Use of Military Demolition Explosives in a Remediation Project

Abstract

Control of surface and subsurface water is a critical factor in the efficiency of remediation efforts at Eagle River Flats, an active impact range on Fort Richardson, Alaska, contaminated with particulate white phosphorus from artillery and mortar rounds. The Flats is an estuarine salt marsh bordered by bluffs with water groundwater influx from the edges as well as periodic tidal and river inundation and rain events. The uneven topography and presence of numerous craters results in pooled surface water and high perched water levels, inhibiting remediation of the contaminant. Pumps are used to drain contaminated areas to enhance remediation, but ditching is required to enhance the operation of the pumps and to drain areas not conducive to pumping. Mechanical ditching is not feasible due to because of the softness of the ground and the presence of unexploded ordnance. To create pump sumps and ditches, military explosives have been used. This report details the various sizes and configurations of these explosives (called demolitions), what has worked and what hasn't, and some of the lessons learned over the nine years of remedial activities at the Flats.

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Document Details

Document Type
Technical Report
Publication Date
Oct 01, 2003
Accession Number
ADA418192

Entities

People

  • Alvin O. Lee
  • Charles M. Collins
  • Eric G. Wahlgren
  • Michael R. Walsh
  • Michael T. Meeks

Organizations

  • Engineer Research and Development Center

Tags

Communities of Interest

  • Weapons Technologies

DTIC Thesaurus Topics

  • Chemistry
  • Demolition Charges
  • Ecotoxicology
  • Explosions
  • Explosive Charges
  • Explosives
  • Groundwater
  • Materials
  • Materials Laboratories
  • Materials Science
  • Materials Testing
  • Mechanical Engineering
  • Munitions
  • Particles
  • Rdx
  • Surface Waters
  • Unexploded Ammunition

Readers

  • Agricultural Chemistry/Soil Science
  • Hydraulic Engineering.
  • Wetland-Land-Environmental Management.