Experiments Involving Pool and Vapor Fires from Spills of Liquefied Natural Gas on Water

Abstract

A series of 16 tests have been conducted at the Naval Weapons Center involving the spill and ignition of liquefied natural gas (LNG) on water. Two kinds of fires have been studied; namely, pool fires and vapor cloud fires. The principal objective of the tests was to measure the thermal characteristics. The quantities of spilled LNG varied between 3 and 5.5 m to the third power with spill durations from 30 to 250 s. Thermal radiation from the fires was measured using wide-angle and narrow-angle radiometers and a spectrometer. The data from the tests have been analyzed for pool spread, liquid regression rate, flame heights, thermal radiative output and LNG fire spectra. Models useful for evaluating LNG fire hazards are indicated. Mean flame emissive power measured is about 210 kW/m to the second power and estimated flame temperature is 1500 K. CO2, H2O, and soot appear to be the principal radiating species. Vapor cloud burning was close to the ground with a propagating plume fire. The velocity of propagation was a function of the wind speed. A peculiar fire halting behavior noticed is discussed.

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Document Details

Document Type
Technical Report
Publication Date
Jun 01, 1979
Accession Number
ADA077073

Entities

People

  • Albert N. Moussa
  • Krishna Aravamudan
  • Phani P. K. Raj

Organizations

  • Arthur D. Little

Tags

Communities of Interest

  • Energy and Power Technologies
  • Sensors
  • Weapons Technologies

DTIC Thesaurus Topics

  • Absorption
  • Burning Rate
  • Cameras
  • Chemical Reactions
  • Coast Guard
  • Combustion
  • Detectors
  • Fires
  • Gases
  • Heat Energy
  • Heat Transfer
  • Length
  • Liquids
  • Measurement
  • Measuring Instruments
  • Plastic Explosives
  • Turbulent Diffusion

Fields of Study

  • Environmental science

Readers

  • Atmospheric Science / Meteorology, specifically Wind Wave Turbulence.
  • Combustion science or combustion engineering.
  • Fire Suppression Systems Design.