排序方式: 共有7条查询结果,搜索用时 93 毫秒
1
1.
Razumova K. A. Dremin M. M. Kasyanova N. V. Kirneva N. A. Klyuchnikov L. A. Krupin V. A. Krylov S. V. Lysenko S. E. Notkin G. E. Sarychev D. V. Soloviev N. A. Chukanov M. V. Ongena J. Messiaen A. M. 《Plasma Physics Reports》2020,46(4):337-348
Plasma Physics Reports - The phenomenon of improved energy confinement during radiative cooling at the plasma edge was studied experimentally in the T-10 tokamak. It was shown that the effect is... 相似文献
2.
S. V. Serov S. N. Tugarinov L. A. Klyuchnikov V. A. Krupin M. von Hellermann 《Plasma Physics Reports》2017,43(12):1123-1131
The applicability of the CXSFIT code to process experimental data from Charge-eXchange Recombination Spectroscopy (CXRS) diagnostics at the T-10 tokamak is studied with a view to its further use for processing experimental data at the ITER facility. The design and operating principle of the CXRS diagnostics are described. The main methods for processing the CXRS spectra of the 5291-Å line of C5+ ions at the T-10 tokamak (with and without subtraction of parasitic emission from the edge plasma) are analyzed. The method of averaging the CXRS spectra over several shots, which is used at the T-10 tokamak to increase the signal-to-noise ratio, is described. The approximation of the spectrum by a set of Gaussian components is used to identify the active CXRS line in the measured spectrum. Using the CXSFIT code, the ion temperature in ohmic discharges and discharges with auxiliary electron cyclotron resonance heating (ECRH) at the T-10 tokamak is calculated from the CXRS spectra of the 5291-Å line. The time behavior of the ion temperature profile in different ohmic heating modes is studied. The temperature profile dependence on the ECRH power is measured, and the dynamics of ECR removal of carbon nuclei from the T-10 plasma is described. Experimental data from the CXRS diagnostics at T-10 substantially contribute to the implementation of physical programs of studies on heat and particle transport in tokamak plasmas and investigation of geodesic acoustic mode properties. 相似文献
3.
4.
Dnestrovskij Yu. N. Danilov A. V. Dnestrovskij A. Yu. Klyuchnikov L. A. Lysenko S. E. Melnikov A. V. Nemets A. R. Nurgaliev M. R. Subbotin G. F. Soloviev N. A. Sushkov A. V. Sychugov D. Yu. Cherkasov S. V. 《Plasma Physics Reports》2020,46(5):477-489
Plasma Physics Reports - In the T-10 tokamak, the results of plasma heating at the first and second electron cyclotron (EC) harmonics differ substantially. However, the problem is multi-parametric,... 相似文献
5.
K. A. Razumova A. A. Borschegovskiy E. P. Gorbunov M. M. Dremin N. V. Kasyanova N. A. Kirneva A. Ya. Kislov L. A. Klyuchnikov V. A. Krupin S. V. Krylov S. E. Lysenko A. V. Melnikov T. B. Myalton A. R. Nemets G. E. Notkin M. R. Nurgaliev D. V. Sarychev A. V. Sushkov V. V. Chistyakov J. Ongena A. Messiaen 《Plasma Physics Reports》2017,43(11):1043-1051
Improvement of plasma energy confinement in the T-10 tokamak by injection of impurity gases was studied experimentally. Injection of Ne and He in the ohmic and ECR heating regimes allows one to separate the dependences of energy confinement on the plasma density and on the edge plasma cooling rate. It is shown that the well-known dependence of the energy confinement time on the plasma density is, in fact, the dependence on the radiative loss power. This phenomenon can be explained by plasma self-organization. The experiments are described by a thermodynamic model for self-organized plasma in which the transport coefficient depends on the difference between the actual and self-consistent pressure profiles. The reduction in the heat flux at the plasma edge due to radiative cooling leads to a decrease in the transport coefficient in this region and, accordingly, improves energy confinement. Results of approximate model calculations for experiments with Ne injection are presented. 相似文献
6.
V. A. Krupin S. N. Tugarinov A. G. Barsukov A. Yu. Dnestrovskij L. A. Klyuchnikov K. V. Korobov S. A. Krasnyanskii N. N. Naumenko A. R. Nemets A. V. Sushkov G. N. Tilinin 《Plasma Physics Reports》2013,39(8):632-643
Charge-exchange recombination spectroscopy (CXRS) based on a diagnostic neutral beam has been developed at the T-10 tokamak. The diagnostics allows one to measure the ion temperature profile in the cross section of the plasma column. In T-10 experiments, the measurement technique was adjusted and the elements of the CXRS diagnostics for ITER were tested. The used spectroscopic equipment makes it possible to reliably determine the ion temperature from the Doppler broadening of impurity lines (helium, carbon), as well as of the spectral lines of the working gas. The profiles of the plasma ion temperature in deuterium and helium discharges were measured at different plasma currents and densities, including with the use of active Doppler measurements of lines of different elements. The validity and reliability of ion temperature measurements performed by means of the developed CXRS diagnostics are analyzed. 相似文献
7.
1