• 제목/요약/키워드: unsaturated permeability

검색결과 105건 처리시간 0.022초

Research on sealing ability of granular bentonite material after 10.5 years of engineered barrier experiment

  • Ni, Hongyang;Liu, Jiangfeng;Pu, Hai;Zhang, Guimin;Chen, Xu;Skoczylas, Frederic
    • Geomechanics and Engineering
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    • 제27권6호
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    • pp.583-594
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    • 2021
  • The gas permeability behavior of unsaturated bentonite-based materials is of major importance for ensuring effective sealing of high-level radwaste repositories. This study investigated this by taking a sample of Granular Bentonite Material (GBM) at the end of the Engineered Barrier Emplacement (EB) experiment in the Opalinus Clay, placing it under different humidity conditions until it achieved equilibration, and testing the change in the gas permeability under loading and unloading. Environmental humidity is shown to have a significant effect on the water content, saturation, porosity and dry density of GBM and to affect its gas permeability. Higher sensitivity to confining pressure is exhibited by samples equilibrated at higher relative humidity (RH). It should be noted that for the sample at RH=98%, when the confining pressure is raised from 1 MPa to 6 MPa, gas permeability can be reduced from 10-16 m2 to 10-19 m2, which is close to the requirements of gas tightness. Due to higher water content and easier compressibility, samples equilibrated under higher RH show greater irreversibility during the loading and unloading process. The effective gas permeability of highly saturated samples can be increased by 2-3 orders of magnitude after 105℃ drying. In addition, cracks possibly occurred during the dehydration and drying process will become the main channel for gas migration, which will greatly affect the sealing performance of GBM.

폐유리분말을 충전재로 사용한 포장용 투수성 폴리머 콘크리트의 공학적 성질 (Engineering properties of permeable polymer concrete for pavement using powdered waste glass as filler)

  • 성찬용;김태호
    • 농업과학연구
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    • 제38권1호
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    • pp.145-151
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    • 2011
  • This study was performed to evaluate the void ratio, compressive and flexural strength, and permeability coefficient used powdered waste glass, $CaCO_3$, recycled coarse aggregate and unsaturated polyester resin to find optimum mix design of permeable polymer concrete for pavement. The void ratio and permeability coefficient of permeable concrete for pavement was decreased with increasing the powdered waste glass, respectively. The compressive strength and flexural strength was increased with increasing the powdered waste glass, respectively. In addition, this study found out that required amount of binder was decreased with increasing the powdered waste glass. This fact is expected to have economical effects during the use of powdered waste glass in the manufacture of permeable polymer concrete for pavement. Therefore, powdered waste glass and recycled coarse aggregate can be used for permeable polymer pavement.

연직배수재를 이용한 토양증기추출법의 적용 (Application of Enhanced Soil Vapor Extraction Using PVDs)

  • 신은철;박정준;김종인;최민근
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 지반공학 공동 학술발표회
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    • pp.382-388
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    • 2005
  • Soil vapor extraction(SVE) is an effective and cost efficient method of removing volatile organic compounds(VOCs) and petroleum hydrocarbons from unsaturated soils. However, soil vapor extraction becomes ineffective in soils with low gas permeability, for example soils with air permeabilities less than 1 Darcy. Prefabricated vertical drains(PVDs) have been used for dewatering fine-grained soils for more than 25 years. Incorporating PVDs in and SVE system can extend the effectiveness of SVE to lower permeability soils by shortening the air flow-paths and ultimately expediting contaminant removal. The objective of the work described herein was to effectively incorporate PVDs into a SVE remediation system and to demonstrate a PVDs enhanced SVE system at full scale. The finding from this research will facilitate the design of field PVD-SVE systems in terms by providing insight into the optimal spacing between PVDs, the radius of influence of the wells and the flow rates to be used to capture and extract gas phase contaminants.

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석분과 플라이 애쉬를 혼입한 투수용 폴리머 콘크리트의 공학적 성질 (Engineering Properties of Permeable Polymer Concrete With Stone Dust and Fly Ash)

  • 성찬용;정현정
    • 한국농공학회지
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    • 제38권4호
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    • pp.147-154
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    • 1996
  • This study wag performed to evaluate the engineering properties of permeable polymer concrete with stone dust and fly ash and unsaturated polyester resin. The following conclusions were drawn. 1. The highest strength was achieved by stone dust filled permeable polymer concrete, it was increased 17% by compressive strength, 188% by bending strength than that of the normal cement concrete, respectively. 2. The water permeability was in the range of 3.O76~4.152${\ell}/ cm{^2}/h$, and it was largely dependent upon the mix design. These concrete can be used to the structures which need water permeability. 3. The static modulus of elasticity was in the range of $1.15{\times} 10^5kg/cm^2$, which was approximately 53 56% of that of the normal cement concrete. 4. The poisson's number of permeable polymer concrete was in the range of 5.106~5.833, which was less than that of the normal cement concrete. 5. The dynamic modulus of elasticity was in the range of $1.29{\times} 10^5~1.5{\times} 10^5 kg/cm^2$, which was approximately less compared to that of the normal cement concrete. Stone dust filled permeable polymer concrete was showed higher dynamic modulus. The dynamic modulus of elasticity were increased approximately 7~13% than that of the static modulus. 6. The compressive strength, bending strength, elastic modulus, poisson's ratio, longitudinal strain and horizontal strain were decreased with the increase of poisson's number and water permeability at those concrete.

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충전재가 투수용 폴리머 콘크리트의 공학적 성질에 미치는 영향 (Effects of Filler on Engineering Properties of Permeable Polymer Concrete)

  • 성찬용;정현정;민정기
    • 농업과학연구
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    • 제23권1호
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    • pp.51-60
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    • 1996
  • This study was performed to evaluate the effects of filler on engineering properties of permeable polymer concrete with unsaturated polyester resin. The following conclusions were drawn; 1. The unit weight was in the range of $1.804{\sim}1.919t/m^3$, the weights of those concrete were decreased 17~22% than that of the normal cement concrete. 2. The highest strength was achieved by stone dust filled permeable polymer concrete, it was increased 17% by compressive, 147% by tensile and 188% by bending strength than that of the normal cement concrete, respectively. 3. The ultrasonic pulse velocity was in the range of 2,722~3,060m/sec, which was showed about the same compared to that of the normal cement concrete. Stone dust filled permeable polymer concrete was showed higher pulse velocity. 4. The water permeability was in the range of $3.076{\sim}4.152{\ell}/cm^2/h$, and it was larglely dependent upon the mix design. These concrete can be used to the structures which need water permeability. 5. The compressive strength, tensile strength, bending strength and ultrasonic pulse velocity were largely showed with the increase of unit weight. But, it was decreased with the increase of water permeability, respectively.

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폴리프로필렌섬유를 혼입한 포장용 투수성 폴리머 콘크리트의 공학적 성질 (Engineering Properties of Permeable Polymer Concrete for Pavement Using Polypropylene Fiber)

  • 성찬용;이승훈
    • 농업과학연구
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    • 제37권2호
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    • pp.277-283
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    • 2010
  • Research on permeable pavement like asphalt and concrete pavement with porous structure has been increasing due to environmental and functional need such as reduction of run off and flood. This study was performed to evaluate void ratio, permeability coefficient, and compressive strength of permeable polymer concrete (PPC) using crushed and recycled coarse aggregate that is obtained from waste concrete. Also, 6 mm length of polypropylene fiber was used to increase toughness and interlocking between aggregate and aggregate surrounded by binder. Binder and filler used were unsaturated polyester resin and CaCO3, respectively. The mix proportions were determined to satisfy the requirement for the workability and slump according to aggregate sizes 5~10 mm. In the test results, regardless of kinds of aggregates and fiber contents, the void ratio, permeability coefficient and compressive strength of all types of PPC showed the higher than the criterion of porous concrete that is used in permeable pavement in Korea. Also, strengths of PPC with increase polypropylene fiber volume fraction showed slightly increased tendency due to increase binder with increase of fiber volume fraction. Accordingly, polypropylene fiber and recycled coarse aggregate can be used for permeable pavement.

TOUGH2 전산코드의 MINC 기법을 이용한 불포화 암반 내 단열 해석 방법론 개발 (Development of Methodology for Fracture Network Analysis in the Unsaturated Zone using MINC Approach in TOUGH2 Code)

  • 하재철;정재열;김수진;윤정현
    • 지질공학
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    • 제26권3호
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    • pp.325-330
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    • 2016
  • 현재 경주 중저준위방사성폐기물 처분장(이하 '경주방폐장')에서는 2단계 표층처분시설이 계획중에 있으며, 포화대에 위치한 1단계 처분시설과는 달리 불포화대 상부에 위치하게 된다. 단열을 포함하는 불포화대의 특성상 지하수 및 용질의 대부분이 단열을 통해 이동할 것으로 예상된다. 따라서 불포화 암반 매질에 대한 정밀한 해석을 위하여 단열망 연속체와 암반 매질 연속체를 구분하여 해석하는 TOUGH2 전산코드의 meshmaker 모듈의 MINC 기법을 활용하였다. TOUGH2 MINC 기법의 기존 국내 연구 사례가 미미하여 본 연구에서는 MINC를 이용한 mesh 구성 방법에 대한 절차를 개발하였으며, 단열 연속체와 암반매질 연속체의 k-field를 생성하였다. 이와 같이 생성된 도메인은 향후 이중 연속체를 기반으로 경주방폐장의 지하수 유동 및 오염물질 이동 등에 활용될 뿐만 아니라 단열이 발달한 암반에서 단열-암반매질 연결성을 고려한 단열망 유동 특성을 분석하는데 참고가 될 것으로 기대한다.

불포화 인공 식재 지반의 배수 성능과 식생 가능 조건에 대한 수치해석적 분석 (Numerical Analysis on Drain Capacity and Vegetation Potential of Unsaturated Made-Planting Soil)

  • 김성민;김충언;정영훈
    • 한국지반환경공학회 논문집
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    • 제17권6호
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    • pp.33-41
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    • 2016
  • 본 연구에서는 인공 식재 지반의 공학적 배수 성능과 생물학적 식생 가능성을 평가하기 위해 유한요소해석을 실시하였다. 불포화토 해석을 통해 인공 식재 지반의 공학적 성능 평가가 가능하다. 하지만 식생 조경의 관점에서 조경 식물이 생존하기 위해서는 인공 식재 지반이 최소한의 수분을 제공하는지 확인해야 한다. 화강 풍화토로 이루어진 인공 식재 지반을 1m 높이의 사각형 토체 기둥으로 모사하여 해석하였다. 해석 결과 토체의 배수 성능이 포화 투수계수와 불포화토 함수특성의 조합에 따라 크게 달라질 수 있음을 보였다. 체적 함수비의 변화가 최소 한계 수분 범위(LLWR) 이내에서 발생하는지 확인하여 식물이 갈수기 동안 생존할 수 있는 최소한의 수분을 인공 식재 지반이 제공할 수 있음을 파악할 수 있다.

연직배수시스템을 이용한 토양증기추출공법의 성능 평가 (Performance Evaluation of Soil Vapor Extraction Using Prefabricated Vertical Drain System)

  • 신은철;박정준
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제12권5호
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    • pp.9-18
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    • 2007
  • 토양증기추출공법(SVE)은 불포화 지반상태에서 휘발성 유기화합물(VOCs)과 유류오염 물질을 제거하는데 효과적이고 경제적인 공법중 하나이다. 그러나 토양증기추출공법은 투기계수가 1 Darcy보다 작은 실트질 흙과 같이 낮은 투기계수를 가진 지반에서는 비효율적이다. 따라서, 본 연구에서는 기존 연약지반의 지반개량시 사용된 연직배수재(PVDs)를 토양증기추출시스템에 적용하여 짧은 공기배출거리로 최대한 신속하게 오염물질을 제거할 수 있게 하여 투기계수가 낮은 지반에서 오염된 토양을 효과적으로 복원할 수 있는 토양증기추출공법을 적용하는데 목적이 있다. 실험결과, 등가직경이 증가할수록 계산된 투기계수의 값은 감소하였고, 흙시료의 조건이 건조상태일 경우가 습윤상태 보다 공기가 차지하는 비율이 더 커지게 되어 같은 진공이 주어졌을 때, 공기흐름에 대한 낮은 저항으로 흐름률이 더 높게 나타났다.

충전재 종류에 따른 포장용 포러스 폴리머 콘크리트의 강도 및 투수 특성 (Strengths and Permeability Properties of Porous Polymer Concrete for Pavement with Different Fillers)

  • 김영익;성찬용
    • 한국농공학회논문집
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    • 제49권4호
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    • pp.51-59
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    • 2007
  • Recently, concrete has been made porous and used for sound absorption, water permeation, vegetation and water purification according to void characteristics. Many studies are carried out on the utilization of sewage sludge, fly ash and waste concrete to reduce the environmental load. This study was performed to evaluate the void, strength, relationship between void and strength, permeability and chemical resistance properties of porous polymer concrete for pavement with different fillers. An unsaturated polyester resin was used as a binder, crushed stone and natural sand were used as an aggregate and bottom ash, fly ash and blast furnace slag were used as fillers. The mix proportions were determined to satisfy the requirement for the permeability coefficient, $1{\times}10^{-2}$ cm/s for general permeable cement concrete pavement in Korea. The void ratios of porous polymer concrete with fillers were in the range of $18{\sim}23%$. The compressive strength and flexural load of porous polymer concrete with fillers were in the range of $19{\sim}22$ MPa and $18{\sim}24$ KN, respectively. The permeability coefficients of porous polymer concrete with fillers were in the range of $5.5{\times}10^{-1}{\sim}9.7{\times}10^{-2}$ cm/s. At the sulfuric acid resistance, the weight reduction ratios of porous polymer concrete immersed during 8-week in 5% $H_{2}SO_{4}$ were in the range of $1.08{\sim}3.56%$.