Publications
HOME > Achievement > Publications
Á¦¸ñ Monte Carlo study of an electron-based neutron source for Bragg edge imaging (2023)

Monte Carlo study of an electron-based neutron source for Bragg edge imaging (2023)

 

Mahdi Bakhtiari, Nam-Suk Jung, Wooyong Um, and Hee-Seok Lee

 

Nuclear Science and Engineering

 

DOI: https://doi.org/10.1080/00295639.2022.2162791



ABSTRACT


Neutron imaging is a powerful and nondestructive tool for testing materials in industrial and research applications. Compact accelerator neutron sources are gaining interest in neutron application techniques, such as Bragg edge transmission imaging. Delivering a high neutron flux with a narrow pulse width and suppressed photons at the sample position are fundamental factors for designing a neutron source for Bragg edge imaging. In this study, Monte Carlo calculations were performed to simulate a 40-MeV electron beam impinging on a cylindrical tungsten target. Different target moderator and reflector (TMR) geometries were investigated to produce cold neutrons, and their results were compared. Polyethylene (PE) and graphite were used as the moderator and the reflector, respectively. The structures and dimensions of the moderator and reflector were optimized using a Monte Carlo simulation with the PHITS-3.28 code. The effect of the PE moderator temperature on the cold neutron flux was investigated. The results showed that the optimum size of the PE at 77 K inside the reflector was 3 ¡¿ 15 ¡¿ 15 cm3 to achieve the wavelength resolution of 1.05% and the neutron flux of 1.16 ¡¿ 104 n/cm2/s at 1000 cm from the target station by assuming the electron beam current of 275 µA. In addition, the FLUKA 4-2.1 code was used to calculate the neutron spectrum from the designed neutron production target at room temperature, and the results were consistent with the PHITS calculations. The neutron spectrum together with its pulse width from the designed TMR were used to simulate the Bragg edges of an ¥á-Fe sample, and it was concluded that the TMR is suitable for performing Bragg edge imaging.


¹øÈ£ Á¦¸ñ
62 Sorption and mobility of radioactive Ni in Wolsong waste repository site, South Korea (2023)
61 Microstructure and texture analysis of 304 austenitic stainless steel using Bragg edge transmission imaging (2023)
60 Waste acceptance criteria testings of a phosphate-based geopolymer waste form to immobilize radioactive borate waste (2023)
59 Effect of Si/Al molar ratio and curing temperatures on the immobilization of radioactive borate waste in metakaolin-based geopolymer waste form (2023)
58 Estimation of radionuclides leaching characteristics in different sized geopolymer waste forms with simulated spent ion-exchange resin (2023)
57 Potential of indigenous bacteria driven U(VI) reduction under relevant deep geological repository (DGR) conditions (2023)
56 Dissolution Behaviors of PuO2(cr) in Natural Waters (2023)
55 Design and Application of Materials for Sequestration and Immobilization of 99Tc (2023)
54 Evaluating the impact of drying on leaching from a solidified/stabilized waste using a monolithic diffusion model (2023)
53 Acute oral toxicity and bioavailability of uranium and thorium in contaminated soil (2023)
now_gul Monte Carlo study of an electron-based neutron source for Bragg edge imaging (2023)
51 Tritium separation from radioactive wastewater by hydrogen isotope‒selective exchange of hydrogen‒bonded fluorine (2023)
50 Influence of MnO and ZnO on molybdate crystallization in borosilicate glass (2023)
49 Technetium (Tc)/Rhenium (Re) Solubility and Leaching Behavior from Waste Forms: An Overview (2023)
48 Stability of SrCO3 within composite Portland-slag cement blends (2023)
first prv 1 2 3 4 5 next end