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Featured researches published by Tony C. Slaba.


Radiation Research | 2011

Variation in Lunar Neutron Dose Estimates

Tony C. Slaba; Steve R. Blattnig; Martha S. Clowdsley

The radiation environment on the Moon includes albedo neutrons produced by primary particles interacting with the lunar surface. In this work, HZETRN2010 is used to calculate the albedo neutron contribution to effective dose as a function of shielding thickness for four different space radiation environments and to determine to what extent various factors affect such estimates. First, albedo neutron spectra computed with HZETRN2010 are compared to Monte Carlo results in various radiation environments. Next, the impact of lunar regolith composition on the albedo neutron spectrum is examined, and the variation on effective dose caused by neutron fluence-to-effective dose conversion coefficients is studied. A methodology for computing effective dose in detailed human phantoms using HZETRN2010 is also discussed and compared. Finally, the combined variation caused by environmental models, shielding materials, shielding thickness, regolith composition and conversion coefficients on the albedo neutron contribution to effective dose is determined. It is shown that a single percentage number for characterizing the albedo neutron contribution to effective dose can be misleading. In general, the albedo neutron contribution to effective dose is found to vary between 1–32%, with the environmental model, shielding material and shielding thickness being the driving factors that determine the exact contribution. It is also shown that polyethylene or other hydrogen-rich materials may be used to mitigate the albedo neutron exposure.


SAE International Journal of Aerospace | 2008

Neutron Transport Models and Methods for HZETRN and Coupling to Low Energy Light Ion Transport

Tony C. Slaba; John H. Heinbockel; S.R. Blattnig

Exposure estimates inside space vehicles, surface habitats, and high altitude aircraft exposed to space radiation are highly influenced by secondary neutron production. The deterministic transport code HZETRN has been identified as a reliable and efficient tool for such studies, but improvements to the underlying transport models and numerical methods are still necessary. In this paper, the forward-backward (FB) and directionally coupled forward-backward (DC) neutron transport models are derived, numerical methods for the FB model are reviewed, and a computationally efficient numerical solution is presented for the DC model. Both models are compared to the Monte Carlo codes HETCHEDS and FLUKA, and the DC model is shown to agree closely with the Monte Carlo results. Finally, it is found in the development of either model that the decoupling of low energy neutrons from the light ion (A<4) transport procedure adversely affects low energy light ion fluence spectra and exposure quantities. A first order correction is presented to resolve the problem, and it is shown to be both accurate and efficient.


Radiation Measurements | 2010

Coupled neutron transport for HZETRN

Tony C. Slaba; Steven Riese Blattnig; Sukesh K. Aghara; Lawrence W. Townsend; T. Handler; T.A. Gabriel; L. Pinsky; Brandon Reddell


Advances in Space Research | 2011

Comparison of the transport codes HZETRN, HETC and FLUKA for galactic cosmic rays

John H. Heinbockel; Tony C. Slaba; Ram K. Tripathi; Steve R. Blattnig; John W. Norbury; F. F. Badavi; Lawrence W. Townsend; T. Handler; Tony A. Gabriel; L. Pinsky; Brandon Reddell; Aric R. Aumann


Advances in Space Research | 2011

Comparison of the transport codes HZETRN, HETC and FLUKA for a solar particle event

John H. Heinbockel; Tony C. Slaba; Steve R. Blattnig; Ram K. Tripathi; Lawrence W. Townsend; T. Handler; Tony A. Gabriel; L. Pinsky; Brandon Reddell; Martha S. Clowdsley; Robert C. Singleterry; John W. Norbury; F. F. Badavi; Sukesh K. Aghara


Advances in Space Research | 2010

Utilization of CAM, CAF, MAX, and FAX for space radiation analyses using HZETRN

Tony C. Slaba; Garry D. Qualls; Martha S. Clowdsley; S.R. Blattnig; Simon Walker; Lisa C. Simonsen


Advances in Space Research | 2010

An Improved Neutron Transport Algorithm for HZETRN

Tony C. Slaba; Steve R. Blattnig; Martha S. Clowdsley; Steven A. Walker; F. F. Badavi


Archive | 2013

Radiation Shielding Optimization on Mars

Tony C. Slaba; Christopher J. Mertens; Steve R. Blattnig


Archive | 2009

Analysis of Mass Averaged Tissue Doses in CAM, CAF, MAX, and FAX

Tony C. Slaba; Garry D. Qualls; Martha S. Clowdsley; Steve R. Blattnig; Lisa C. Simonsen; Steven A. Walker; Robert C. Singleterry


Archive | 2009

Comparison of Radiation Transport Codes, HZETRN, HETC and FLUKA, Using the 1956 Webber SPE Spectrum

John H. Heinbockel; Tony C. Slaba; Steve R. Blattnig; Ram K. Tripathi

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