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지성훈,고용권,최종원,Ji, Sung-Hoon,Koh, Yong-Kwon,Choi, Jong-Won 한국방사성폐기물학회 2012 방사성폐기물학회지 Vol.10 No.1
고준위폐기물 처분과 관련하여, 최근 저장소 형태의 처분장 개념에 대한 대안으로 검토되고 있는 시추공 처분 개념에 대한 연구 현황을 정리하고 시추공 처분 개념의 국내 적용 가능성과 필요한 연구 항목에 대해 논의하였다. 현재 미국과 스웨덴을 중심으로 논의된 시추공 처분 개념은 심부시추공을 설치하여 지하 3 - 5km 구간에 고준위폐기물을 처분하는 것을 의미하며, 현재까지의 연구 결과에 의하면 이 처분 개념은 심부지하수의 층상구조, 작은 규모의 지표시설 등으로 인해 처분 및 비용 효율이 클 것으로 예상된다. 이에 반해 국내에는 축적된 심부 지질 자료가 없어 적용 가능성에 대한 논의할 여지가 없다. 이에 저장소 형태의 처분장 개념에 대한 대안으로 시추공 처분 개념을 검토하기 위해서는 향후 심지층 자료 확보, 공학적 방벽 연구, 수치모의모델 개발, 처분 기술 개발 등의 연구가 필요하다. As an alternative of the high-level radioactive waste disposal in the subsurface repository, a deep borehole disposal is reviewed by several nuclear advanced countries. In this study, the state of the art on the borehole disposal researches was reviewed, and the possibility of borehole disposal in Korean peninsula was discussed. In the deep borehole disposal concept radioactive waste is disposed at the section of 3 - 5km depth in a deep borehole, and it has known that it has advantages in performance and cost due to the layered structure of deep groundwater and small surface disposal facility. The results show that it is necessary to acquisite data on deep geologic conditions of Korean peninsula, and to research the engineering barrier system, numerical modeling tools and disposal techniques for deep borehole disposal.
중.저준위 방사성폐기물 처분 부지의 지하수 유동에 대한 수치 모사: 1. 지하수 유동 모델링
박경우,지성훈,김천수,김경수,김지연,Park, Kyung-Woo,Ji, Sung-Hoon,Kim, Chun-Soo,Kim, Kyung-Su,Kim, Ji-Yeon 한국방사성폐기물학회 2008 방사성폐기물학회지 Vol.6 No.4
Based on the site characterization works in a low and intermediate level waste(LILW) repository site, the numerical simulations for groundwater flow were carried out in order to understand the groundwater flow system of repository site. To accomplish the groundwater flow modeling in the repository site, the discrete fracture network(DFN) model was constructed using the characteristics of fracture zones and background fractures. At result, the total 10 different hydraulic conductivity(K) fields were obtained from DFN model stochastically and K distributions of constructed mesh were inputted into the 10 cases of groundwater flow simulations in FEFLOW. From the total 10 numerical simulation results, the simulated groundwater levels were strongly governed by topography and the groundwater fluxes were governed by locally existed high permeable fracture zones in repository depth. Especially, the groundwater table was predicted to have several tens meters below the groundwater table compared with the undisturbed condition around disposal silo after construction of underground facilities. After closure of disposal facilities, the groundwater level would be almost recovered within 1 year and have a tendency to keep a steady state of groundwater level in 2 year.
단열대의 영향을 고려한 블록 규모 단열 암반에서의 지하수 유동 모의
고낙열,지성훈,고용권,최종원,Ko, Nak-Youl,Ji, Sung-Hoon,Koh, Yong-Kwon,Choi, Jon-Won 한국방사성폐기물학회 2010 방사성폐기물학회지 Vol.8 No.2
The block-scale groundwater flow system at Olkiluoto site in Finland was simulated. The heterogeneous and anisotropic hydraulic conductivity field for the domain was constructed from the discrete fracture network, which considered only the fractured zones identified in the deep boreholes installed in the study site. The groundwater flow model was calibrated by adjusting the recharge rate and the transmissivities of the fractured zones to fit the calculated hydraulic heads and into- and out-flow rates in the observation intervals of the boreholes with the observed ones. In the calibrated model, the calculated flow rates at some intervals were not in accordance with the observed ones although the calculated hydraulic heads fit well with the observed ones, which revealed that the number of the conduits for groundwater flow is insufficient in the conceptual model for groundwater flow modeling. Therefore, it was recommended that the potential local conduits such as background fractures should be added to the present conceptual model.
결정질 암반내 지하연구시설에서 수행한 현장수리시험법 적용성 연구
박경우,고낙열,지성훈,Park, Kyung-Woo,Ko, Nak-Yeol,Ji, Sung-Hoon 대한자원환경지질학회 2020 자원환경지질 Vol.53 No.2
본 논문에서는 지하연구시설에서 결정질 암반의 수리지질특성을 도출하기 위해 일반적으로 수행하는 수리시험법의 적용 가능성 및 신뢰성을 평가할 목적으로, 펄스시험, 슬러그시험과 정압시험을 이용하여 각 시험 결과로부터 도출되는 투수량계수를 서로 비교해 보았다. 펄스시험과 슬러그시험의 결과를 비교해 볼 때, 매질의 투수성이 낮은 시험 구간에서는 투수량계수가 매우 유사하게 도출되었지만, 투수성이 비교적 큰 구간에서는 다소 차이를 보였다. 그리고 투수성이 큰 구간에서 정압시험 결과에 비해 순간수위변화시험의 결과가 다소 크게 나타났다. 이러한 투수성의 차이는 각 수리시험에서 적용되는 수리 영향 반경의 상이함에 기인한 것으로 판단된다. 비록 각각의 현장수리시험에서 도출되는 결과가 매질의 투수성을 동일하게 반영한다고 할 수는 없지만, 단열의 불균질한 분포가 투수성에 영향을 주는 결정질 암반에서의 수리지질특성을 도출할 때 수리영향반경이 큰 정압시험이나 정률시험뿐만 아니라 비교적 빠른 시간에 수리지질특성을 파악할 수 있는 슬러그시험과 펄스시험을 통해서도 매질의 수리지질특성을 설명할 수 있는 것으로 사료된다. In this paper, the transmissivities obtained from the pulse test, the slug test and the constant head test were compared each other to assess an applicability and a reliability of the hydrogeological test method, which are commonly used to derive the hydrogeological properties of a crystalline rock at un underground research facility. When comparing the results of the pulse test and the slug test, the transmissivities were very similar in the entire test section of the medium. However, there was a little discrepancy in the results in the areas where the permeability is relatively high. The results of the constant head test on the same section showed the lower transmissivity than the results of the pulse test and the slug test on the highly permeable section. This difference in permeability was considered to be due to the difference in the radius of the hydraulic effect applied in each hydraulic test. When the heterogenetic distribution of fracture affects the hydrogeological properties on crystalline rock, it is believed that the hydrogeological characteristics can be explained through a constant head test or a constant flow rate test with a large hydraulic effective radius, as well as a pulse and a slug test that can identify hydrogeological properties in a relatively short time.
고준위폐기물 심부시추공 처분을 위한 처분용기 접속장치의 개발
이민수,이종열,지성훈,LEE, Minsoo,LEE, Jongyoul,JI, Sung-Hoon 한국방사성폐기물학회 2018 방사성폐기물학회지 Vol.16 No.2
In this study, to replace the 'J-slot joint', a joint device between a disposal canister and an emplacement jig in Deep Borehole Disposal process, a novel joint device was designed and tested. The novel joint device was composed of a wedge on top of a disposal canister and a hook box at the end of a winch system. The designed joint device had merits in that it can recombine an emplaced canister freely without the replacement of the joint component. Moreover, it can be applied to various emplacement jigs such as drill pipes, wire-lines, and coiled tubing. To demonstrate the designed joint device, the joint device (${\Phi}110mm$, H 148 mm), a twin canister string (${\Phi}140mm$, H 1,105 mm), and a water tube (${\Phi}150mm$, H 1,500 mm) as a borehole model were manufactured at 1/3 scale. As deployment muds, Na-type bentonite (MX-80) and Ca-type (GJ II) bentonite muds were prepared at solid contents of 7wt% and 28wt%, respectively. The manufactured joint device showed good performance in pure water and viscous muds, with an operation speed of $10m{\cdot}min^{-1}$. It was concluded that the newly developed joint device can be used for the emplacement and retrieval of a deep disposal canister, below 3~5 km, in the future.