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  5. Development of a FLUKA-Based Lookup Tool for Rapid Analysis of Radiation Exposures in Space Environments
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Development of a FLUKA-Based Lookup Tool for Rapid Analysis of Radiation Exposures in Space Environments

Date Issued
May 1, 2014
Author(s)
Brittingham, John Macdougall  
Advisor(s)
Lawrence W. Townsend
Additional Advisor(s)
Lawrence H. Heilbronn
Ronald E. Pevey
Thomas Handler
Permanent URI
https://trace.tennessee.edu/handle/20.500.14382/23729
Abstract

Monte Carlo transport codes such as FLUKA provide an accurate and effective method to model the transport of space radiation. However, their use in time-sensitive applications is limited because they do not generate results as quickly as other methods, such as deterministic transport codes. The development of a pre-calculated lookup tool for use in complex space radiation environments allows the calculation of space radiation quantities such as dose, dose equivalent, and fluence using Monte Carlo results with minimal loss of accuracy. In this work, a lookup tool suitable for rapidly estimating radiation exposures is developed using the FLUKA Monte Carlo code and then compared to experimental data and other simulations using other codes (HETC-HEDS and HZETRN). Specifically, the FLUKA calculations were compared to experimental data from the Cosmic Ray Telescope for the Effects of Radiation (“CRaTER”) instrument, which is carried on the Lunar Reconnaissance Orbiter (“LRO”), as well as to HETC-HEDS and HZETRN calculations simulating CRaTER. These comparisons demonstrate both the usefulness and the limitations of a pre-calculated lookup tool to rapidly model the effects of galactic cosmic radiation and solar particle events. The pre-calculated lookup tool was also used to calculate organ dose equivalent and effective dose behind a large number of shielding combinations.

Subjects

CRaTER

GCR

FLUKA

Monte Carlo

Space Radiation

Disciplines
Nuclear Engineering
Degree
Doctor of Philosophy
Major
Nuclear Engineering
Embargo Date
January 1, 2011
File(s)
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JBrittFinal.pdf

Size

1.06 MB

Format

Adobe PDF

Checksum (MD5)

888bf81e732ae1880aefd8b6facb9dce

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Thesis_Draft_04MAR.docx

Size

2.31 MB

Format

Microsoft Word XML

Checksum (MD5)

f52fb2e52b4482c3cd04564fc91604db


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