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JAEA Reports

A Kinetics code for criticality accident analysis of fissile solution systems: AGNES2

Nakajima, Ken; Yamane, Yuichi; Miyoshi, Yoshinori

JAERI-Data/Code 2002-004, 42 Pages, 2002/03

JAERI-Data-Code-2002-004.pdf:1.51MB

no abstracts in English

JAEA Reports

Studies on release behavior of radioactive noble gases from fuel solution to gas phase under simulated nuclear criticality accident (Contract research)

Abe, Hitoshi; Tashiro, Shinsuke; Koike, Tadao; Okagawa, Seigo; Uchiyama, Gunzo

JAERI-Research 2001-027, 20 Pages, 2001/03

JAERI-Research-2001-027.pdf:1.0MB

no abstracts in English

Journal Articles

Development of solution behavior observation system under criticality accident conditions in TRACY

Ogawa, Kazuhiko; Morita, Toshio*; Yanagisawa, Hiroshi; Aizawa, Eiju; Sakuraba, Koichi; Sugawara, Susumu; Ono, Akio

Journal of Nuclear Science and Technology, 37(12), p.1088 - 1097, 2000/12

no abstracts in English

JAEA Reports

Study on the release behavior of radioactive iodine spices and noble gases from the fuel solution under simulated nuclear criticality accident (Contract research)

Abe, Hitoshi; Tashiro, Shinsuke; Nagai, Hitoshi; Koike, Tadao; Okagawa, Seigo; Murata, Mikio

JAERI-Tech 99-067, p.23 - 0, 1999/09

JAERI-Tech-99-067.pdf:1.37MB

no abstracts in English

JAEA Reports

Development of a new simulation code for evaluation of criticality transients involving fissile solution boiling

B.Basoglu*; Yamamoto, Toshihiro; ; Nomura, Yasushi

JAERI-Data/Code 98-011, 89 Pages, 1998/03

JAERI-Data-Code-98-011.pdf:4.02MB

no abstracts in English

Journal Articles

Reaction mechanisms of SiC fiber synthesis from radiation cured polycarbosilane fiber

Sugimoto, Masaki; Okamura, K.*; Seguchi, Tadao

Material Chemistry 96: Proc. of Int. Symp. on Material Chemistry in Nuclear Environment, 0, p.587 - 593, 1996/00

no abstracts in English

Journal Articles

Reaction mechanism of the pyrolysis of polycarbosilane and polycarbosilazane as ceramic precursors

Narisawa, Masaki*; Shimoda, M.*; Okamura, K.*; Sugimoto, Masaki; Seguchi, Tadao

Bulletin of the Chemical Society of Japan, 68, p.1098 - 1104, 1995/00

 Times Cited Count:35 Percentile:82.03(Chemistry, Multidisciplinary)

no abstracts in English

Journal Articles

Reaction mechanisms of SiC fiber synthesis from radiation cured polycarbosilane fiber

Sugimoto, Masaki; Okamura, K.*; Seguchi, Tadao

High-Temperature Ceramic-Matrix Composites II (HT-CMC2), 0, p.293 - 298, 1995/00

no abstracts in English

Journal Articles

Study on life estimation of cable insulation by gas evolution and oxygen consumption during radiation and thermal aging

*; *; *; Yagi, Toshiaki; Seguchi, Tadao

Mitsubishi Densen Kogyo Jiho, (87), p.45 - 49, 1994/04

no abstracts in English

Journal Articles

Electron spin resonance studies in process of ceramics formation from organosilicon polymers

Narisawa, Masaki*; *; Sugimoto, Masaki; Okamura, K.*; Seguchi, Tadao

Ceramics,Powders,Corrosion and Advanced Processing (Trans. of Materials Research Soc. Jpn., Vol. 14A), 0, p.827 - 830, 1994/00

no abstracts in English

Journal Articles

Degradation of perfluoroalkylpolyether oils by $$gamma$$-ray irradiation under vacuum conditions

*; *; Seguchi, Tadao; *

Toraiborojisuto, 36(10), p.821 - 826, 1991/10

no abstracts in English

JAEA Reports

Pyrolysis and Melt Solidification Test of $$beta$$$$gamma$$ Solid Wastes by Microwave Heating

; *; ; ; ; ; *; *

JAERI-M 84-001, 76 Pages, 1984/02

JAERI-M-84-001.pdf:3.16MB

no abstracts in English

JAEA Reports

Oral presentation

Average time profile of energy release fluctuated due to radiolytic gas void in criticality accident

Yamane, Yuichi

no journal, , 

For the criticality accident with intense oscillation in power due to radiolytic gas void in nuclear fuel solution, an equation has been derived based on pseudo-steady state method, by which equation the fission-energy is expressed as a function of elapsed time and inserted reactivity. It has been confirmed that the results obtained by using the equation show better agreement to experimental data than those obtained by pseudo-steady state method.

Patent

鋼材

広田 憲亮; 橘 幸男

竹田 貴代子*; 正木 康浩*

JP, 2020-182368  Patent licensing information

【課題】ISプロセスを実施する環境下においても優れた耐食性を発揮し、かつ良好な加工性および強度を有する鋼材を提供する。 【解決手段】化学組成が、質量%で、C:0.05~0.10%、SI:0.10~0.50%、AL:3.0~6.0%、MN:0.30~1.50%、P:0.05%以下、S:0.02%以下、N:0.01%以下、NI:25.0~40.0%、CR:17.0~25.0%、B:0.0015~0.0080%、TI:0.15~0.60%、残部:FEおよび不純物である、鋼材。

15 (Records 1-15 displayed on this page)
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