• 제목/요약/키워드: Underground container

검색결과 18건 처리시간 0.025초

아왜나무와 종가시나무의 생육에 대한 지중매입형 컨테이너의 효과 (Effects of Underground Container Types on Plant Growth of Viburnum odoratissimum var. awabuki and Quercus glauca)

  • 최수민;신현철;허근영;정현종
    • 한국환경복원기술학회지
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    • 제15권3호
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    • pp.67-74
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    • 2012
  • This study was carried out to cultivate evergreen-leaved tree container seedlings having low cost of equipment and easy to control. Two species of V. odoratissimum var. awabuki and Q. glauca planting in respective underground container were showed survival rate above 90%. The Relative growth rates of height was good in non-treatment and root collar diameter was no significant difference between treatments. The T/R ratio was respectively 1.1, 1.0 in container type of F, G. and root's biomass products was more effective than others. A container type of F showed better Quailty index than others with 16.2 values. Q. glauca was higher T/R ratio in root development than shoot and the quality index was high in container type of E, D with 4.0. 3.5, respectively. On the basis of the results obtained in this study, we can concluded that the underground container type was suitable to F in V. odoratissimum var. awabuki and to D or E in Q. glauca.

Technology Assessment of the Repository Alternatives to Establish a Reference HLW Disposal Concept

  • Choi, Jong-Won;Choi, Young-Sung;Kwon, Sang-Ki;Kuh, Jung-Eui;Kang, Chul-Hyung
    • Nuclear Engineering and Technology
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    • 제31권6호
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    • pp.83-100
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    • 1999
  • As disposal packaging concepts of spent fuels generated from the domestic NPP, two types, one is to package PWR and CANDU spent fuels in different containers and the other is to package them together, were proposed. The configuration of the containers and the layout of underground repository, such as the container spacing and the deposition tunnel spacing, were developed. The layout of underground repository satisfies the thermal constraint of the bentonite buffer surrounding disposal container, which should be lower than $100^{\circ}C$ in order to keep the physical and chemical properties of bentonite From the spent fuel packaging concepts and container emplacement methods, seven options were developed. With a typical pair-wise comparison methods, AHP, the most promising disposal concept was selected based on the technology Point of view.

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고준위폐기물 처분장치와 이를 감싸고 있는 벤토나이트 버퍼에 대한 비선형 구조해석 (A Study on the Nonlinear Structural Analysis for Spent Nuclear Fuel Disposal Container and Bentonite Buffer)

  • 권영주;최석호
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2002년도 봄 학술발표회 논문집
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    • pp.19-26
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    • 2002
  • In this paper, the nonlinear structural analysis for the composite structure of the spent nuclear fuel disposal container and the 50cm thick bentonite buffer is carried out to predict the collapse of the container while the sudden rock movement of 10cm is applied on the composite structure. This sudden rock movement is anticipated by the earthquake etc. at a deep underground. Horizontal symmetric rock movement is assumed in this structural analysis. Elastoplastic material model is adopted. Drucker-Prager yield criterion is used for the material yield prediction of the bentonite buffer and von-Mises yield criterion is used for the material yield prediction of the container(cast iron insert, copper outer shell and lid and bottom). Analysis results show that even though very large deformations occur beyond the yield point in the bentonite buffer, the container structure still endures elastic small strains and stresses below the yield strength. Hence, the 50cm thick bentonite buffer can protect the container safely against the 10cm sudden rock movement by earthquake etc.. Analysis results also show that bending deformations occur in the container structure due to the shear deformation of the bentonite buffer. The elastoplastic nonlinear structural analysis for the composite structure of the container and the bentonite buffer is performed using the finite element analysis code, NISA.

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고준위폐기물 처분장치 및 완충장치에 대한 탄소성해석 : 비대칭 암반력 (An Elastoplastic Analysis for Spent Nuclear Fuel Disposal Container and Its Bentonite Buffer: Asymmetric Rock Movement)

  • 권영주;최석호
    • 소성∙가공
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    • 제12권5호
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    • pp.479-486
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    • 2003
  • This paper presents an elastoplastic analysis for spent nuclear fuel disposal container and its 50 cm thick bentonite buffer to predict the collapse of the container while the horizontal asymmetric sudden rock movement of 10 cm is applied on the composite structure. This sudden rock movement is anticipated by the earthquake etc. at a deep underground. Elastoplastic material model is adopted. Drucker-Prager yield criterion is used for the material yield prediction of the bentonite buffer and von-Mises yield criterion is used for the material yield prediction of the container. Analysis results show that even though very large deformations occur beyond the yield point in the bentonite buffer, the container structure still endures elastic small strains and stresses below the yield strength. Hence, the asymmetric 50 cm thick bentonite buffer can protect the container safely against the 10 cm sudden rock movement by earthquake etc.. Analysis results also show that bending deformations occur in the container structure due to the shear deformation of the bentonite buffer. The finite element analysis code, NISA, is used for the analysis.

Fault Reactivation에 의한 가상 방사성폐기물 처분장 주변 지하수 유동 변화 평가 : 2차원 케이스 스터디 (A Case Study on the Effect of Fault Reactivation on Groundwater Flow around a Hypothetical HLW Repository)

  • 서은진;황용수;한지웅
    • 터널과지하공간
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    • 제16권4호
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    • pp.307-312
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    • 2006
  • 처분 용기 부식 후 유출된 방사성 핵종은 지하수 유동 경로를 따라 이동하게 된다. 따라서 지하 암반내 지하수 유동 평가는 처분 안전성 평가를 위한 기본적인 요소라 할 수 있다. 본 연구에서는 처분 시스템 폐쇄 후 미래 특정 시점에서 지형의 변화가 지하수 유동 경로에 끼치는 영향을 다공질 매질에서의 지하수 유동 해석 코드인 NAMMU를 이용한 평가를 통해 확인해 보았다. 단열에 인접한 지역에 가상의 처분 시스템을 선정하고 처분 시스템 주위에 존재하는 단열의 재활성화가 발생하는 경우 처분장으로부터의 지하수 유동에 끼치는 영향을 정량적으로 평가해 보았다.

서울 은평 뉴타운 1지구 조경설계 (A Landscape Design Proposal for Eunpyeong New Town, Seoul)

  • 김순분;진양교
    • 한국조경학회지
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    • 제33권2호
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    • pp.111-121
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    • 2005
  • The Seoul Housing Corporation pronounced an alternative design competition and a bidding for Eunpyeong New Town in December of 2004. At first many construction companies were interested in the first New Town Project. But at last a few companies had proposed the alternative design and construction cost. This project needed a conjunction of design ideas and technology know-hows. And the client wanted the brand power of construction company. Ultimately the Corporation hoped that the first New Town Project will end up with high quality successfully. This competition had started with the original construction drawings. Then it needed some alternative ideas and the lowest cost. There were two drawings of non changeable part and changeable part. Non changeable parts are structure like housing unit plan, underground parking lots. Changeable parts are outdoor layout, interior design and building facade. So we tried all ideas of landscape technology and design principles within limited guidelines. The author applied new technology like tilted rooftop greening and sustained container greening on high-rise apartment house. This green technology will be the first trial in Seoul and in the world as well. Daewoo Corporation have accumulated greening technology through the researches by national funding since 2002. Through this New Town Project the green technology will go forward step by step.

Analyses on Thermal Stability and Structural Integrity of the Improved Disposal Systems for Spent Nuclear Fuels in Korea

  • Lee, Jongyoul;Kim, Hyeona;Kim, Inyoung;Choi, Heuijoo;Cho, Dongkeun
    • 방사성폐기물학회지
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    • 제18권spc호
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    • pp.21-36
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    • 2020
  • With respect to spent nuclear fuels, disposal containers and bentonite buffer blocks in deep geological disposal systems are the primary engineered barrier elements that are required to isolate radioactive toxicity for a long period of time and delay the leakage of radio nuclides such that they do not affect human and natural environments. Therefore, the thermal stability of the bentonite buffer and structural integrity of the disposal container are essential factors for maintaining the safety of a deep geological disposal system. The most important requirement in the design of such a system involves ensuring that the temperature of the buffer does not exceed 100℃ because of the decay heat emitted from high-level wastes loaded in the disposal container. In addition, the disposal containers should maintain structural integrity under loads, such as hydraulic pressure, at an underground depth of 500 m and swelling pressure of the bentonite buffer. In this study, we analyzed the thermal stability and structural integrity in a deep geological disposal environment of the improved deep geological disposal systems for domestic light-water and heavy-water reactor types of spent nuclear fuels, which were considered to be subject to direct disposal. The results of the thermal stability and structural integrity assessments indicated that the improved disposal systems for each type of spent nuclear fuel satisfied the temperature limit requirement (< 100℃) of the disposal system, and the disposal containers were observed to maintain their integrity with a safety ratio of 2.0 or higher in the environment of deep disposal.

아스팔트 2액형 점착재의 누수보수 평가에 관한 연구 (Ashpalt 2 Component Adhesive Leakage Repair Sealant Evaluation)

  • 조일규;김근허;오상근
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2017년도 춘계 학술논문 발표대회
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    • pp.140-141
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    • 2017
  • This study is based on the evaluation of a single component injection type adhesive repair material and a new 2 component type used in leakage of underground concrete structures. The studies showed that based on different mix ratio of the 2 component type adhesive sealant comprised of an asphalt main and latex mixture agent the viscosity of the material compound differed significantly. Based on a permeability testing, injection and economic efficiency, and performance, the appropriate ratio was determined to be 6:1 and was proceeded to the KS F 4935 evaluation method. The 2 component type adhesive sealant uses a static mixer and a cartridge type container for the injection procedure and was able to satisfy the evaluation criteria outlined in the KS F 4935 standard.

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압축공기 저장용 파일롯 터널에 설치된 콘크리트 플러그의 안정성 해석 (Stability Analysis of Concrete Plugs Installed in Pilot Tunnels for the Storage of Compressed Air)

  • 이연규;송원경;박철환;최병희
    • 터널과지하공간
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    • 제20권6호
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    • pp.446-454
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    • 2010
  • 압축공기를 활용한 가스터빈 발전방식(CAES-G/T)은 태양열이나 풍력과 같은 신재생 에너지의 출력 변동성을 조절하는 유력한 수단 중 하나로 고려되고 있다. 국내에서 CAES 발전이 실용화된다면 지질여건상 암반터널식이 채택될 가능성이 크다. 암반터널식 CAES 시설에서는 압축공기 저장공간을 밀폐시키기 위한 콘크리트 플러그의 설치가 필요하므로 플러그의 형상과 크기를 결정하는 것이 중요한 설계변수가 된다. 파괴에 대한 안전율 분포와 접촉부 접촉압력 분포 분석을 통해 2가지 형태의 콘크리트 플러그에 대한 안정성 평가를 수행하였다. 주어진 지질조건에서는 테이퍼형 플러그가 쐐기형 플러그에 비해 구조적으로 안정한 것으로 나타났다. 쐐기형 플러그의 경우 측면 접촉부에서 분리현상이 예측되었고 이러한 분리면에서 압축공기의 누출 가능성과 마찰저항의 감소가 발생할 수 있음을 보여주었다.

Sorption characteristics of iodide on chalcocite and mackinawite under pH variations in alkaline conditions

  • Park, Chung-Kyun;Park, Tae-Jin;Lee, Seung-Yeop;Lee, Jae-Kwang
    • Nuclear Engineering and Technology
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    • 제51권4호
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    • pp.1041-1046
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    • 2019
  • In terms of long-term safety for radioactive waste disposal, the anionic iodide (I-129) with a long half-life ($1.6{\times}10^6yr$) is of a critical importance because this radionuclide migrates in geological media with limited interactions. Various studies have been performed to retard the iodide migration. Recently, some minerals that are likely generated from waste container corrosion, have been suggested to have a considerable chemical interaction with iodide. In this study, chalcocite and mackinawite were selected as candidate minerals for underground corrosion materials, and an iodide sorption experiment were carried out. The experiment was performed under anoxic and alkaline conditions and the pH effects on the iodide sorption were investigated in the range of pH 8 to 12. The results showed that both minerals demonstrated a noticeable sorption capacity on iodide, and the distribution coefficient ($K_d$) decreased as the pH increased in the experimental condition. In addition, when the alkalinity increased higher than a pH of 12, the sorption capacity of both minerals decreased dramatically, likely due to the competition of hydroxy ions with the iodide. This result confirmed that chalcocite was an especially good sorbing media for iodide under alkaline conditions with a pH value of less than 12.