Hazard Evaluation on ANFO Charges.

Abstract

The purpose of this work was to determine the potential thermal hazards from self-heating of large ANFO charges. To accomplish this objective, the thermal stability of ANFO was determined from measurements of the critical temperature at three sample sizes: 40 mg, 25 g, and 25 kg. The effective thermal conductivity of solid ANFO at density 0.85 g/cm3 was measured as 0.11 W/(m K) using a specific heat value of 1.5 J/(g K). The cook-off data were used to determine the decomposition rate coefficient from 168 to 297 deg C-a range covering over five decades in reaction rate. The resulting Anhenius rate constant expression was determined. These data were compared with previous studies on AN/fuel mixtures. The Experimentally-determined ANFO parameters were incorporated into two models to investigate the potential for thermal runaway of 2,400 and 4,800 ton charges. Overall, the work reported here showed ANFO to be a highly thermally stable energetic material, suitable for use in large conventional explosive charges. The data measured in this work allow predictions of minimum thermal runaway conditions for ANFO charges of various sizes and for various initial conditions. If the initial temperature

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Document Details

Document Type
Technical Report
Publication Date
Dec 01, 1994
Accession Number
ADA288783

Entities

People

  • Doug Olson
  • Marvin Banks

Organizations

  • University of New Mexico

Tags

Communities of Interest

  • Counter IED
  • Energy and Power Technologies
  • Ground and Sea Platforms
  • Space
  • Weapons Technologies

DTIC Thesaurus Topics

  • Combustion
  • Critical Temperature
  • Energetic Materials
  • Energy
  • Explosions
  • Explosive Charges
  • Explosives
  • Fires
  • Heat Loss
  • Heat Transfer
  • Heat Transfer Coefficients
  • High Explosives
  • Ignition
  • Low Temperature
  • Measurement
  • Melting Point
  • Military Research

Readers

  • Combustion science or combustion engineering.
  • Explosive Engineering.
  • Rocket Propulsion.