File:C605-Figure-05b.jpg  + ('''Figure 5b''' Wireline log illustrating'''Figure 5b''' Wireline log illustrating the typical response of key units. (a) Electric log of Carter Oil No. 1 Beers well in sec. 28, T8S, R4E, Williamson County, Illinois (county no. 2107). B, Brereton Limestone; H, Herrin Coal; Sp, Springfield Coal; Han, Hanover Limestone; HC, Houchin Creek Coal; SV, Survant Coal; MQ, Mecca Quarry Shale; C, Colchester Coal. (b) Gamma-ray–resistivity log of Peabody Natural Gas No. 2 Short, in sec. 14, T7S, R7E, Hamilton County (county no. 25375)., R7E, Hamilton County (county no. 25375).)
  • Galatia Channel:Excello Shale Member  + ('''Figure 4''' Diagram showing units between the Houchin Creek and Herrin Coals, including members newly named in this report.)
  • Galatia Channel:Turner Mine Shale Member  + ('''Figure 4''' Diagram showing units between the Houchin Creek and Herrin Coals, including members newly named in this report.)
  • File:C605-Figure-06.jpg  + ('''Figure 6''' Graphic logs from cores se'''Figure 6''' Graphic logs from cores serving as type sections of the newly named members: (a) Energy Plus borehole no. ME-13 in sec. 31, T4S, R6E, type section of the Delafield Member. (b) Kerr-McGee borehole no. 7629-16 in sec. 29, T7S, R6E, Saline County, type section of the Galatia Member.ounty, type section of the Galatia Member.)
  • Galatia Channel:Galatia Member  + ('''Figure 4''' Diagram showing units between the Houchin Creek and Herrin Coals, including members newly named in this report.)
  • File:C605-Figure-60.jpg  + ('''Figure 60''' Conceptual model of Pange'''Figure 60''' Conceptual model of Pangea during an interglacial episode of the Pennsylvanian. From Cecil, C.B., F.T. Dulong, R.R. West, R. Stamm, B. Wardlaw, and N.T. Edgar, 2003b, Climate controls on the stratigraphy of a Middle Pennsylvanian cyclothem in North America, in C.B. Cecil and N.T. Edgar, eds., Climate controls on stratigraphy: SEPM Special Publication 77, p. 151–180. Copyright © 2003, used with permission of SEPM; permission conveyed through Copyright Clearance Center, Inc. ITCZ, intertropical convergence zone.Inc. ITCZ, intertropical convergence zone.)
  • File:C605-Figure-61.jpg  + ('''Figure 61''' Diagram illustrating the possible relationship of the Effingham and Galatia channels to Midcontinent cyclothems.)
  • Galatia Channel:Relationship of Effingham and Galatia Channels  + ('''Figure 61''' Diagram illustrating the possible relationship of the Effingham and Galatia channels to Midcontinent cyclothems.)
  • File:C605-Figure-07.jpg  + ('''Figure 7''' Isopach map of the Delafield Member. After Wanless et al. (1970)'"`UNIQ--ref-00000001-QINU`"'. Thicknesses are in feet.)