Byeonghyeon Park, Jaeho Lee, Hee Seo, Kwangsik Seo
언어
영어(ENG)
URL
https://www.earticle.net/Article/A477916
원문정보
초록
영어
Background: Iridium-192 (192Ir) is one of the radioisotopes most commonly utilized for industrial radiography worldwide. In accordance with the Nuclear Safety Act of the Republic of Korea, the use of projectors containing 192Ir sources requires conducting a shielding evaluation for a given workplace. This evaluation usually uses gamma constants and half-value layers (HVLs). However, significant differences in these values among references can result in over- or underestimation of values. Materials and Methods: The radiological characteristics of the gamma constant and HVL of 192Ir sources employed in industrial radiography were studied with a focus on the effects of source configurations and usage conditions. The source configurations were categorized into point source, volume source (lateral/upward direction), and encapsulated source. The usage conditions, defined by variations in the lead thickness and the distance among the source, lead shield, and tally, enabled derivation of the HVL. Monte Carlo N-Particle version 6.2 (MCNP6.2) was used in these calculations. Results and Discussion: The gamma constant substantially varied depending on the source configuration, exhibiting up to 43%-lower dose rates for the volume source oriented in an upward direction in comparison to the point source. In contrast, usage conditions substantially affected the HVL, which increased from 3.27 mm to 5.51 mm depending on the lead thickness under the broad-beam geometry. Furthermore, the HVLs under narrow-beam conditions were approximately 16.49% lower than those under the broad-beam geometry. Conclusion: A method with new data on the gamma constants and HVLs for shielding evaluation of industrial radiography with 192Ir was presented. The relevant findings resolve inconsistencies in the data presented in the literature and enhance shielding evaluation accuracy. The proposed method not only provides practical standards for shielding evaluations but also ensures regulatory consistency.
목차
ABSTRACT Introduction Materials and Methods 1. Radiological Properties and Source Configurations of ¹⁹²Ir 2. Theoretical Background 3. Monte Carlo Simulations Results and Discussion 1. Effect of Source Configurations 2. Effect of Usage Conditions 3. Effect of Beam Conditions (Broad and Narrow Beams) 4. Discussion Conclusion Article Information References
Byeonghyeon Park [ Korea Institute of Nuclear Safety, Daejeon, Republic of Korea; Department of Applied Plasma and Quantum Beam Engineering, Jeonbuk National University, Jeonju, Republic of Korea ]
Jaeho Lee [ Korea Institute of Nuclear Safety, Daejeon, Republic of Korea ]
Hee Seo [ Department of Applied Plasma and Quantum Beam Engineering, Jeonbuk National University, Jeonju, Republic of Korea ]
Corresponding Author
Kwangsik Seo [ RAMPART Inc., Daejeon, Republic of Korea ]
대한방사선방어학회 [Korean Association For Radiation Protection]
설립연도
1975
분야
자연과학>기타자연과학
소개
회원 상호간의 협조와 친목을 도모함으로써 방사선방어에 관한 제반연구 및 발전에 이바지함을 물론 학술의 국제교류 및 국제학술단체와의 상호협력 증진에 기여함을 목적으로 하며, 이 목적을 달성하기 위하여 다음 각 호의 사업을 한다.
1. 방사선방어에 관한 학술연구발표회 및 강연회 등의 개최
2. 학회지 및 방사선방어에 관한 학술간행물의 발행 및 배포
3. 방사선방어에 관한 학술의 국제교류 및 협력
4. 방사선방어에 관한 국제학술자료의 조사, 수집 및 번역
5. 방사선방어에 관한 조사 및 연구용역
6. 회원의 연구활동을 위한 제반협조
7. 기타 본 학회의 목적 달성에 필요한 사항
간행물
간행물명
방사선방어학회지 [Journal of Radiation Protection and Research]