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Stone, C.A. IV; Croessmann, C.D.; Whitley, J.B.
California Univ., Los Angeles (USA). School of Engineering and Applied Science; Sandia National Labs., Albuquerque, NM (USA)1988
California Univ., Los Angeles (USA). School of Engineering and Applied Science; Sandia National Labs., Albuquerque, NM (USA)1988
AbstractAbstract
[en] This report describes an energy coupling model that considers electron reflection losses during electron beam heating experiments. This model is embodied on the REFLEX computer code, written in standard FORTRAN 77. REFLEX currently models energy deposition phenomena in three different sample geometries. These configurations include flat, cylindrical shell, and hemispherical shell surfaces. Given the electron beam operating parameters, REFLEX calculates the heat flux profile over a sample's surface, the total amount of energy deposited into a sample, and the percentage of the electron beam energy that is transferred to a sample. This document describes the energy deposition equations used in the REFLEX code; the program is described and detailed instructions are given regarding the input. Results are given for each geometry and possible experimental applications are presented. 3 refs., 20 figs., 11 tabs
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Jan 1988; 137 p; Available from NTIS, PC A07/MF A01; 3 as DE88009789
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