Development of a secondary neutron fluence standard at GELINA

Advancements in Nuclear Instrumentation Measurement Methods and their Applications(2013)

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摘要
The MetroFission project, a Joint Research Project within the European Metrology Research Program, aims at addressing a number of metrological problems involved in the design of proposed Generation IV nuclear reactors. One of the objectives of this multidisciplinary project is the improvement of neutron cross section measurement techniques in order to arrive at uncertainties as required for the design and safety assessment of new generation power plants and fuel cycles. This objective is in line with the "Uncertainty and target accuracy assessment for innovative systems using recent covariance data evaluations" published by a working party of the OECD Nuclear Energy Agency in 2008. These requests are often very challenging, being at or beyond the state-of-the-art in neutron measurements, which is set by self-normalizing methods and the neutron data standards used at laboratories where the data are measured. A secondary neutron fluence standard has been developed and calibrated at the neutron time-of-flight facility GELINA of the JRC's Institute for Reference Materials and Measurements (IRMM). It consists of a flux monitor, a reference ionization chamber containing a 10B layer and a 235U layer, and a parallel plate ionization chamber with 8 well characterized 235U deposits. These devices are used to determine the neutron fluence, based on the well-known neutron induced fission reaction on 235U. All deposits have been prepared and characterized at the IRMM target preparation lab. The secondary fluence standard at the GELINA facility can be used for reliable determination of the efficiency of fluence measurement devices used in neutron data measurements at IRMM and elsewhere. It is an essential tool to reliably calibrate fluence normalization devices used in neutron time-of-flight cross section measurements.
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fission of uranium,fission reactor instrumentation,fission reactor theory,10b layer,235u layer,235u(n,x),european metrology research program,gelina facility,generation iv nuclear reactors,institute for reference materials and measurements,joint research project,metrofission project,oecd nuclear energy agency,covariance data evaluations",fluence normalization devices,flux monitor,fuel cycles,ionization chamber,metrological problems,multidisciplinary project,neutron cross section measurement techniques,neutron data measurements,neutron fluence,neutron measurements,neutron time-of-flight cross section measurements,neutron time-of-flight facility,new generation power plants,secondary neutron fluence,self-normalizing methods,generation iv reactor,metrology,neutron cross-section,nuclear data,inductors,neutron cross section,neutrons
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