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Operational Characteristics of Ionization Chambers for a Radiation Monitoringopen access

Authors
Kim, Han SooPark, Se HwanHa, Jang HoKim, Yong KyunKim, Jong KyungCho, Seung YeonKim, Do HyunChung, Eui Kwon
Issue Date
Jun-2008
Publisher
TAYLOR & FRANCIS LTD
Keywords
ionization chamber; radiation monitoring system (RMS); shadow shielding technique; two-voltage method
Citation
JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY, pp.387 - 390
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF NUCLEAR SCIENCE AND TECHNOLOGY
Start Page
387
End Page
390
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/178548
DOI
10.1080/00223131.2008.10875870
ISSN
0022-3131
Abstract
Ionization chambers for a Radiation Monitoring System (RMS) are required to cover a wide range of dose rates from 10(-1) mu Sv/h to 10(6) mu Sv/h. For a RMS, two cylindrical ionization chambers, which had active volumes of 11.8 L and 1L, were fabricated in consideration of an electronic equilibrium and a guard electrode structure. Preliminary tests such as saturation currents and leakage Currents were performed with and without a 925 MBq Am-241 gamma source. Linearity against low dose rates was also performed by using a conventional shadow shielding technique with NIST certified 33.52 MBq Ra-226 source in a calibration room. A field test with 11.8 L was also performed at the Yong-kwang power plant. A Parallel Plate Ionization Chamber (PPIC) was also developed not only to measure the proton beam intensity but also to derive relevant parameters with other reference ionization chambers aimed at assisting in the quality control of a proton accelerator. Operational characteristics were investigated at high dose rates by using the X-ray generator located at the Korea Research Institute of Standards and Science (KRISS). Ion recombination, which is one of the characteristics of an ionization chamber, was evaluated with the experimental results and a theoretical model. The collection efficiencies of a PPIC were calculated by a experimental two-voltage method when the filling gases and the distance of the two electrodes were varied.
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