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Featured researches published by D. Leichtle.


international conference on advancements in nuclear instrumentation measurement methods and their applications | 2015

Preliminary engineering assessment of the HCLL and HCPB Neutron Activation System

P. Calderoni; M. Angelone; A. Klix; D. Leichtle

The Neutron Activation System (NAS) is one of the four types of neutronics sensors considered for the testing of the HCLL and HCPB Test Blanket Module (TBM) in ITER. It measures the absolute neutron flux intensity with information on the neutron spectrum in selected positions of the TBM. The working principle of the NAS is as follows: the system moves small activation probes (capsules) into selected positions in the TBM (irradiation ends) by means of pneumatic transport with pressurized helium gas; the capsules are irradiated for a selected period, depending on their materials composition (several tens of seconds up to the full plasma pulse length); immediately after the irradiation they are extracted and transported to a gamma spectrometer by means of the same pneumatic transport system; the gamma spectrometer determines the induced gamma activity; the neutron flux and neutron fluence is calculated from the measured gamma activity and the known activation cross section of the materials in the activation probe; after the measurement the capsule is sent either to a disposal or storage (for later measurement). This paper summarizes the results of the feasibility assessment of the TBM NAS in the conceptual design phase, including design justification, identification of requirements based on the expected operating conditions in ITER and preliminary engineering assessment of the activation materials, irradiation ends integration in the modules design and the counting station.


Fusion Engineering and Design | 2010

Neutronics experiments on HCPB and HCLL TBM mock-ups in preparation of nuclear measurements in ITER

P. Batistoni; M. Angelone; P. Carconi; U. Fischer; K. Fleischer; Keitaro Kondo; A. Klix; I. Kodeli; D. Leichtle; L. Petrizzi; M. Pillon; W. Pohorecki; M. Sommer; A. Trkov; R. Villari


symposium on fusion technology | 2009

Design optimisation and measuring techniques for the neutronics experiment on a HCLL-TBM mock-up

P. Batistoni; M. Angelone; U. Fischer; D. Leichtle; A. Klix; I. Kodeli; L. Petrizzi; W. Pohorecki; A. Trkov; R. Villari


symposium on fusion technology | 2007

Measurement and analysis of neutron and gamma-ray flux spectra in a neutronics mock-up of the HCPB Test Blanket Module

K. Seidel; P. Batistoni; U. Fischer; H. Freiesleben; Axel Klix; D. Leichtle; E. Poenitz; S. Unholzer; R. Villari


Fusion Engineering and Design | 2014

The F4E programme on nuclear data validation and nuclear instrumentation techniques for TBM in ITER

D. Leichtle; M. Angelone; P. Batistoni; P. Calderoni; Ulrich Fischer; J. Izquierdo; A. Klix; I. Kodeli; Tadeusz Kuc; S. Lilley; M. Majerle; L. Packer; M. Pillon; W. Pohorecki; L. Snoj; R. Villari


Fusion Engineering and Design | 2014

Options and methods for instrumentation of Test Blanket Systems for experiment control and scientific mission

P. Calderoni; I. Ricapito; Milan Zmitko; Dobromir Panayotov; Joelle Vallory; D. Leichtle; Y. Poitevin


Fusion Engineering and Design | 2010

Sensitivity and uncertainty analyses of the HCLL mock-up experiment

D. Leichtle; U. Fischer; I. Kodeli; R.L. Perel; A. Klix; P. Batistoni; R. Villari


Fusion Engineering and Design | 2018

The ITER tokamak neutronics reference model C-Model

D. Leichtle; Bethany Colling; Marco Fabbri; Rafael Juarez; M. Loughlin; Raul Pampin; Eduard Polunovskiy; Arkady Serikov; Andrew Turner; L. Bertalot


Fusion Engineering and Design | 2015

Neutronics experiments, radiation detectors and nuclear techniques development in the EU in support of the TBM design for ITER

M. Angelone; Ulrich Fischer; D. Flammini; Paweł Jodłowski; A. Klix; I. Kodeli; Tadeusz Kuc; D. Leichtle; S. Lilley; M. Majerle; J. Novák; Beata Ostachowicz; L.W. Packer; M. Pillon; W. Pohorecki; V. Radulović; E. Šimečková; M. Štefánik; R. Villari


Fusion Engineering and Design | 2017

Methodological approach for DEMO neutronics in the European PPPT programme: Tools, data and analyses

Ulrich Fischer; Christian Bachmann; J.P. Catalan; T. Eade; D. Flammini; M.R. Gilbert; J.-Ch. Jaboulay; A. Konobeev; D. Leichtle; Lei Lu; Fadhel Malouch; F. Moro; P. Pereslavtsev; Yuefeng Qiu; J. Sanz; P. Sauvan; Gediminas Stankunas; Anton Travleev; Andrew Turner; F. Ogando; I. Palermo; R. Villari

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A. Klix

Karlsruhe Institute of Technology

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Ulrich Fischer

Karlsruhe Institute of Technology

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I. Kodeli

Organisation for Economic Co-operation and Development

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W. Pohorecki

AGH University of Science and Technology

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