Simulations of Fusion Power Measurements by Monitors of Neutron Flux in Evolving ITER Plasma

We describe the synthetic diagnostics (SD) of the preliminary design of divertor neutron flux monitor (DNFM) dedicated for simulations of the neutron flux measurements in ITER. It is based on the technique developed for fast simulation of plasma evolution keeping the accuracy of comprehensive 3D Mon...

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Veröffentlicht in:Journal of fusion energy 2020-04, Vol.39 (1-2), p.40-52
Hauptverfasser: Kovalev, A. O., Polevoi, A. R., Polunovskiy, E. I., Bertalot, L., Kashchuk, Yu. A., Portnov, D. V., Loarte, A., Loughlin, M., Pinches, S. D.
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container_end_page 52
container_issue 1-2
container_start_page 40
container_title Journal of fusion energy
container_volume 39
creator Kovalev, A. O.
Polevoi, A. R.
Polunovskiy, E. I.
Bertalot, L.
Kashchuk, Yu. A.
Portnov, D. V.
Loarte, A.
Loughlin, M.
Pinches, S. D.
description We describe the synthetic diagnostics (SD) of the preliminary design of divertor neutron flux monitor (DNFM) dedicated for simulations of the neutron flux measurements in ITER. It is based on the technique developed for fast simulation of plasma evolution keeping the accuracy of comprehensive 3D Monte Carlo simulations. The developed technique is also applicable to simulations of diagnostics signals for a range of neutron and optical diagnostics in tokamak plasmas and enables fast simulations of the local radiation fields and diagnostic signals for arbitrarily distributed volumetric sources. The capabilities of the DNFM SD are demonstrated for simulations of the ITER baseline scenario.
doi_str_mv 10.1007/s10894-020-00232-x
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subjects Accuracy
Energy Systems
Geometry
Monte Carlo method
Monte Carlo simulation
Neutron flux
Neutrons
Nuclear Energy
Nuclear Fusion
Nuclear power plants
Original Research
Physics
Physics and Astronomy
Plasma
Plasma Physics
Power measurement
Preliminary designs
Radiation
Sensors
Signal processing
Simulation
Sustainable Development
Tokamaks
title Simulations of Fusion Power Measurements by Monitors of Neutron Flux in Evolving ITER Plasma
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