NEA FEP DB Lists SKB PSAR SF…t 1 International FEP List 3.1 International FEP List 3 NAGRA Opalinus Clay (OPA) FEP List, 2002 1 ONDRAF/NIRAS FEP LIST 1 SKB PSAR SFK List 1 ONDRAF/NIRAS FEP List - Near surface disposal at Dessel (cAt project)) 1.1 ON List - Surface disposal at Dessel (category A) 1 List Refere…ces FEPs List References List Weblinks List Media Export
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SKB PSAR SFK List - Version 1
References

  • SKB PSAR SFK List
    1. 1 INITIAL STATE
      1. 1.1 GENERAL (ISGen)
        1. 1.1.1 Major mishaps/accidents/sabotage (ISGen01)
        2. 1.1.2 Effects of phased operation (ISGen02)
        3. 1.1.3 Incomplete closure (ISGen03)
        4. 1.1.4 Monitoring activities (ISGen04)
      2. 1.2 CAST IRON INSERT AND COPPER CANISTER (ISC)
        1. 1.2.1 Mishaps - canister (ISC01)
        2. 1.2.2 Design deviations - canister (ISC02)
      3. 1.3 BUFFER (ISBu)
        1. 1.3.1 Mishaps - buffer (ISBu01)
        2. 1.3.2 Design deviations - buffer (ISBu02)
      4. 1.4 BOTTOM PLATE IN DEPOSITION HOLES (ISBP)
        1. 1.4.1 Mishaps - bottom plate in deposition holes (ISBP01)
        2. 1.4.2 Design deviations - bottom plate in deposition holes (ISBP02)
      5. 1.5 BACKFILL IN TUNNELS (ISBfT)
        1. 1.5.1 Mishaps - backfill in tunnels (ISBfT01)
        2. 1.5.2 Design deviations - backfill in tunnels (ISBfT02)
      6. 1.6 TUNNEL PLUGS (ISPg)
        1. 1.6.1 Mishaps - plugs (ISPg01)
        2. 1.6.2 Design deviations - plugs (ISPg02)
      7. 1.7 CENTRAL AREA (ISCA)
        1. 1.7.1 Mishaps - central area (ISCA01)
        2. 1.7.2 Design deviations - central area (ISCA02)
      8. 1.8 TOP SEAL (ISTS)
        1. 1.8.1 Mishaps/Design deviations - top seal (ISTS01)
      9. 1.9 BOREHOLE SEALS (ISBhS)
        1. 1.9.1 Mishaps/Design deviations - borehole seals (ISBhS01)
    2. 2 INTERNAL PROCESS
      1. 2.1 FUEL/CAVITY IN CANISTER (F)
        1. 2.1.1 Radioactive decay (F01)
        2. 2.1.2 Radiation attenuation/heat generation (F02)
        3. 2.1.3 Induced fission (criticality) (F03)
        4. 2.1.4 Heat transport (F04)
        5. 2.1.5 Water and gas transport in canister cavity, boiling/condensation (F05)
        6. 2.1.6 Mechanical cladding failure (F06)
        7. 2.1.7 Structural evolution of fuel matrix (F07)
        8. 2.1.8 Advection and diffusion (F08)
        9. 2.1.9 Residual gas radiolysis/ acid formation (F09)
        10. 2.1.10 Water radiolysis (F10)
        11. 2.1.11 Metal corrosion (F11)
        12. 2.1.12 Fuel dissolution (F12)
        13. 2.1.13 Dissolution of gap inventory (F13)
        14. 2.1.14 Speciation of radionuclides, colloid formation (F14)
        15. 2.1.15 Helium production (F15)
        16. 2.1.16 Chemical alteration of the fuel matrix (F16)
        17. 2.1.17 Radionuclide transport (F17)
      2. 2.2 CAST IRON INSERT AND COPPER CANISTER (C)
        1. 2.2.1 Radiation attenuation/ heat generation (C01)
        2. 2.2.2 Heat transport (C02)
        3. 2.2.3 Deformation of cast iron insert (C03)
        4. 2.2.4 Deformation of copper canister from external pressure (C04)
        5. 2.2.5 Thermal expansion (both cast iron insert and copper canister) (C05)
        6. 2.2.6 Copper deformation from internal corrosion products (C06)
        7. 2.2.7 Radiation effects (C07)
        8. 2.2.8 Corrosion of cast iron insert (C08)
        9. 2.2.9 Galvanic corrosion (C09)
        10. 2.2.10 Stress corrosion cracking of cast iron insert (C10)
        11. 2.2.11 Corrosion of copper canister (C11)
        12. 2.2.12 Stress corrosion cracking of the copper canister (C12)
        13. 2.2.13 Earth currents - stray current corrosion (C13)
        14. 2.2.14 Deposition of salts on canister surface (C14)
        15. 2.2.15 Radionuclide transport (C15)
        16. 2.2.16 Hydrogen embrittlement of copper canister (C16)
      3. 2.3 BUFFER (Bu)
        1. 2.3.1 Radiation attenuation/ heat generation (Bu01)
        2. 2.3.2 Heat transport (Bu02)
        3. 2.3.3 Freezing (Bu03)
        4. 2.3.4 Water uptake and transport for unsaturated conditions (Bu04)
        5. 2.3.5 Water transport for saturated conditions (Bu05)
        6. 2.3.6 Gas transport/dissolution (Bu06)
        7. 2.3.7 Piping/erosion (Bu07)
        8. 2.3.8 Swelling/mass redistribution (Bu08)
        9. 2.3.9 Liquefaction (Bu09)
        10. 2.3.10 Advective transport of species (Bu10)
        11. 2.3.11 Diffusive transport of species (Bu11)
        12. 2.3.12 Sorption (including exchange of major ions) (Bu12)
        13. 2.3.13 Alterations of impurities (Bu13)
        14. 2.3.14 Aqueous speciation and reactions (Bu14)
        15. 2.3.15 Osmosis (Bu15)
        16. 2.3.16 Montmorillonite transformation (Bu16)
        17. 2.3.17 Iron-bentonite interaction (Bu17)
        18. 2.3.18 Montmorillonite colloid release (Bu18)
        19. 2.3.19 Radiation-induced transformations (Bu19)
        20. 2.3.20 Radiolysis of porewater (Bu20)
        21. 2.3.21 Microbial processes (Bu21)
        22. 2.3.22 Cementation (Bu22)
        23. 2.3.23 Colloid transport (Bu23)
        24. 2.3.24 Speciation of radionuclides (Bu24)
        25. 2.3.25 Transport of radionuclides in the water phase (Bu25)
        26. 2.3.26 Transport of radionuclides in a gas phase (Bu26)
      4. 2.4 BOTTOM PLATE IN DEPOSITION HOLES (BP)
        1. 2.4.1 Heat transport (BP01)
        2. 2.4.2 Freezing (BP02)
        3. 2.4.3 Water uptake and transport under unsaturated conditions (BP03)
        4. 2.4.4 Water transport under saturated conditions (BP04)
        5. 2.4.5 Gas transport/dissolution (BP05)
        6. 2.4.6 Piping/erosion (BP06)
        7. 2.4.7 Swelling/mass redistribution (BP07)
        8. 2.4.8 Advective transport of species (BP08)
        9. 2.4.9 Diffusive transport of species (BP09)
        10. 2.4.10 Sorption (including exchange of major ions) (BP10)
        11. 2.4.11 Alteration of concrete (BP11)
        12. 2.4.12 Aqueous speciation and reactions (BP12)
        13. 2.4.13 Copper corrosion (BP13)
        14. 2.4.14 Microbial processes (BP14)
        15. 2.4.15 Speciation of radionuclides (BP15)
        16. 2.4.16 Transport of radionuclides in the water phase (BP16)
      5. 2.5 BACKFILL IN TUNNELS (BfT)
        1. 2.5.1 Heat transport (BfT01)
        2. 2.5.2 Freezing (BfT02)
        3. 2.5.3 Water uptake and transport for unsaturated conditions (BfT03)
        4. 2.5.4 Water transport for saturated conditions (BfT04)
        5. 2.5.5 Gas transport/dissolution (BfT05)
        6. 2.5.6 Piping/erosion (BfT06)
        7. 2.5.7 Swelling/mass redistribution (BfT07)
        8. 2.5.8 Liquefaction (BfT08)
        9. 2.5.9 Advective transport of species (BfT09)
        10. 2.5.10 Diffusive transport of species (BfT10)
        11. 2.5.11 Sorption (including exchange of major ions) (BfT11)
        12. 2.5.12 Alterations of backfill impurities (BfT12)
        13. 2.5.13 Aqueous speciation and reactions (BfT13)
        14. 2.5.14 Osmosis (BfT14)
        15. 2.5.15 Montmorillonite transformation (BfT15)
        16. 2.5.16 Backfill colloid release (BfT16)
        17. 2.5.17 Radiation-induced transformations (BfT17)
        18. 2.5.18 Microbial processes (BfT18)
        19. 2.5.19 Colloid formation and transport (BfT19)
        20. 2.5.20 Speciation of radionuclides (BfT20)
        21. 2.5.21 Transport of radionuclides in the water phase (BfT21)
        22. 2.5.22 Transport of radionuclides by a gas phase (BfT22)
      6. 2.6 TUNNEL PLUGS (Pg)
        1. 2.6.1 Heat transport (Pg01)
        2. 2.6.2 Freezing (Pg02)
        3. 2.6.3 Water uptake and transport for unsaturated conditions (Pg03)
        4. 2.6.4 Water transport for saturated conditions (Pg04)
        5. 2.6.5 Gas transport/dissolution (Pg05)
        6. 2.6.6 Piping/erosion (Pg06)
        7. 2.6.7 Swelling/mass redistribution (Pg07)
        8. 2.6.8 Liquefaction (Pg08)
        9. 2.6.9 Advective transport of species (Pg09)
        10. 2.6.10 Diffusive transport of species (Pg10)
        11. 2.6.11 Sorption (including exchange of major ions) (Pg11)
        12. 2.6.12 Alteration of concrete (Pg12)
        13. 2.6.13 Aqueous speciation and reactions (Pg13)
        14. 2.6.14 Osmosis (Pg14)
        15. 2.6.15 Montmorillonite transformation (Pg15)
        16. 2.6.16 Montmorillonite colloid release (Pg16)
        17. 2.6.17 Microbial processes (Pg17)
        18. 2.6.18 Speciation of radionuclides (Pg18)
        19. 2.6.19 Transport of radionuclides in the water phase (Pg19)
      7. 2.7 CENTRAL AREA (CA)
        1. 2.7.1 Heat transport (CA01)
        2. 2.7.2 Freezing (CA02)
        3. 2.7.3 Water uptake and transport under unsaturated conditions (CA03)
        4. 2.7.4 Water transport under saturated conditions (CA04)
        5. 2.7.5 Gas transport/dissolution (CA05)
        6. 2.7.6 Piping/erosion (CA06)
        7. 2.7.7 Swelling/mass redistribution (CA07)
        8. 2.7.8 Liquefaction (CA08)
        9. 2.7.9 Advective transport of species (CA09)
        10. 2.7.10 Diffusive transport of species (CA10)
        11. 2.7.11 Sorption (CA11)
        12. 2.7.12 Alteration of the central area backfill (CA12)
        13. 2.7.13 Aqueous speciation and reactions (CA13)
        14. 2.7.14 Osmosis (CA14)
        15. 2.7.15 Alteration of concrete components (CA15)
        16. 2.7.16 Corrosion of steel components (CA16)
        17. 2.7.17 Microbial processes (CA17)
        18. 2.7.18 Speciation of radionuclides (CA18)
        19. 2.7.19 Transport of radionuclides in the water phase (CA19)
      8. 2.8 TOP SEAL (TS)
        1. 2.8.1 Heat transport (TS01)
        2. 2.8.2 Freezing (TS02)
        3. 2.8.3 Water uptake and transport under unsaturated conditions (TS03)
        4. 2.8.4 Water transport under saturated conditions (TS04)
        5. 2.8.5 Gas transport/dissolution (TS05)
        6. 2.8.6 Piping/erosion (TS06)
        7. 2.8.7 Swelling/mass redistribution (TS07)
        8. 2.8.8 Liquefaction (TS08)
        9. 2.8.9 Advective transport of species (TS09)
        10. 2.8.10 Diffusive transport of species (TS10)
        11. 2.8.11 Sorption (including exchange of major ions) (TS11)
        12. 2.8.12 Alteration of concrete (TS12)
        13. 2.8.13 Aqueous speciation and reactions (TS13)
        14. 2.8.14 Colloid release (TS14)
        15. 2.8.15 Steel corrosion (TS15)
        16. 2.8.16 Microbial processes (TS16)
        17. 2.8.17 Speciation of radionuclides (TS17)
        18. 2.8.18 Transport of radionuclides in the water phase (TS18)
      9. 2.9 BOREHOLE SEALS (BhS)
        1. 2.9.1 Heat transport (BhS01)
        2. 2.9.2 Freezing (BhS02)
        3. 2.9.3 Water uptake and transport under unsaturated conditions (BhS03)
        4. 2.9.4 Water transport under saturated conditions (BhS04)
        5. 2.9.5 Gas transport/dissolution (BhS05)
        6. 2.9.6 Piping/erosion (BhS06)
        7. 2.9.7 Swelling/mass redistribution (BhS07)
        8. 2.9.8 Liquefaction (BhS08)
        9. 2.9.9 Advective transport of species (BhS09)
        10. 2.9.10 Diffusive transport of species (BhS10)
        11. 2.9.11 Sorption (including exchange of major ions) (BhS11)
        12. 2.9.12 Alteration of concrete (BhS12)
        13. 2.9.13 Aqueous speciation and reactions (BhS13)
        14. 2.9.14 Copper corrosion (BhS14)
        15. 2.9.15 Alterations of impurities in bentonite (BhS15)
        16. 2.9.16 Osmosis (BhS16)
        17. 2.9.17 Montmorillonite transformation (BhS17)
        18. 2.9.18 Montmorillonite colloid release (BhS18)
        19. 2.9.19 Microbial processes (BhS19)
        20. 2.9.20 Speciation of radionuclides (BhS21)
        21. 2.9.21 Transport of radionuclides in the water phase (BhS22)
      10. 2.10 GEOSPHERE (Ge)
        1. 2.10.1 Heat transport (Ge01)
        2. 2.10.2 Freezing (Ge02)
        3. 2.10.3 Groundwater flow (Ge03)
        4. 2.10.4 Gas flow/dissolution (Ge04)
        5. 2.10.5 Displacements in intact rock (Ge05)
        6. 2.10.6 Reactivation - Displacement along existing discontinuities (Ge06)
        7. 2.10.7 Fracturing (Ge07)
        8. 2.10.8 Creep (Ge08)
        9. 2.10.9 Surface weathering and erosion (Ge09)
        10. 2.10.10 Erosion/sedimentation in fractures (Ge10)
        11. 2.10.11 Advective transport/mixing of dissolved species (Ge11)
        12. 2.10.12 Diffusive transport of dissolved species in fractures and rock matrix (Ge12)
        13. 2.10.13 Speciation and sorption (Ge13)
        14. 2.10.14 Reactions groundwater/rock matrix (Ge14)
        15. 2.10.15 Dissolution/precipitation of fracture-filling minerals (Ge15)
        16. 2.10.16 Microbial processes (Ge16)
        17. 2.10.17 Degradation of grout (Ge17)
        18. 2.10.18 Colloidal processes (Ge18)
        19. 2.10.19 Formation/dissolution/reaction of gaseous species (Ge19)
        20. 2.10.20 Methane hydrate formation (Ge20)
        21. 2.10.21 Salt exclusion (Ge21)
        22. 2.10.22 Radiation effects (rock and grout) (Ge22)
        23. 2.10.23 Earth currents (Ge23)
        24. 2.10.24 Transport of radionuclides in the water phase (Ge24)
        25. 2.10.25 Transport of radionuclides in the gas phase (Ge25)
    3. 3 SYSTEM VARIABLE
      1. 3.1 FUEL/CAVITY IN CANISTER (VarF)
        1. 3.1.1 Radiation intensity (VarF01)
        2. 3.1.2 Temperature (VarF02)
        3. 3.1.3 Hydrovariables (pressure and flow) (VarF03)
        4. 3.1.4 Fuel geometry (VarF04)
        5. 3.1.5 Mechanical stresses (VarF05)
        6. 3.1.6 Radionuclide inventory (VarF06)
        7. 3.1.7 Material composition (VarF07)
        8. 3.1.8 Water composition (VarF08)
        9. 3.1.9 Gas composition (VarF09)
      2. 3.2 CAST IRON INSERT AND COPPER CANISTER (VarC)
        1. 3.2.1 Radiation intensity (VarC01)
        2. 3.2.2 Temperature (VarC02)
        3. 3.2.3 Canister geometry (VarC03)
        4. 3.2.4 Material composition (VarC04)
        5. 3.2.5 Mechanical stresses (VarC05)
      3. 3.3 BUFFER (VarBu)
        1. 3.3.1 Radiation intensity (VarBu01)
        2. 3.3.2 Temperature (VarBu02)
        3. 3.3.3 Water content (VarBu03)
        4. 3.3.4 Gas content (VarBu04)
        5. 3.3.5 Hydrovariables (pressures and flows) (VarBu05)
        6. 3.3.6 Buffer geometry (VarBu06)
        7. 3.3.7 Pore geometry (VarBu07)
        8. 3.3.8 Stress state (VarBu08)
        9. 3.3.9 Bentonite composition (VarBu09)
        10. 3.3.10 Montmorillonite composition (VarBu10)
        11. 3.3.11 Porewater composition (VarBu11)
        12. 3.3.12 Structural and stray materials (VarBu12)
      4. 3.4 BOTTOM PLATE IN DEPOSITION HOLES (VarBP)
        1. 3.4.1 Temperature (VarBP01)
        2. 3.4.2 Bottom plate water content (VarBP02)
        3. 3.4.3 Bottom plate gas content (VarBP03)
        4. 3.4.4 Hydrovariables (pressure and flows) (VarBP04)
        5. 3.4.5 Bottom plate geometry (VarBP05)
        6. 3.4.6 Bottom plate pore geometry (VarBP06)
        7. 3.4.7 Stress state (VarBP07)
        8. 3.4.8 Bottom plate materials - composition and content (VarBP08)
        9. 3.4.9 Bottom plate porewater composition (VarBP09)
        10. 3.4.10 Structural and stray materials (VarBP10)
      5. 3.5 BACKFILL IN TUNNELS (VarBfT)
        1. 3.5.1 Temperature (VarBfT01)
        2. 3.5.2 Water content (VarBfT02)
        3. 3.5.3 Gas content (VarBfT03)
        4. 3.5.4 Hydrovariables (pressures and flows) (VarBfT04)
        5. 3.5.5 Backfill geometry (VarBfT05)
        6. 3.5.6 Backfill pore geometry (VarBfT06)
        7. 3.5.7 Stress state (VarBfT07)
        8. 3.5.8 Backfill materials - composition and content (VarBfT08)
        9. 3.5.9 Backfill porewater composition (VarBfT09)
        10. 3.5.10 Structural and stray materials (VarBfT10)
      6. 3.6 TUNNEL PLUGS (VarPg)
        1. 3.6.1 Temperature (VarPg01)
        2. 3.6.2 Water content (VarPg02)
        3. 3.6.3 Gas content (VarPg03)
        4. 3.6.4 Hydrovariables (pressure and flows) (VarPg04)
        5. 3.6.5 Plug geometry (VarPg05)
        6. 3.6.6 Plug pore geometry (VarPg06)
        7. 3.6.7 Stress state (VarPg07)
        8. 3.6.8 Plug materials - composition and content (VarPg08)
        9. 3.6.9 Plug porewater composition (VarPg09)
        10. 3.6.10 Structural and stray materials (VarPg10)
      7. 3.7 CENTRAL AREA (VarCA)
        1. 3.7.1 Temperature (VarCA01)
        2. 3.7.2 Water content (VarCA02)
        3. 3.7.3 Gas content (VarCA03)
        4. 3.7.4 Hydrovariables (pressure and flows) (VarCA04)
        5. 3.7.5 Central area geometry (VarCA05)
        6. 3.7.6 Central area pore geometry (VarCA06)
        7. 3.7.7 Stress state (VarCA07)
        8. 3.7.8 Central area materials - composition and content (VarCA08)
        9. 3.7.9 Central area porewater composition (VarCA09)
        10. 3.7.10 Structural and stray materials (VarCA10)
      8. 3.8 TOP SEAL (VarTS)
        1. 3.8.1 Temperature (VarTS01)
        2. 3.8.2 Water content (VarTS02)
        3. 3.8.3 Gas content (VarTS03)
        4. 3.8.4 Hydrovariables (pressure and flows) (VarTS04)
        5. 3.8.5 Top seal geometry (VarTS05)
        6. 3.8.6 Top seal pore geometry (VarTS06)
        7. 3.8.7 Stress state (VarTS07)
        8. 3.8.8 Top seal materials - composition and content (VarTS08)
        9. 3.8.9 Top seal porewater composition (VarTS09)
        10. 3.8.10 Structural and stray materials (VarTS10)
      9. 3.9 BOREHOLE SEALS (VarBhS)
        1. 3.9.1 Temperature (VarBhS01)
        2. 3.9.2 Water content (VarBhS02)
        3. 3.9.3 Gas content (VarBhS03)
        4. 3.9.4 Hydrovariables (pressure and flows) (VarBhS04)
        5. 3.9.5 Borehole geometry (VarBhS05)
        6. 3.9.6 Pore geometry (VarBhS06)
        7. 3.9.7 Stress state (VarBhS07)
        8. 3.9.8 Sealing materials - composition and content (VarBhS08)
        9. 3.9.9 Porewater composition (VarBhS09)
        10. 3.9.10 Structural and stray materials (VarBhS10)
      10. 3.10 GEOSPHERE (VarGe)
        1. 3.10.1 Temperature in bedrock (VarGe01)
        2. 3.10.2 Groundwater flow (VarGe02)
        3. 3.10.3 Groundwater pressure (VarGe03)
        4. 3.10.4 Gas phase flow (VarGe04)
        5. 3.10.5 Repository geometry (VarGe05)
        6. 3.10.6 Fracture geometry (VarGe06)
        7. 3.10.7 Rock stresses (VarGe07)
        8. 3.10.8 Matrix minerals (VarGe08)
        9. 3.10.9 Fracture minerals (VarGe09)
        10. 3.10.10 Groundwater composition (VarGe10)
        11. 3.10.11 Gas composition (VarGe11)
        12. 3.10.12 Structural and stray materials (VarGe12)
        13. 3.10.13 Saturation (VarGe13)
    4. 4 BIOSPHERE
      1. 4.1 BIOSPHERE PROCESS (Bio)
        1. 4.1.1 Bioturbation (Bio01)
        2. 4.1.2 Consumption (Bio02)
        3. 4.1.3 Death (Bio03)
        4. 4.1.4 Decomposition (Bio04)
        5. 4.1.5 Excretion (Bio05)
        6. 4.1.6 Food supply (Bio06)
        7. 4.1.7 Growth (Bio07)
        8. 4.1.8 Habitat supply (Bio08)
        9. 4.1.9 Intrusion (Bio09)
        10. 4.1.10 Material supply (Bio10)
        11. 4.1.11 Movement (Bio11)
        12. 4.1.12 Particle release/trapping (Bio12)
        13. 4.1.13 Primary production (Bio13)
        14. 4.1.14 Stimulation/inhibition (Bio14)
        15. 4.1.15 Uptake (Bio15)
        16. 4.1.16 Anthropogenic release (Bio16)
        17. 4.1.17 Material use (Bio17)
        18. 4.1.18 Species introduction/extermination (Bio18)
        19. 4.1.19 Water use (Bio19)
        20. 4.1.20 Change of pressure (Bio20)
        21. 4.1.21 Consolidation (Bio21)
        22. 4.1.22 Element supply (Bio22)
        23. 4.1.23 Loading (Bio23)
        24. 4.1.24 Phase transitions (Bio24)
        25. 4.1.25 Physical properties change (Bio25)
        26. 4.1.26 Reactions (Bio26)
        27. 4.1.27 Sorption/desorption (Bio27)
        28. 4.1.28 Water supply (Bio28)
        29. 4.1.29 Weathering (Bio29)
        30. 4.1.30 Wind stress (Bio30)
        31. 4.1.31 Acceleration (Bio31)
        32. 4.1.32 Convection (Bio32)
        33. 4.1.33 Covering (Bio33)
        34. 4.1.34 Deposition (Bio34)
        35. 4.1.35 Export (Bio35)
        36. 4.1.36 Import (Bio36)
        37. 4.1.37 Interception (Bio37)
        38. 4.1.38 Relocation (Bio38)
        39. 4.1.39 Resuspension (Bio39)
        40. 4.1.40 Saturation (Bio40)
        41. 4.1.41 Decay (Bio41)
        42. 4.1.42 Exposure (Bio42)
        43. 4.1.43 Heat storage (Bio43)
        44. 4.1.44 Irradiation (Bio44)
        45. 4.1.45 Light-related processes (Bio45)
        46. 4.1.46 Radiolysis (Bio46)
        47. 4.1.47 Radionuclide release (Bio47)
        48. 4.1.48 Change in rock surface location (Bio48)
        49. 4.1.49 Sea level change (Bio49)
        50. 4.1.50 Terrestrialisation (Bio50)
        51. 4.1.51 Thresholding (Bio51)
      2. 4.2 BIOSPHERE COMPONENT (CompBio)
        1. 4.2.1 Geosphere (CompBio01)
        2. 4.2.2 Regolith (CompBio02)
        3. 4.2.3 Primary producers (CompBio03)
        4. 4.2.4 Decomposers (CompBio04)
        5. 4.2.5 Filter feeders (CompBio05)
        6. 4.2.6 Herbivores (CompBio06)
        7. 4.2.7 Carnivores (CompBio07)
        8. 4.2.8 Humans (CompBio08)
        9. 4.2.9 Water in regolith (CompBio09)
        10. 4.2.10 Surface water (CompBio10)
        11. 4.2.11 Water composition (CompBio11)
        12. 4.2.12 Gas and local atmosphere (CompBio12)
        13. 4.2.13 Temperature (CompBio13)
        14. 4.2.14 Radionuclides (CompBio14)
        15. 4.2.15 External conditions (CompBio15)
    5. 5 EXTERNAL FACTOR
      1. 5.1 CLIMATIC PROCESSES AND EFFECTS (Cli)
        1. 5.1.1 Climate system - Components of the climate system (Cli01)
        2. 5.1.2 Climate system - Climate forcing (Cli02)
        3. 5.1.3 Climate system - Climate dynamics (Cli03)
        4. 5.1.4 Climate system - Climate in Sweden and Forsmark (Cli04)
        5. 5.1.5 Climate related issues - Development of permafrost (Cli05)
        6. 5.1.6 Climate related issues - Ice-sheet dynamics (Cli06)
        7. 5.1.7 Climate related issues - Ice-sheet hydrology (Cli07)
        8. 5.1.8 Climate related issues - Glacial isostatic adjustment (Cli08)
        9. 5.1.9 Climate related issues - Shoreline migration (Cli09)
        10. 5.1.10 Climate related issues - End-glacial faulting (Cli10)
        11. 5.1.11 Climate related issues - Denudation (Cli11)
      2. 5.2 LARGE-SCALE GEOLOGICAL PROCESSES AND EFFECTS (LSGe)
        1. 5.2.1 Mechanical evolution of the Shield (LSGe01)
        2. 5.2.2 Earthquakes (LSGe02)
      3. 5.3 FUTURE HUMAN ACTIONS (FHA)
        1. 5.3.1 General considerations (FHA01)
        2. 5.3.2 Societal analysis, considered societal aspects (FHA02)
        3. 5.3.3 Technical analysis, general aspects (FHA03)
        4. 5.3.4 Technical analysis, actions with thermal impact and purpose (FHA04)
        5. 5.3.5 Technical analysis, actions with hydraulic impact and purpose (FHA05)
        6. 5.3.6 Technical analysis, actions with mechanical impact and purpose (FHA06)
        7. 5.3.7 Technical analysis, actions with chemical impact and purpose (FHA07)
      4. 5.4 OTHER (Oth)
        1. 5.4.1 Meteorite impact (Oth01)
    6. 6 METHODOLOGY
      1. 6.1 METHODOLOGY (Meth)
        1. 6.1.1 Assessment basis (Meth01)
        2. 6.1.2 Assessment methodology (Meth02)
    7. 7 SITE-SPECIFIC FACTOR
      1. 7.1 SITE-SPECIFIC FACTOR (SiteFact)
        1. 7.1.1 Construction of nearby rock facilities (SiteFact02)
        2. 7.1.2 Nearby nuclear power plant (SiteFact03)
        3. 7.1.3 Mine excavation (SiteFact04)
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