Refine your search:     
Report No.
 - 
Search Results: Records 1-5 displayed on this page of 5
  • 1

Presentation/Publication Type

Initialising ...

Refine

Journal/Book Title

Initialising ...

Meeting title

Initialising ...

First Author

Initialising ...

Keyword

Initialising ...

Language

Initialising ...

Publication Year

Initialising ...

Held year of conference

Initialising ...

Save select records

JAEA Reports

TIARA annual report 2000

Advanced Radiation Technology Center

JAERI-Review 2001-039, 328 Pages, 2001/11

JAERI-Review-2001-039.pdf:41.69MB

no abstracts in English

JAEA Reports

JAERI TIARA annual report 1999

Advanced Radiation Technology Center

JAERI-Review 2000-024, 326 Pages, 2000/10

JAERI-Review-2000-024.pdf:33.65MB

no abstracts in English

JAEA Reports

TIARA annual report 1998

Advanced Radiation Technology Center

JAERI-Review 99-025, p.298 - 0, 1999/10

JAERI-Review-99-025.pdf:23.84MB

no abstracts in English

Journal Articles

Hydrogen and deuterium transport through type 304 stainless steel at elevated temperatures

Katsuta, Hiroji; Furukawa, Kazuo

Journal of Nuclear Science and Technology, 18(2), p.143 - 151, 1981/00

 Times Cited Count:44 Percentile:96.41(Nuclear Science & Technology)

no abstracts in English

Oral presentation

Global full-f Gyrokinetic simulations of isotope scaling in ion temperature gradient driven turbulence

Idomura, Yasuhiro

no journal, , 

Numerical experiments of hydrogen (H) and deuterium (D) plasmas with ion and electron heating conditions were conducted using the Gyrokinetic Toroidal 5D full-f Eulerian code GT5D. The energy confinement time in the ion heated numerical experiments was almost independent of isotope mass, and the plasma size scaling gives Bohm scaling. On the other hand, the electron heated numerical experiments showed a clear isotope effect. In this case, in addition to the plasma size scaling, the isotope dependency of the collisional energy transfer from electrons to ions contributed to the total isotope scaling by enhancing the ion heat transport channel. Systematic electron heating power scans for the H and D plasmas showed similar ion and electron temperature profiles at an H to D heating power ratio of 1.4. These results qualitatively agree with the isotope scaling in L-mode experiments with ion and electron heating conditions.

5 (Records 1-5 displayed on this page)
  • 1