Improvement of Accuracy in Environmental Dosimetry by TLD Cards Using Three-dimensional Calibration Method

Background: The angular dependency of response for TLD cards may cause deviation from its true value on the results of environmental dosimetry, since TLDs may be exposed to radiation at different angles of incidence from the surrounding area. Objective: A 3D setting of TLD cards has been calibrat...

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Main Authors: HosseiniAliabadi S. J., Hosseini Pooya S. M., Afarideh H.2 , Mianji F.
Format: Article
Language:English
Published: Shiraz University of Medical Sciences 2015-06-01
Series:Journal of Biomedical Physics and Engineering
Subjects:
Online Access:http://www.jbpe.org/Journal_OJS/JBPE/index.php/jbpe/article/view/316
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spelling doaj-b4731cf9fa044ded83b9701e1857ab772020-11-25T00:25:09ZengShiraz University of Medical SciencesJournal of Biomedical Physics and Engineering2251-72002251-72002015-06-01524952Improvement of Accuracy in Environmental Dosimetry by TLD Cards Using Three-dimensional Calibration MethodHosseiniAliabadi S. J.0Hosseini Pooya S. M.1Afarideh H.2 , Mianji F.2Nuclear Safety & Radiological Protection Research Department, Nuclear Science & Technology Research Institute, AEOI, Tehran, Iran | Faculty of Energy Engineering & Physics, Amirkabir University of Technology, Tehran, IranNuclear Safety & Radiological Protection Research Department, Nuclear Science & Technology Research Institute, AEOI, Tehran, IranNuclear Safety & Radiological Protection Research Department, Nuclear Science & Technology Research Institute, AEOI, Tehran, IranBackground: The angular dependency of response for TLD cards may cause deviation from its true value on the results of environmental dosimetry, since TLDs may be exposed to radiation at different angles of incidence from the surrounding area. Objective: A 3D setting of TLD cards has been calibrated isotropically in a standard radiation field to evaluate the improvement of the accuracy of measurement for environmental dosimetry. Method: Three personal TLD cards were rectangularly placed in a cylindrical holder, and calibrated using 1D and 3D calibration methods. Then, the dosimeter has been used simultaneously with a reference instrument in a real radiation field measuring the accumulated dose within a time interval. Result: The results show that the accuracy of measurement has been improved by 6.5% using 3D calibration factor in comparison with that of normal 1D calibration method. Conclusion: This system can be utilized in large scale environmental monitoring with a higher accuracyhttp://www.jbpe.org/Journal_OJS/JBPE/index.php/jbpe/article/view/316AccuracyCalibrationDosimetryEnvironmental
collection DOAJ
language English
format Article
sources DOAJ
author HosseiniAliabadi S. J.
Hosseini Pooya S. M.
Afarideh H.2 , Mianji F.
spellingShingle HosseiniAliabadi S. J.
Hosseini Pooya S. M.
Afarideh H.2 , Mianji F.
Improvement of Accuracy in Environmental Dosimetry by TLD Cards Using Three-dimensional Calibration Method
Journal of Biomedical Physics and Engineering
Accuracy
Calibration
Dosimetry
Environmental
author_facet HosseiniAliabadi S. J.
Hosseini Pooya S. M.
Afarideh H.2 , Mianji F.
author_sort HosseiniAliabadi S. J.
title Improvement of Accuracy in Environmental Dosimetry by TLD Cards Using Three-dimensional Calibration Method
title_short Improvement of Accuracy in Environmental Dosimetry by TLD Cards Using Three-dimensional Calibration Method
title_full Improvement of Accuracy in Environmental Dosimetry by TLD Cards Using Three-dimensional Calibration Method
title_fullStr Improvement of Accuracy in Environmental Dosimetry by TLD Cards Using Three-dimensional Calibration Method
title_full_unstemmed Improvement of Accuracy in Environmental Dosimetry by TLD Cards Using Three-dimensional Calibration Method
title_sort improvement of accuracy in environmental dosimetry by tld cards using three-dimensional calibration method
publisher Shiraz University of Medical Sciences
series Journal of Biomedical Physics and Engineering
issn 2251-7200
2251-7200
publishDate 2015-06-01
description Background: The angular dependency of response for TLD cards may cause deviation from its true value on the results of environmental dosimetry, since TLDs may be exposed to radiation at different angles of incidence from the surrounding area. Objective: A 3D setting of TLD cards has been calibrated isotropically in a standard radiation field to evaluate the improvement of the accuracy of measurement for environmental dosimetry. Method: Three personal TLD cards were rectangularly placed in a cylindrical holder, and calibrated using 1D and 3D calibration methods. Then, the dosimeter has been used simultaneously with a reference instrument in a real radiation field measuring the accumulated dose within a time interval. Result: The results show that the accuracy of measurement has been improved by 6.5% using 3D calibration factor in comparison with that of normal 1D calibration method. Conclusion: This system can be utilized in large scale environmental monitoring with a higher accuracy
topic Accuracy
Calibration
Dosimetry
Environmental
url http://www.jbpe.org/Journal_OJS/JBPE/index.php/jbpe/article/view/316
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