Feasibility studies for the design of disposal vaults for multi-purpose containers (MPCs): construction, operation, ventilation and management of heat - 15175
Creators
- 1. MCM Consulting (United Kingdom)
- 2. Radioactive Waste Management Limited (United Kingdom)
- 3. Atkins UK (United Kingdom)
Description
The Nuclear Decommissioning Authority (NDA) subsidiary, Radioactive Waste Management Ltd (RWM) is responsible for the safe implementation of a Geological Disposal Facility (GDF) for radioactive waste in the UK. As part of their generic programme to underpin the planned designs for a GDF, work is ongoing to explore a range of possible geological disposal concepts. This work developed GDF concept designs for Multi-Purpose Containers (MPC) disposal in the generic host rock types considered: higher strength (crystalline), lower strength sedimentary (sedimentary / clay formations) and evaporite rocks. This paper is specific to concepts for the disposal of MPC for Pressurised Water Reactor (PWR) spent nuclear fuel (SF). The key outcomes of the feasibility studies to improve the understanding of the MPC disposal concept and the specific challenges to construct, operate, ventilate, manage heat and backfill associated with this concept are summarised in this paper. The management of the high loading of radiogenic heat (from 12 PWR SF assemblies in MPCs compared to 4 in 'standard' disposal containers) during an extended open phase (delayed backfilling of the disposal area) of up to 300 years was investigated. The concept designs developed demonstrate it is feasible to construct, operate and ventilate disposal vaults to accommodate open 'storage' periods required for transitional thermal decay of high heat generating waste in higher strength and lower strength sedimentary host rock types considered by RWM. This work focused on developing two contrasting disposal concepts which are applicable to both higher strength and lower strength rock environments; both of which illustrate how vault temperature, stability and groundwater inflows can be controlled to delay backfilling and allow MPC package thermal output to decrease. MPC disposal in evaporite rock does not require a cooling period due to its high thermal conductivity and favourable performance at higher temperatures; therefore the concept developed for this rock includes immediate backfilling of disposal tunnels. A clear understanding of the interactions and limitations associated with heat management during the open period was developed by investigation of a 'Heating Ventilation and Air-Conditioning System' (HVAC). It was concluded that removal of heat from the disposal tunnels / vaults is feasible, but introduces significant operational complexity. (authors)
Availability note (English)
Available from WM Symposia, Inc., PO Box 27646, 85285-7646 Tempe, AZ (US)Additional details
Identifiers
Publishing Information
- Imprint Pagination
- 16 p.
- Report number
- INIS-US--19-WM-15175
Conference
- Title
- Annual Waste Management Symposium
- Acronym
- WM2015
- Dates
- 15-19 Mar 2015
- Place
- Phoenix, AZ (United States)
INIS
- Country of Publication
- United States
- Country of Input or Organization
- France
- INIS RN
- 50067635
- Subject category
- S12: MANAGEMENT OF RADIOACTIVE WASTES, AND NON-RADIOACTIVE WASTES FROM NUCLEAR FACILITIES;
- Resource subtype / Literary indicator
- Conference, Non-conventional Literature
- Descriptors DEI
- AIR CONDITIONING; BACKFILLING; CLAYS; CONTAINERS; EVAPORITES; FEASIBILITY STUDIES; GROUND WATER; PWR TYPE REACTORS; RADIOACTIVE WASTE DISPOSAL; REACTOR DECOMMISSIONING; SPENT FUELS; TEMPERATURE RANGE 0400-1000 K; THERMAL CONDUCTIVITY; TUNNELS; UNDERGROUND DISPOSAL; VENTILATION
- Descriptors DEC
- DECOMMISSIONING; ENERGY SOURCES; ENRICHED URANIUM REACTORS; FUELS; HYDROGEN COMPOUNDS; MANAGEMENT; MATERIALS; MINERALS; NUCLEAR FUELS; OXYGEN COMPOUNDS; PHYSICAL PROPERTIES; POWER REACTORS; RADIOACTIVE WASTE MANAGEMENT; REACTOR LIFE CYCLE; REACTOR MATERIALS; REACTORS; ROCKS; SEDIMENTARY ROCKS; SILICATE MINERALS; TEMPERATURE RANGE; THERMAL REACTORS; THERMODYNAMIC PROPERTIES; UNDERGROUND FACILITIES; WASTE DISPOSAL; WASTE MANAGEMENT; WATER; WATER COOLED REACTORS; WATER MODERATED REACTORS
Optional Information
- Notes
- 15 refs.; Available online at: http://archive.wmsym.org/2015/index.html