Title :
Design and Performance of a Thermal Neutron Imaging Facility at the North Carolina State University PULSTAR Reactor
Author :
Mishra, Kaushal K. ; Hawari, Ayman I. ; Gillette, Victor H.
Author_Institution :
Dept. of Nucl. Eng., North Carolina State Univ., Raleigh, NC
Abstract :
A thermal neutron imaging facility has been set up at the North Carolina State University PULSTAR reactor. The PULSTAR is an open pool light water moderated 1 MWth research reactor with six beam tubes. The present facility is set up on beam tube # 5 of the reactor. The facility is intended to have radiographic and tomographic capabilities. The design of the neutron collimator was performed using MCNP5. The collimator includes a 4-in bismuth filter followed by a 6-in single-crystal sapphire filter. Thermal neutron scattering cross-section libraries for sapphire and bismuth were generated and used in the MCNP simulation of the system. Based on the current design, the L/D of the facility ranges between 100 and 150. The neutron flux at the image plane can be varied from 1.8times106 to 7times106 n/cm2middots with a Cd-ratio of ~450. The resolution of the system for different imaging media was also estimated and found to be ~33 mum for conventional radiography film and ~110 mum for digital image plates. Initial measurements, using ASTM standards, show that the imaging facility achieves a beam quality classification of IA
Keywords :
Monte Carlo methods; beam handling techniques; fission research reactors; neutron beams; neutron flux; neutron radiography; nuclear engineering computing; tomography; ASTM standards; MCNP simulation; MCNP5; Monte Carlo simulation; North Carolina State University; PULSTAR reactor; beam quality classification; beam tubes; bismuth filter; conventional radiography film; digital image plates; neutron beam filters; neutron collimator; neutron flux; neutron radiography; open pool light water moderated research reactor; radiographic capabilities; single-crystal sapphire filter; thermal neutron imaging facility; thermal neutron scattering cross-section libraries; tomographic capabilities; Bismuth; Collimators; Digital images; Filters; Image resolution; Inductors; Libraries; Neutron spin echo; Radiography; Tomography; MCNP; Monte Carlo simulation; neutron beam filters; neutron collimator; neutron imaging; neutron radiography;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2006.884323