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Fully Energy-Dependent Hzetrn (a Galactic Cosmic-Ray Transport Code)

Fully Energy-Dependent Hzetrn (a Galactic Cosmic-Ray Transport Code)
Author: National Aeronautics and Space Adm Nasa
Publisher: Independently Published
Total Pages: 38
Release: 2019
Genre: Science
ISBN: 9781792736865

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For extended manned space missions, the radiation shielding design requires efficient and accurate cosmic-ray transport codes that can handle the physics processes in detail. The Langley Research Center galactic cosmic-ray transport code (HZETRN) is currently under development for such design use. The cross sections for the production of secondary nucleons in the existing HZETRN code are energy dependent only for nucleon collisions. The approximation of energy-independent, heavy-ion fragmentation cross section is now removed by implementing a mathematically simplified energy-dependent stepping formalism for heavy ions. The cross section at each computational grid is obtained by linear interpolation from a few tabulated data to minimize computing time. Test runs were made for galactic cosmic-ray transport through a liquid hydrogen shield and a water shield at solar minimum. The results show no appreciable change in total fluxes or computing time compared with energy-independent calculations. Differences in high LET (linear energy transfer) spectra are noted, however, because of the large variation in cross sections at the low-energy region. The high LET components are significantly higher in the new code and have important implications on biological risk estimates for heavy-ion exposure. Shinn, Judy L. and John, Sarah and Tripathi, Ram K. and Norbury, John W. and Wilson, John W. and Townsend, Lawrence W. Langley Research Center NASA-TP-3243, L-17103, NAS 1.61:3243 RTOP 593-42-21-01...


Fully Energy-dependent HZETRN

Fully Energy-dependent HZETRN
Author: Judy L. Shinn
Publisher:
Total Pages: 15
Release: 1992
Genre: Galactic cosmic rays
ISBN:

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An Efficient HZETRN

An Efficient HZETRN
Author: Judy L. Shinn
Publisher:
Total Pages: 26
Release: 1992
Genre: Cross sections (Nuclear physics)
ISBN:

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An Efficient Hzetrn (a Galactic Cosmic Ray Transport Code)

An Efficient Hzetrn (a Galactic Cosmic Ray Transport Code)
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 36
Release: 2018-08-16
Genre:
ISBN: 9781725094031

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An accurate and efficient engineering code for analyzing the shielding requirements against the high-energy galactic heavy ions is needed. The HZETRN is a deterministic code developed at Langley Research Center that is constantly under improvement both in physics and numerical computation and is targeted for such use. One problem area connected with the space-marching technique used in this code is the propagation of the local truncation error. By improving the numerical algorithms for interpolation, integration, and grid distribution formula, the efficiency of the code is increased by a factor of eight as the number of energy grid points is reduced. The numerical accuracy of better than 2 percent for a shield thickness of 150 g/cm(exp 2) is found when a 45 point energy grid is used. The propagating step size, which is related to the perturbation theory, is also reevaluated. Shinn, Judy L. and Wilson, John W. Langley Research Center NASA-TP-3147, L-16954, NAS 1.60:3147 RTOP 593-42-21...


Physics of the Isotopic Dependence of Galactic Cosmic Ray Fluence Behind Shielding

Physics of the Isotopic Dependence of Galactic Cosmic Ray Fluence Behind Shielding
Author: National Aeronautics and Space Administration (NASA)
Publisher: Createspace Independent Publishing Platform
Total Pages: 52
Release: 2018-06-04
Genre:
ISBN: 9781720661672

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For over 25 years, NASA has supported the development of space radiation transport models for shielding applications. The NASA space radiation transport model now predicts dose and dose equivalent in Earth and Mars orbit to an accuracy of plus or minus 20%. However, because larger errors may occur in particle fluence predictions, there is interest in further assessments and improvements in NASA's space radiation transport model. In this paper, we consider the effects of the isotopic composition of the primary galactic cosmic rays (GCR) and the isotopic dependence of nuclear fragmentation cross-sections on the solution to transport models used for shielding studies. Satellite measurements are used to describe the isotopic composition of the GCR. Using NASA's quantum multiple-scattering theory of nuclear fragmentation (QMSFRG) and high-charge and energy (HZETRN) transport code, we study the effect of the isotopic dependence of the primary GCR composition and secondary nuclei on shielding calculations. The QMSFRG is shown to accurately describe the iso-spin dependence of nuclear fragmentation. The principal finding of this study is that large errors (plus or minus 100%) will occur in the mass-fluence spectra when comparing transport models that use a complete isotope grid (approximately 170 ions) to ones that use a reduced isotope grid, for example the 59 ion-grid used in the HZETRN code in the past, however less significant errors (less than 20%) occur in the elemental-fluence spectra. Because a complete isotope grid is readily handled on small computer workstations and is needed for several applications studying GCR propagation and scattering, it is recommended that they be used for future GCR studies.Cucinotta, Francis A. and Saganti, Premkumar B. and Hu, Xiao-Dong and Kim, Myung-Hee Y. and Cleghorn, Timothy F. and Wilson, John W. and Tripathi, Ram K. and Zeitlin, Cary J.Johnson Space Center; Langley Research CenterFLUENCE; GALACTIC COSMIC RAYS; PRIMARY COSMIC RAYS;