Measurement of DT and DD neutrons with a TOF spectrometer for determination of fuel ion density ratio in ITER
نویسندگان
چکیده
Measurement of the fuel ion density ratio, nD/nT, is required for burning control in ITER. The measured nD/nT ratio must be fed back in real time. A neutron measurement system to measure nD/nT should be operable at high counting rate. The estimated number of emitted DT neutrons is 200 times higher than that of DD neutrons under the ITER standard operation conditions. A neutron measurement system was developed using an intense Cockcroft-Walton type DT neutron generator, where DT neutrons are dominant with slight DD neutron contamination in the neutron beam. The measurement instrument was a TOF spectrometer. Signals originating from each neutron must be distinguished to measure the fuel ratio. We have developed a circuit system with discrimination windows to distinguish each signal pulse, and this system was used to measured DT and DD neutrons separately and simultaneously. The experimental results suggested that this system is suitable for measurement of fuel ion density ratio in ITER.
منابع مشابه
Neutron spectroscopy as a fuel ion ratio diagnostic: lessons from JET and prospects for ITER.
The determination of the fuel ion ratio n(t)/n(d) in ITER is required at a precision of 20%, time resolution of 100 ms, spatial resolution of a/10, and over a range of 0.01<n(T)/n(D)<10. We use simplified but realistic Monte Carlo models of ITER to assess the possibility to use neutron emission spectroscopy (NES) for such measurements. We show that NES meets the requirements for ion temperature...
متن کاملشرایط گذار به اشتعال غیرتعادلی در افروزش حجمی هدفهای کروی ساده
In this Research, the transition from equilibrium ignition to non-equilibrium burn was studied by DEIRA4 code for simple spherical targets with the dimensions of several mm. It consisted of inner DT fuel and outer Au layers driven by the 209Bi heavy ions beam. Because of their higher plasma opacity, it was expected that they could trap much of the produced charged particles, radiation or even f...
متن کاملIndications of flow near maximum compression in layered deuterium-tritium implosions at the National Ignition Facility.
An accurate understanding of burn dynamics in implosions of cryogenically layered deuterium (D) and tritium (T) filled capsules, obtained partly through precision diagnosis of these experiments, is essential for assessing the impediments to achieving ignition at the National Ignition Facility. We present measurements of neutrons from such implosions. The apparent ion temperatures T_{ion} are in...
متن کاملبهره انرژی ساچمه هایی بااشتعال جرقه ای در همجوشی به روش لختی
In order to determine the fusion energy gain in a target due to inertial confinement fusion, it is necessary to solve hydrodynamic equations governed on plasma behavior during confinement time. To compress spherical multilayer targets having fuel in the central part, they are irradiated by laser or heavy ion beams. A suitable mass ratio of a pusher is used to ignite the central part of the ta...
متن کاملPFC / JA - 93 - 25 ITER Millimeter - Wave CTS Diagnostic Option
Localized alpha-particle velocity distribution and density, ion temperature, DT fuel ratio, and internal magnetic field pitch angle can all be potentially diagnosed by a collective Thomson scattering system. Relativistic electron cyclotron calculations and TORAY ray tracing for 6 tesla ITER parameters indicate that 90 GHz is an optimum frequency for this diagnostic. With 400 kW at the plasma an...
متن کامل