Republican River-Little Beaver Creek drainage divide area landform origins in Dundy and Hitchcock Counties, Nebraska and Cheyenne and Rawlins Counties, Kansas, USA

Abstract: The Republican River-Little Beaver Creek drainage divide area in Dundy and Hitchcock Counties, Nebraska and Cheyenne and Rawlins Counties, Kansas was eroded by immense south-southeast or southeast oriented floods. Flood waters were probably derived from a rapidly melting thick North American ice sheet and flowed across Nebraska and into Kansas. Headward erosion of the […]

Little Beaver Creek-South Fork Solomon River drainage divide area landform origins in Cheyenne, Rawlins, Sherman, and Thomas Counties, Kansas, USA

Abstract: The Little Beaver Creek-South Fork Solomon River drainage divide area in Cheyenne, Rawlins, Sherman, and Thomas Counties, Kansas is today drained by parallel northeast and east oriented Republican and Solomon River tributaries. The entire drainage divide region was eroded by massive south and southeast oriented floods, with flood water probably derived from a rapidly […]

Solomon River-Saline River drainage divide area landform origins in Mitchell, Lincoln, Ottawa, and Saline Counties, Kansas, USA

Abstract: The Solomon River-Saline River drainage divide area in Mitchell, Lincoln, Ottawa, and Saline Counties, Kansas was eroded by massive south-oriented floods. Flood waters were probably derived from a rapidly melting North American ice sheet. Initially flood waters flowed south on a topographic surface at least as high as the highest Solomon River-Saline River drainage […]

South Fork Solomon River-Saline River drainage divide area landform origins in Rooks, Osborne, Ellis, and Russell Counties, Kansas, USA

Abstract: The South Fork Solomon River-Saline River drainage divide area in Rooks, Osborne, Ellis, and Russell Counties, Kansas was eroded by immense south oriented floods. Flood waters were derived from a rapidly melting North American ice sheet and initially flowed on a topographic surface at least as high as the highest South Fork Solomon River-Saline River […]

South Fork Solomon River-Saline River drainage divide area landform origins in Thomas, Sheridan, and Graham Counties, Kansas, USA

Abstract: The South Fork Solomon River-Saline River drainage divide area in Thomas, Sheridan, and Graham Counties Kansas was eroded by massive south-oriented floods and shaped during evolution of a gigantic east-oriented flood formed anastomosing channel complex involving the present day Smoky Hill, Saline, Solomon, and Republican River valleys and tributary valleys. Flood waters were derived […]

Saline River-Smoky Hill River drainage divide area landform origins in Russell, Lincoln, Ellsworth, and Saline Counties, Kansas, USA

Abstract: The Saline River-Smoky Hill River drainage divide area in Russell, Lincoln, Ellsworth, and Saline Counties, Kansas was eroded by immense south-oriented floods. Flood waters were derived from a rapidly melting North American ice sheet and flowed across Nebraska and into Kansas. The Smoky Hill River valley eroded headward from what was then the newly […]

Saline River-Big Creek drainage divide area landform origins in Sheridan, Gove, Trego, and Ellis Counties, Kansas, USA

Abstract: The Saline River-Big Creek drainage divide area in Sheridan, Gove, Trego, and Ellis Counties, Kansas was eroded by massive south oriented floods derived from a rapidly melting North American ice sheet located north of the drainage divide region. The east-southeast oriented Big Creek valley eroded first headward from what was then the newly eroded Smoky […]

North Fork Smoky Hill River-Smoky Hill River drainage divide area landform origins in Sherman, Wallace, and Logan Counties, Kansas, USA

Abstract: The North Fork Smoky Hill River-Smoky Hill River drainage divide area in Sherman, Wallace, and Logan Counties, Kansas was eroded by massive south and southeast oriented floods. Flood waters were derived from a rapidly melting North American ice sheet and flowed across Nebraska and into Kansas. The deep east oriented Smoky Hill River valley eroded […]