Acknowledgement
본 연구는 한국지질자원연구원의 기본사업인 "HLW 심층처분을 위한 지체구조별 암종 심부 특성 연구(과제코드 : GP2020-002, 과제번호: 24-3115)" 및 "심지층 개발과 활용을 위한 지하심부 특성평가 기술개발(과제코드 : GP2020-010, 과제번호: 24-3414)" 지원을 받아 수행되었습니다. 현장시험에 도움을 주신 (주)지오제니 컨설턴트와 (주)희송지오텍에 감사의 말씀드립니다.
References
- Bae, S.H., Kim, H.S., Kim, J.S., Park, E.S., Jo, Y.U., Ji, T.G., and Won, K.S., 2021, Hydraulic characteristics of deep and low permeable rock masses in Gyeongju area by high precision constant pressure injection test, Tunnel and Underground Space, 31(4), 243-269. https://doi.org/10.7474/TUS.2021.31.4.243
- Barker, J.A., 1988, A generalized radial flow model for hydraulic tests in fractured rock, Water Resources Research, 24(10), 1796-1804. https://doi.org/10.1029/WR024i010p01796
- Cheon, D.S., Jin, K., Synn, J.H., Kihm, Y.H., and Jeon ,S., 2024, Preliminary study on candidate host rocks for deep geological disposal of HLW based on deep geological characteristics, Tunnel and Underground Space, 34(1), 28-53. https://doi.org/10.7474/TUS.2024.34.1.028
- Cheon, D.S., Song, W.K., Kihm, Y.H., Jin, K., and Choi, S., 2022, A study on key parameters and distribution range in rock mechanics for HLW geological disposal, Tunnel and Underground Space, 32(6), 530-548. https://doi.org/10.7474/TUS.2022.32.6.530
- Cho, S.I., Song, M.Y., Kim, K.S., and Lee, E.Y., 1999, The relation of fracture properties to hydraulic conductivity in volcanic rocks of the northern Yosu area, The Journal of Engineering Geology, 9(3), 227-241.
- Choi, J., Chae, B.G., Kihm, Y.H., Park, E.S., Hyun, S., Kim, H.C., Nahm, W.H., Jeon, J.S., and Suk, H., 2017, Suggestion of site investigation method for HLW disposal facility, Journal of the Korean Society of Mineral and Energy Resources Engineers, 54(4), 303-318. https://doi.org/10.12972/ksmer.2017.54.4.303
- Chough, S.K., and Sohn, Y.K., 2010, Tectonic and sedimentary evolution of a Cretaceous continental arc-backarc system in the Korean peninsula: new view, Earth-Science Reviews, 101, 225-249. https://doi.org/10.1016/j.earscirev.2010.05.004
- Cooper, H.H., Bredehoeft, J.D., and Papadopulos, S.S., 1967, Response of a finite-diameter well to an instantaneous charge of water, Water Resources Research, 3(1), 263-269. https://doi.org/10.1029/WR003i001p00263
- Dougherty, D.E., and Babu, D.K., 1984, Flow to a partially penetrating well in a double-porosity reservoir, Water Resources Research, 20(8), 1116-1122. https://doi.org/10.1029/WR020i008p01116
- Enachescu, C., and Rahm, N., 2007, Method evaluation of single hole hydraulic injection tests at site investigations Oskarshamn, SKB P-07-79, Stockholm, Sweden, 103p.
- Follin, S., Ludvigson, J.E., and Leven, J., 2011, A comparison between standard well test evaluation methods used in SKB's site investigations and the generalized radial flow concept, SKB P-06-54, Stockholm, Sweden, 55p.
- Hamm, S.Y., Jang, S., Cheong, J.Y., Sung, I.H., Lee, B.D., and Lee, J.H., 2006, Groundwater flow analysis in fractured rocks using zonal pumping tests and water quality logs, The Journal of Engineering Geology, 16(4), 411-427.
- Hjerne, C., Ludvigson, J.E., Harrstrom, J., Olofsson, C., Gokall-Norman, K., and Walger, E., 2013, Single-hole injection tests in boreholes KA2051A01, KA30007A01 and KJ0050F01, SKB P-13-24, Stockholm, Sweden, 184p.
- IAEA, 1994, Siting of Geological Disposal Facilities, Safety Series No. 111-G-4.1, Vienna, 48p.
- Jacob, C.E., and Lohman, S.W., 1952, Non-steady flow to a well of constant drawdown in an extensive aquifer, Trans. American Geophys. Union, 33, 559-569. https://doi.org/10.1029/TR033i004p00559
- KIGAM, 2016, Development of regional geological survey methodology for disposal a spent nuclear fuel, IP2015-020-2016(1), Daejeon, Korea, 487p.
- KIGAM, 2019, Development of nationwide geoenvironmental maps for HLW geological disposal, GP2017-009-2019, Daejeon, Korea, 603p.
- KIGAM, 2021, Research on rock properties in deep environment for HLW geological disposal, GP2020-002-2021, Daejeon, Korea, 330p.
- KIGAM, 2022, Research on rock properties in deep environment for HLW geological disposal, GP2020-002-2022, Daejeon, Korea, 108p.
- Lee, C.W., and Moon, S.H., 2008, The Analysis of Geothermal Gradient ant Icheon Hot Spa Area, The Journal of Engineering Geology, 18(2), 185-190.
- Lee, H., Park, C., Choi, J., Cheon, D.S., and Park, E.S., 2024, Evaluation of hydrogeological characteristics of deep-depth rock aquifer in volcanic rock area, Tunnel and Underground Space, 34(3), 231-247. https://doi.org/10.7474/TUS.2024.34.3.231
- Lee, H., Park, C., Park, E.S., Jung, Y.B., Cheon, D.S., Bae, S.H., Kim, H.M., and Kim, K.S., 2023, Standard procedures and field application case of constant pressure injection test for evaluating hydrogeological characteristics in deep fractured rock aquifer, Tunnel and Underground Space, 33(5), 348-372. https://doi.org/10.7474/TUS.2023.33.5.348
- Moye, D.G., 1967, Diamond drilling for foundation exploration, Civil Engineering Transactions, Institute of Engineering, Australia, 95-100.
- Nagra, 2016, The Nagra Research, Development and Demonstration (RD&D) Plan for the Disposal of Radioactive Waste in Switzerland, Technical Report 16-02, Switzerland, 336p.
- NUMO, 2004, Evaluating Site suitability for a HLW Repository, NUMO-TR-04-04, Japan, 74p.
- Park, K.W., and Bae, D.S., 2005, Analysis of correlation between hydraulic conductivity and fracture characteristics observed by Televiewer logging, Journal of the Geological Society of Korea, 41(2), 269-285.
- Park, S., and Chung, I.M., 2016, Correlation between the distribution of discontinuities and groundwater flow in fractured rock, The Journal of Engineering Geology, 26(4), 505-513. https://doi.org/10.9720/KSEG.2016.4.505
- Posiva, 2000, The site selection process for a spent fuel repository in Finland-Summary report, POSIVA 2000-15, Finland, 225p.