Safety design consideration for HTGR coupling with hydrogen production plant
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Kazuhiko Kunitomi | Shigeaki Nakagawa | Hirofumi Ohashi | Hiroyuki Sato | Yukio Tachibana | Hiroyuki Sato | K. Kunitomi | H. Ohashi | S. Nakagawa | Y. Tachibana
[1] Michael E. Barsan,et al. NIOSH pocket guide to chemical hazards , 2007 .
[2] Kazuhiko Kunitomi,et al. Conceptual design of hydrogen production system with thermochemical water-splitting iodine–sulphur process utilizing heat from the high-temperature gas-cooled reactor HTTR , 2007 .
[3] Ermak. User's manual for SLAB: An atmospheric dispersion model for denser-than-air-releases , 1990 .
[4] Kazuhiko Kunitomi,et al. Safety Assessment of VHTR Hydrogen Production System against Fire, Explosion and Acute Toxicity , 2008 .
[5] Kazuhiko Kunitomi,et al. Analysis on Characteristic of Hydrogen Gas Dispersion and Evaluation Method of Blast Overpressure in VHTR Hydrogen Production System , 2006 .
[6] Kazuhiko Kunitomi,et al. JAEA'S VHTR FOR HYDROGEN AND ELECTRICITY COGENERATION : GTHTR300C , 2007 .
[7] Kazuhiko Kunitomi,et al. Hydrogen Production by High-Temperature Gas-Cooled Reactor; Conceptual Design of Advanced Process Heat Exchangers of the HTTR-IS Hydrogen Production System , 2008 .
[8] K. Kunitomi,et al. Analysis of Tritium Behavior in Very High Temperature Gas-Cooled Reactor Coupled with Thermochemical Iodine-Sulfur Process for Hydrogen Production , 2008 .
[9] Kazuhiko Kunitomi,et al. Fundamental Philosophy on the Safety Design of the HTTR-IS Hydrogen Production System , 2007 .
[10] Richard R. Schultz,et al. RELAP5/MOD3 Code Manual , 1992 .
[11] Paul S. Pickard,et al. Next Generation Nuclear Plant Phenomena Identification and Ranking Tables (PIRTs) Volume 6: Process Heat and Hydrogen Co-Generation PIRTs , 2008 .