Published April 1994 | Version v1
Report Open

A passively-safe fusion reactor blanket with helium coolant and steel structure

Description

Helium is attractive for use as a fusion blanket coolant for a number of reasons. It is neutronically and chemically inert, nonmagnetic, and will not change phase during any off-normal or accident condition. A significant disadvantage of helium, however, is its low density and volumetric heat capacity. This disadvantage manifests itself most clearly during undercooling accident conditions such as a loss of coolant accident (LOCA) or a loss of flow accident (LOFA). This thesis describes a new helium-cooled tritium breeding blanket concept which performs significantly better during such accidents than current designs. The proposed blanket uses reduced-activation ferritic steel as a structural material and is designed for neutron wall loads exceeding 4 MW/m2. The proposed geometry is based on the nested-shell concept developed by Wong, but some novel features are used to reduce the severity of the first wall temperature excursion. These features include the following: (1) A ''beryllium-joint'' concept is introduced, which allows solid beryllium slabs to be used as a thermal conduction path from the first wall to the cooler portions of the blanket. The joint concept allows for significant swelling of the beryllium (10 percent or more) without developing large stresses in the blanket structure. (2) Natural circulation of the coolant in the water-cooled shield is used to maintain shield temperatures below 100 degrees C, thus maintaining a heat sink close to the blanket during the accident. This ensures the long-term passive safety of the blanket

Availability note (English)

MF available from INIS under the Report Number; Also available from OSTI as DE94018656; NTIS; US Govt. Printing Office Dep.

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Additional details

Publishing Information

Imprint Pagination
395 p.
Report number
DOE/ER/54235--2

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
26018850
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Resource subtype / Literary indicator
Thesis
Descriptors DEI
BREEDING BLANKETS; COOLING SYSTEMS; DESIGN; HEAT TRANSFER; HELIUM; HYDRAULICS; LOSS OF COOLANT; REACTOR SAFETY; SHIELDING; THERMONUCLEAR REACTOR MATERIALS
Descriptors DEC
ACCIDENTS; ELEMENTS; ENERGY TRANSFER; MATERIALS; NONMETALS; RARE GASES; REACTOR ACCIDENTS; SAFETY

Optional Information

Contract/Grant/Project number
Contract FG02-94ER54235
Funding organization
USDOE, Washington, DC (United States).
Secondary number(s)
PFC/RR--94-4.