作者: L. C. Johnson , , Cris W. Barnes , K. Ebisawa , A. V. Krasilnikov
DOI: 10.1007/978-1-4615-5353-3_50
关键词: Fusion power 、 Alpha particle 、 Spectrometer 、 Nuclear engineering 、 Fission 、 Physics 、 Range (particle radiation) 、 Power density 、 Neutron activation 、 Neutron
摘要: In order for ITER to meet its operational and programmatic goals, it will be necessary measure a wide range of plasma parameters.1–3 Some the required parameters — e.g., neutron yield, fusion power density, ion temperature profile in core plasma, characteristics confined escaping alpha particle populations are best measured by product diagnostic techniques. To make these measurements, have dedicated systems,4 including radial vertical cameras, gamma-ray spectrometers, internal external fission chambers, activation system, diagnostics particles. Engineering integration many systems is progress,5–11 other under investigation.