Published 2008 | Version v1
Miscellaneous

A study of a small nuclear power plant system for district heating

  • 1. Hokkaido Univ., Graduate School of Engineering, Sapporo, Hokkaido (Japan)

Description

We have studied nuclear power plant for district heating. Already some towns and villages in Hokkaido have requested small reactor for district heating. Using existing technology allows us to shorten development period and to keep a lid on development cost. We decided to develop new reactor based on 'MUTSU' reactor technology. 'MUTSU' had already proved its safety. And 'MUTSU' reactor was boron free reactor. It allows plant system to become more compact and simple. And load following capability by core reactivity become bigger. It means to reduce control rod movement. It leads to dependability enhancement. We calculated burn-up calculation of erbium addition fuel. In the result the core life became about 10 years. In the district heating system, there are not only district heating but also snow melting with warm water. It uses steam condenser's heat, which are only discharged now. This small plant has passive safety system. It is natural cooling of containment vessel. In case of loss of coolant accident, decay heat can remove by natural convection air cooling after 6 hours. Decay heat within 6 hours can remove by evaporative heat transfer of pool on containment vessel. (author)

Part of:
NTHAS6: Proceedings of the 6th Japan-Korea symposium on nuclear thermal hydraulics and safety

Additional details

Publishing Information

Imprint Title
NTHAS6: Proceedings of the 6th Japan-Korea symposium on nuclear thermal hydraulics and safety
Imprint Pagination
818 p.
Journal Page Range
[4 p.]

Conference

Title
6. Japan-Korea symposium on nuclear thermal hydraulics and safety
Acronym
NTHAS6
Dates
24-27 Nov 2008
Place
Nago, Okinawa (Japan)

Optional Information

Notes
This USB flash memory can be used for WINDOWS 2000/XP, MACINTOSH 9.x/10.x; Acrobat Reader is included; Data in PDF format, Folder Name: FullPaper, Paper ID: N6P1073.pdf; 5 refs., 6 figs., 3 tabs.