Bulk Shield Design for Neutron Energies Below 50 MeV

Author:

Carter L. L.1

Affiliation:

1. Westinghouse Hanford Company, P.O. Box 1970, Richland, Washington 99352

Publisher

Informa UK Limited

Subject

General Engineering

Reference17 articles.

1. The fusion materials irradiation test facility at Hanford

2. Neutron-Photon Multigroup Cross Sections for Neutron Energies ⩽60 MeV

3. Neutron Streaming Analysis for Shield Design of the Fusion Materials Irradiation Test Facility

4. LASL Group X-6, “MCNP—A General Monte Carlo Code for Neutron and Photon Transport,” LA-7396-M, Los Alamos National Laboratory (Rev. Nov. 1979).

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1. Attenuation length of high energy neutrons through a thick concrete shield measured by activation detectors at CHARM;Journal of Nuclear Science and Technology;2020-04-17

2. Measurements of attenuation lengths through concrete and iron for neutrons produced by 800-MeV proton on tantalum target at ISIS;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2002-01

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4. Optimum Arrangement for the Neutron Dose Rate of an Iron-Polyethylene Shielding System;Nuclear Science and Engineering;1987-05

5. A Simple Estimation of the Lateral Shielding for Proton Accelerators in the Energy Range 50 to 1000 MeV;Radiation Protection Dosimetry;1985-05-01

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