Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Pavel R. Goncharov"'
Publikováno v:
Fusion Engineering and Design. 123:440-443
Neutral Beam Current Drive (NBCD) is considered as a highly attractive mechanism for a steady state regime in such contemporary projects as a tokamak based Fusion Neutron Source (FNS) or a DEMO type thermonuclear reactor. In this report numerical cal
Autor:
Pavel R Goncharov, N. N. Bakharev
Publikováno v:
Plasma Physics and Controlled Fusion. 62:125016
The paper is devoted to calculations of anisotropic spectra of nuclear fusion products in a compact tokamak. The knowledge of these spectra is essential for estimations of the first wall load by neutron radiation and other fast particle fluxes from t
Autor:
Pavel R Goncharov
Publikováno v:
Plasma Physics and Controlled Fusion. 62:072001
Energetic and angular distributions of products of nuclear fusion reactions involving two colliding nuclei and two resulting particles are important in neutron spectrometry, as well as in studies of the behaviour of fast electrically charged particle
Autor:
Tetsuo OZAKI, Pavel R. GONCHAROV, Evgeny A. VESHCHEV, Shigeru SUDO, Tetsuo SEKI, Hirofumi KASAHARA, Yuichi TAKASE, Takuya OHSAKO, null High-Energy Particle Group, null LHD Experimental Group
Publikováno v:
Plasma and Fusion Research. 3:S1084-S1084
In higher harmonic ion cyclotron resonance heating using the fast wave, a helium resonance layer appears near the plasma core. It is very important to detect the helium ions to investigate the confinement of α particles, which are produced by a nucl
Autor:
Evgeny A. VESHCHEV, Pavel R. GONCHAROV, Tetsuo OZAKI, Shigeru SUDO, null LHD Experimental Group
Publikováno v:
Plasma and Fusion Research. 3:S1035-S1035
Multidirectional diagnostics employing high-resolution atomic energy spectrometers [1, 2] are being used to study the ion component heating mechanisms and fast ion confinement in helical plasmas. Since the natural atomic flux source is not localized
Autor:
Evgeny A. VESHCHEV, Tetsuo OZAKI, Pavel R. GONCHAROV, Shigeru SUDO, null LHD Experimental Group
Publikováno v:
Plasma and Fusion Research. 2:S1073-S1073
A new multi-channel diagnostic for fast particles has been developed and successfully tested on the Large Helical Device (LHD) during 2005-2006 experimental campaign. The number of simultaneously used channels was significantly improved from 2 to 20