Sediment Provenance Studies of the Calcasieu Ship Channel, Louisiana : A Synopsis Report

Abstract

To maintain the navigability of the Calcasieu Ship Channel (CSC), the US Army Corps of Engineers annually dredges millions of cubic yards of sediment from the inland channel. To assess sources of channel shoaling, a previous study examined river and bankline erosion as inputs. Results from that study accounted for approximately 20% of dredged volumes. Through the support of the Regional Sediment Management Program, a follow-up investigation reviewed prior sediment budgets, identified potential missing sediment sources, modeled potential sediment pathways, and utilized geochemical fingerprinting to discern primary shoaling sources to the channel. The missing sediment sources from the original budget include coastally derived sediment from the Gulf of Mexico and terrestrially derived sediment from Lake Calcasieu and surrounding wetlands. Results from geochemical fingerprinting of various potential sediment sources indicate the Calcasieu River and the Gulf of Mexico are primary contributors of sediment to the CSC, and sediments sourced from bankline erosion, Lake Calcasieu bed, and interior wetlands are secondary in nature. These results suggest that engineering solutions to control shoaling in the CSC should be focused on sources originating from the Gulf of Mexico and river headwaters as opposed to Lake Calcasieu, channel banklines, and surrounding wetlands.

Open PDF

Document Details

Document Type
Technical Report
Publication Date
Jul 01, 2022
Accession Number
AD1175546

Entities

People

  • Anthony M. Priestas
  • Danielle R. Tarpley
  • David Perkey
  • Gary L. Brown
  • Jeffery M. Corbino
  • Michael A. Hartman
  • Phu V. Luong

Organizations

  • Engineer Research and Development Center

Tags

Communities of Interest

  • Ground and Sea Platforms

DTIC Thesaurus Topics

  • Army
  • Army Corps Of Engineers
  • Classification
  • Data Analysis
  • Data Sets
  • Dredging
  • Ecology
  • Engineering
  • Engineers
  • Grain Size
  • Hydraulics
  • Isotopes
  • Louisiana
  • Sedimentation
  • Sediments
  • Statistical Analysis
  • Suspended Sediments

Fields of Study

  • Environmental science

Readers

  • Coastal and Marine Engineering/Sediment Transport/Hydraulic Engineering
  • Riverine Ecology
  • Theoretical Analysis.