Published September 2008 | Version v1
Book

Long-term stability of the near-field about high-level radioactive waste repository in thermo-hydro-mechanical coupling action condition

  • 1. University of Science and Technology Beijing (China)
  • 2. Beijing Research Institute of Uranium Geology (China)

Description

It is a long-term process for the high-level radioactive waste repository, from opening, construction to end of its service. The long-term stability of the near-field is the key issue for the design of HLW repository because the opening and heat generated from the HLW. Through a nationwide investigation, Beishan area, a Gobi desert in Gansu province, is considered as a suitable candidate and GMZ bentonite deposit which located in Xinghe County, Inner Mongolia has been proposed for the supplier of buffer/backfill material for HLW geological repository in China. According to the R and D guide of high-level radioactive waste disposal in China, the 3D model of HLW repository with high-level radioactive waste, canister and buffer/backfill material is established using FLAC3D. To take into account in situ stress, geothermal gradient, groundwater, thermal relief of HLW and swelling pressure of buffer/backfill material, the evolution of temperature, stress and displacement of HLW repository under thermo-mechanical coupling, hydro-mechanical coupling and thermo-hydro-mechanical coupling conditions was analyzed respectively. The long-term stability of HLW repository in Beishan area was studied. (authors)

Part of:
Proceedings of the 2nd academic seminar on waste underground disposal

Additional details

Publishing Information

Publisher
Chinese Society for Rock Mechanics and Engineering
Imprint Place
Beijing (China)
Imprint Title
Proceedings of the 2nd academic seminar on waste underground disposal
Imprint Pagination
589 p.
Journal Page Range
p. 267-274

Conference

Title
2. academic seminar on waste underground disposal
Dates
Sep 2008
Place
Dunhuang (China)

Optional Information

Notes
8 figs., 15 refs.