• 제목/요약/키워드: Proton-beam degrader

검색결과 6건 처리시간 0.025초

Design of proton-beam degrader for high-purity 89Zr production

  • Hyunjin Lee;Sangbong Lee;Daeseong Choi;Gyoseong Jeong;Hee Seo
    • Nuclear Engineering and Technology
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    • 제56권7호
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    • pp.2683-2689
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    • 2024
  • This work investigated the most suitable type of degrader (Cu, Al or Nb) and its thickness, taking into consideration the salient aspects of concrete activation for high-purity 89Zr production by 89Y(p,n)89Zr nuclear reaction. The MCNP and FISPACT codes were used to determine the optimal degrader thickness and the radioactivity of shielding concrete by neutron activation, respectively. The results showed that the optimal thickness of the beam degraders was 1.16, 3.19, and 1.33 mm for Cu, Al, and Nb, respectively. The neutron production rate per proton and the energy and angular distributions of neutrons varied depending on the type of degrader. Considering the radioactivity of the target-room concrete and the amount of radioactive waste expected to be generated, the use of a 1.33-mm-thick Nb degrader for 89Zr production was determined to be the best choice.

FEM을 이용한 C-11 기체표적의 성능평가 (Application of C-11 Gas Target Using Finite Element Method)

  • 허민구;오환섭;정효진;박상필;양승대
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2005년도 춘계학술대회 논문집
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    • pp.1699-1704
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    • 2005
  • In this research the energy degrader, which is the most fragile part of the security of a target, has been newly designed to improve the performance of the gas target. Also, the numerical analysis of the heat movement and mechanical movement during the operation of the target has been accomplished. The heat analysis and structure analysis which are using the cooling water flow and pressure in the energy degrader and the Nastran mediocrity finite element analysis program, has been considered with the heat movement and mechanical movement according to the current capacity of proton beam which determines the production yield of the radioactive isotope. Also the possible use range has been determined, and at the same time the most suitable running condition according to the current capacity of proton beam has been suggested.

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FEM을 이용한 C-11 동위원소 기체표적의 성능평가 (The Evaluation of Performance of C-11 Radio Isotope Gas Target using Finite Element Method)

  • 오환섭;허민구;박상필;정효진
    • 한국공작기계학회논문집
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    • 제15권3호
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    • pp.24-31
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    • 2006
  • The energy degrader is the most fragile part of the security of a target, has been newly designed to improve the performance of the gas target. Also, the numerical analysis of the heat movement and mechanical movement during the operation of the target has been accomplished. The heat analysis and structure analysis which are using the cooling water flow and pressure in the energy degrader and the finite element analysis program, has been considered with the heat movement and mechanical movement according to the current capacity of proton beam which determines the production yield of the radioactive isotope. Also the possible use range has been determined and at the same time the most suitable running condition according to the current capacity of proton beam has been suggested.

양성자치료기 가속기 시설에서의 작업종사자의 방사선 피폭 연구 (A Study of Radiation Exposure in Proton Therapy Facility)

  • 이상훈;신동호;윤명근;신정욱;라정은;곽정원;박성용;신경환;이두현;안성환;김대용;조관호;이세병
    • 한국의학물리학회지:의학물리
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    • 제20권1호
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    • pp.37-42
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    • 2009
  • 국립암센터에 설치된 양성자 치료기는 양성자 가속기의 운영을 통해 많은 양의 이차방사선을 방출하게 되는데, 이는 양성자 빔이 가속 중에 주위의 물질과 반응을 하여 이차 입자를 발생하고 방사성 동위원소도 생성하기 때문이다. 생성된 방사성 동위원소에 의한 방사선량은 시간에 따라 감쇠되지만 양성자 치료기의 운영 및 유지보수를 위해 수시로 가속기 작업종사자들이 시설내부로 접근해야 하며 이로 인해 이차방사선에 의한 피폭 문제가 발생될 수 있다. 본 논문에서는 양성자 가속기(Cyclotron)를 포함한 양성자 치료기의 운영을 위해 필요한 작업종사자들의 작업환경을 평가하고, 적절한 수준의 방사선 방호대책을 수립하기 위해 양성자 치료기 운영 중 가장 높은 수준의 방사선이 발생되는 양성자 가속기(Cyclotron) 및 주변 지역에서의 가속기 가동에 따른 방사선 발생 정도를 측정하였고 그 지속시간을 분석하였다. 이를 위해 양성자 빔의 손실이 가장 큰 가속기 주변과 에너지 선택 시스템(Energy Selection System, ESS)지역의 탄소(graphite, $^{12}C$) 재질로 구성된 에너지 감쇠장치(degrader)에서의 방사선 변화를 추적하고, 가속기에서 생산된 230 MeV의 고정된 에너지 빔이 에너지 감쇠장치(degrader)를 거쳐 ESS를 통해 전송된 빔의 효율을 산출하고 빔의 전송 구간에서의 상대적인 방사화 정도를 분석하였다. 이러한 분석 자료를 토대로 작업종사자들의 작업간 피폭 수준을 계산하고 연간 피폭 정도를 측정하였다. 작업 중 가속기 시설내의 선량은 수십 ${\mu}Sv/h$로 다른 방사선 치료기에 비해 상대적으로 높은 수준이지만 작업시간을 고려한 연간 총 피폭 선량은 작업자에 따라 1~3 mSv/year 정도로, 연간 피폭 한계 선량보다 충분히 낮은 수준으로 운영이 가능하였다.

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Oprimization Study for the CRC PIXE System Beam Transport Line

  • Jeong, Cheol-Ki;Lee, Goung-Jin
    • 방사선산업학회지
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    • 제8권1호
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    • pp.59-63
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    • 2014
  • Proton Induced X-ray Emission (PIXE) is a MeV ion beam analysis method for use with particle accelerators. PIXE uses low-energy charged particles as an excitation mechanism to generate characteristic x-ray emission from each element in a target. In PIXE analysis, the beam current used is from a few nA to several tens of nA. Chosun University (Cyclotron Research Center) designed a $50{\mu}A$ beam line from the 13 MeV cyclotron for use with a PIXE analysis system, as well as performing beam transport line optimization research. In this study, the beam line operation conditions for the optimization process of beam transport and beam characteristics are shown.

Start-to-end modeling and transmission efficiency optimization for a cyclotron-based proton therapy beamline

  • Yu Chen;Bin Qin;Xu Liu;Wei Wang;Yicheng Liao
    • Nuclear Engineering and Technology
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    • 제56권10호
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    • pp.4365-4374
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    • 2024
  • Utilizing first-order beam dynamics models is adequate for studying the beam properties during the conceptual design of a cyclotron-based proton therapy beamline. After finishing lattice design, particle-matter interaction simulations for passive elements (e.g., degrader, collimators, energy slit) are required. The cascade simulation is used for lattice updates in each iteration, which is complicated. In addition, when the models involve particle tracking and particle-matter interaction, their optimization process is time-consuming. Therefore, this study proposes a start-to-end modeling method using Monte Carlo Beam Delivery Simulation (BDSIM) software that considers more realistic factors, such as particle-matter interaction and the realistic vacuum chamber, to precisely evaluate working parameters, along with an efficient optimization method that utilizes multi-objective Bayesian optimization (MOBO) to improve transmission efficiency. Taking the Huazhong University of Science and Technology proton therapy facility (HUST-PTF) as an example, beam loss along the beamline is located, quantified, and subsequently reduced by tuning the quadrupole strengths based on MOBO. The results show that: (i) By considering the particle-matter interaction and the realistic vacuum chamber, the precision in the prediction of the beam properties is improved; (ii) After optimization, the transmission efficiency of the entire beamline is relatively increased by an average of 6.52 % under different energy settings, especially 11.39 % at 70 MeV.