Monte Carlo Calculations of the Transmission of Thermal Radiation from Nuclear Detonations in Model Atmospheres

Abstract

(U) Monte Carlo calculations for monochromatic point isotropic sources were performed to determine the direct and scattered fluxes incident on flat plate receivers oriented so as to be (1) perpendicular to the source-receiver direction, (2) parallel to the ground surface, and (3) perpendicular to the ground surface. The receiver surface was always facing the point isotropic source. The calculations were run for 13 monochromatic wavelengths between 0.3 microns and 4.0 microns, source altitudes of 1, 9 and 50 km, a receiver altitude of 6 m, and receiver horizontal range from 9 to 90 km. The transmission calculations for each of the receiver orientations were performed for model atmospheres designed to represent a morning tropical atmosphere and an afternoon tropical atmosphere. Transmission calculations for a receiver oriented normal to the source-receiver axis were also performed for summer, winter and winter inversion midlatitude atmospheres, and arctic atmosphere. For the 1 km source altitude in the morning and afternoon tropical atmospheres, transmission calculations were performed for cases where these atmospheres contained a cloud layer with the bottom of the cloud layer being at an altitude of either 1.5 km or 5.5 km

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Document Details

Document Type
Technical Report
Publication Date
Mar 01, 1969
Accession Number
AD0854646

Entities

People

  • D. G. Collins
  • J. D. Marshall
  • M. B. Wells

Tags

Communities of Interest

  • Counter WMD
  • Weapons Technologies

DTIC Thesaurus Topics

  • Absorption Coefficients
  • Abstracts
  • Atmospheric Sciences
  • Attenuation
  • Detonations
  • Electronics
  • Environment
  • Equations
  • Export Controls
  • Geophysics
  • Ground Level
  • Humidity
  • New Jersey
  • Nuclear Weapons
  • Orientation (Direction)
  • Radiation
  • Rayleigh Scattering
  • Scattering
  • Thermal Radiation
  • United States
  • Water Vapor

Fields of Study

  • Physics

Readers

  • Atmospheric Science / Meteorology, specifically Wind Wave Turbulence.
  • Atmospheric Science/Meteorology
  • Space/Atmospheric Physics.