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Lateral bedrock erosion and valley formation in a heterogeneously layered landscape, Northeast Kansas

  • Abbey L. Marcotte*
  • , Christina M. Neudorf
  • , Abigail L. Langston
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

In this study, we present direct field measurements of modern lateral and vertical bedrock erosion during a 2-year study period, and optically stimulated luminescence (OSL) ages of fluvial material capping a flat bedrock surface at Kings Creek located in northeast Kansas, USA. These data provide insight into rates and mechanisms of bedrock erosion and valley-widening in a heterogeneously layered limestone-shale landscape. Lateral bedrock erosion outpaced vertical incision during our 2-year study period. Modern erosion rates, measured at erosion pins in limestone and shale bedrock reveal that shale erosion rate is a function of wetting and drying cycles, while limestone erosion rate is controlled by discharge and fracture spacing. Variability in fracture spacing amongst field sites controls the size of limestone block collapse into the stream, which either allowed continued lateral erosion following rapid detachment and transport of limestone blocks, or inhibited lateral erosion due to limestone blocks that protected the valley wall from further erosion. The OSL ages of fluvial material sourced from the strath terrace were older than any material previously dated at our study site and indicate that Kings Creek was actively aggrading and incising throughout the late Pleistocene. Coupling field measurements and observations with ages of fluvial terraces can be useful to investigate the timing and processes linked to how bedrock rivers erode laterally over time to form wide bedrock valleys.

Original languageEnglish
Pages (from-to)2248-2263
JournalEarth Surface Processes and Landforms
Volume46
Issue number11
Early online date3 Jun 2021
DOIs
Publication statusPublished - 2021

Keywords

  • bedrock erosion mechanisms
  • bedrock rivers
  • lateral bedrock erosion
  • luminescence dating
  • valley widening

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