Thermal Neutron Converter for Irradiations with Fission Neutrons

The new research reactor FRM II at Garching started operation in March 2004. The compact core is cooled by light water, and moderated by heavy water. Two fuel plates mounted in the heavy water tank convert thermal to fast neutrons. The fast neutron flux in the connected beam tube is up to 7 ⋅ 108 s...

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Main Authors: F. M. Wagner, Th. Bücherl, S. Kampfer, A. Kastenmüller, W. Waschkowski
Format: Article
Language:English
Published: Institute for Nuclear Research, National Academy of Sciences of Ukraine 2007-09-01
Series:Ядерна фізика та енергетика
Online Access:http://jnpae.kinr.kiev.ua/21(3)/Articles_PDF/jnpae-2007-3(21)-0030-Wagner.pdf
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author F. M. Wagner
Th. Bücherl
S. Kampfer
A. Kastenmüller
W. Waschkowski
author_facet F. M. Wagner
Th. Bücherl
S. Kampfer
A. Kastenmüller
W. Waschkowski
author_sort F. M. Wagner
collection DOAJ
description The new research reactor FRM II at Garching started operation in March 2004. The compact core is cooled by light water, and moderated by heavy water. Two fuel plates mounted in the heavy water tank convert thermal to fast neutrons. The fast neutron flux in the connected beam tube is up to 7 ⋅ 108 s -1cm-2 (depending on filters and collimation); the mean neutron energy is about 1.6 MeV. There are two irradiation rooms along the beam. The first is mainly used for medical therapy (MEDAPP facility), the second for materials characterization (NECTAR facility). At the former therapy facility RENT at the old research reactor FRM, the same beam quality was available until July 2000. Therefore, only a small program is run for the determination of the biological effectiveness of the new beam. The neutron and gamma dose rates in the medical beam are 0.54 and 0.20 Gy/min, respectively. The therapy facility MEDAPP is still under examination according to European regulations for medical devices. Full medical operation will start in 2007. The radiography and tomography facility NECTAR is in operation and aims at non-destructive inspection of objects up to 400 kg mass and 80 × 80 × 80 cm³ in size. As for fission neutrons the macroscopic cross section of hydrogen is much higher than for other materials (e. g. Fe and Pb), one special application is the detection of hydrogen-containing materials (e. g. oil) in dense materials.
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institution Kabale University
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2074-0565
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publisher Institute for Nuclear Research, National Academy of Sciences of Ukraine
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series Ядерна фізика та енергетика
spelling doaj-art-9aef2f4b24f9425f98b2ade898ecf31f2025-08-20T03:36:57ZengInstitute for Nuclear Research, National Academy of Sciences of UkraineЯдерна фізика та енергетика1818-331X2074-05652007-09-0183(21)3036Thermal Neutron Converter for Irradiations with Fission NeutronsF. M. Wagner0Th. Bücherl1S. Kampfer2A. Kastenmüller3W. Waschkowski4Technische Universität München, Forschungsneutronenquelle Heinz Maier-Leibnitz (FRM II), Garching, GermanyTechnische Universität München (TUM), Institut für Radiochemie (RCM), Garching, Germany Technische Universität München, Forschungsneutronenquelle Heinz Maier-Leibnitz (FRM II), Garching, Germanyж Klinik für Strahlentherapie, Klinikum rechts der Isar, TUM, München. Germany Technische Universität München, Forschungsneutronenquelle Heinz Maier-Leibnitz (FRM II), Garching, Germany Technische Universität München, Forschungsneutronenquelle Heinz Maier-Leibnitz (FRM II), Garching, Germany The new research reactor FRM II at Garching started operation in March 2004. The compact core is cooled by light water, and moderated by heavy water. Two fuel plates mounted in the heavy water tank convert thermal to fast neutrons. The fast neutron flux in the connected beam tube is up to 7 ⋅ 108 s -1cm-2 (depending on filters and collimation); the mean neutron energy is about 1.6 MeV. There are two irradiation rooms along the beam. The first is mainly used for medical therapy (MEDAPP facility), the second for materials characterization (NECTAR facility). At the former therapy facility RENT at the old research reactor FRM, the same beam quality was available until July 2000. Therefore, only a small program is run for the determination of the biological effectiveness of the new beam. The neutron and gamma dose rates in the medical beam are 0.54 and 0.20 Gy/min, respectively. The therapy facility MEDAPP is still under examination according to European regulations for medical devices. Full medical operation will start in 2007. The radiography and tomography facility NECTAR is in operation and aims at non-destructive inspection of objects up to 400 kg mass and 80 × 80 × 80 cm³ in size. As for fission neutrons the macroscopic cross section of hydrogen is much higher than for other materials (e. g. Fe and Pb), one special application is the detection of hydrogen-containing materials (e. g. oil) in dense materials.http://jnpae.kinr.kiev.ua/21(3)/Articles_PDF/jnpae-2007-3(21)-0030-Wagner.pdf
spellingShingle F. M. Wagner
Th. Bücherl
S. Kampfer
A. Kastenmüller
W. Waschkowski
Thermal Neutron Converter for Irradiations with Fission Neutrons
Ядерна фізика та енергетика
title Thermal Neutron Converter for Irradiations with Fission Neutrons
title_full Thermal Neutron Converter for Irradiations with Fission Neutrons
title_fullStr Thermal Neutron Converter for Irradiations with Fission Neutrons
title_full_unstemmed Thermal Neutron Converter for Irradiations with Fission Neutrons
title_short Thermal Neutron Converter for Irradiations with Fission Neutrons
title_sort thermal neutron converter for irradiations with fission neutrons
url http://jnpae.kinr.kiev.ua/21(3)/Articles_PDF/jnpae-2007-3(21)-0030-Wagner.pdf
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AT thbucherl thermalneutronconverterforirradiationswithfissionneutrons
AT skampfer thermalneutronconverterforirradiationswithfissionneutrons
AT akastenmuller thermalneutronconverterforirradiationswithfissionneutrons
AT wwaschkowski thermalneutronconverterforirradiationswithfissionneutrons