• 제목/요약/키워드: rock grouting

검색결과 157건 처리시간 0.019초

그라우팅 강화터널의 설계 특성치 산정에 관한 연구 (Estimation of the Anisotropic Material Properties of Rock Masses with Permeation Grouting)

  • 이준석;방춘석;최일윤;엄주환
    • 자연, 터널 그리고 지하공간
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    • 제1권1호
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    • pp.67-80
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    • 1999
  • The Grout-reinforcement technique which is widely used during the excavation of a shallow or an endangered tunnel can be classified into a couple of groups according to the properties and injection methods of the grout. The reinforcement design will, therefore, take a different approach based on the grouting method under consideration. However, the injection procedure is mainly performed by the experience of the foreman rather than engineering judgement , specifically the permeation grouting through the rock joints and its reinforcement effect Is not fully under-stood during the design stage, In this study, the anisotropic material properties of the grout-reinforced rock masses are derived from the concept of composite materials and the effect of intact rock, vertical grouting and permeation grouting is, therefore, fully accounted for. Through the parametric studies on the characteristics of rock joints, intact rock and grouting materials, various case studies have been considered. The results, illustrated via the design charts, can be directly used during the reinforcement design.

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기반암에서 그라우팅에 의한 차수효과 (The Impermeable Effect for Bedrock Constructed by Grouting)

  • 여규권
    • 한국지반환경공학회 논문집
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    • 제10권2호
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    • pp.51-59
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    • 2009
  • 본 연구는 댐 4개소의 기초지반에 실시된 암반 그라우팅에 대한 현장 시험결과를 통하여 RQD, 단위시멘트주입량, Lugeon값(Lu) 및 최대주입압력과의 상관관계를 비교 분석하였다. 본 연구현장에 대하여 댐 기초지반에서 암반 그라우팅을 실시한 후 차수성에 관한 개량효과 분석결과 변성암지역이 퇴적암지역 보다 우수한 것으로 조사되었다. 그리고 압밀(Consolidation) 그라우팅의 차수효과가 차수(Curtain) 그라우팅 보다 우수한 것으로 나타났다. 단위시멘트주입량은 RQD가 클수록 증가하는 경향을 보이나, Lugeon값은 RQD와 무관한 관계를 나타내고 있다. Lugeon값과 단위시멘트주입량(Vc)의 관계는 서로 비례하고 비교적 투수성이 큰 퇴적암 지역에서의 상관관계가 Lu = 0.22Vc인 직접적인 비례관계를 보였다. 기 시공된 인접공의 영향은 차수 그라우팅 보다 압밀 그라우팅이 큰 것으로 조사되었다. 그리고 주입순서에 따른 단위시멘트주입량과 Lugeon값의 변화는 거의 동일한 거동을 나타내고 있다.

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암석 절리면의 그라우팅에 의한 보강에 관한 연구 (A Study on the Reinforcement of Rock Faults by Grouting)

  • 천병식;최중근
    • 한국지반환경공학회 논문집
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    • 제4권4호
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    • pp.45-51
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    • 2003
  • 암반 내에서 주입재는 토사지반에서와는 달리 절리면을 따라 맥상으로 주입되며 그 결과 암반 내의 불연속면의 특성을 변화시키게 된다. 그러므로 그라우팅 후 암반의 변형특성은 주입재가 주입되는 절리의 방향, 절리의 특성, 그리고 현지암반의 응력상태에 따라 달라지게 된다. 즉 그라우팅에 의한 보강효과를 정확히 평가하기 위해서는 암반 내의 불연속면의 특성과 주입재의 특성이 암반의 변형거동에 미치는 영향을 규명하여야 한다. 그러나 현재까지 현장에서 적용되고 있는 그라우팅공법은 시공자의 경험에 의존하고 있으며, 그 효과에 대한 검증도 현장에서의 탄성파속도 측정, 투수시험 등을 통하여 평가하고 있다. 따라서, 본 연구에서는 그라우팅에 의한 댐 기초 암반절리면의 전단변형특성을 파악하기 위해서 자연암석 절리면에 OPC(Ordinary Portland Cement)와 Micro Cement를 각각 주입하여, 주입재의 종류, 절리면 거칠기의 평균진폭(a)에 대한 주입두께(t)를 변화시켜가면서 암석절리면 직접전단시험을 실시한 실험결과들을 비교 분석하여 최대전단강도, 잔류전단강도 등의 전단특성에 미치는 영향에 대하여 검토하였다.

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Comparative study on dynamic properties of argillaceous siltstone and its grouting-reinforced body

  • Huang, Ming;Xu, Chao-Shui;Zhan, Jin-Wu;Wang, Jun-Bao
    • Geomechanics and Engineering
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    • 제13권2호
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    • pp.333-352
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    • 2017
  • A comparison study is made between the dynamic properties of an argillaceous siltstone and its grouting-reinforced body. The purpose is to investigate how grout injection can help repair broken soft rocks. A slightly weathered argillaceous siltstone is selected, and part of the siltstone is mechanically crushed and cemented with Portland cement to simulate the grouting-reinforced body. Core specimens with the size of $50mm{\times}38mm$ are prepared from the original rock and the grouting-reinforced body. Impact tests on these samples are then carried out using a Split Hopkinson Pressure Bar (SHPB) apparatus. Failure patterns are analyzed and geotechnical parameters of the specimens are estimated. Based on the experimental results, for the grouting-reinforced body, its shock resistance is poorer than that of the original rock, and most cracks happen in the cementation boundaries between the cement mortar and the original rock particles. It was observed that the grouting-reinforced body ends up with more fragmented residues, most of them have larger fractal dimensions, and its dynamic strength is generally lower. The mass ratio of broken rocks to cement has a significant effect on its dynamic properties and there is an optimal ratio that the maximum dynamic peak strength can be achieved. The dynamic strain-softening behavior of the grouting-reinforced body is more significant compared with that of the original rock. Both the time dependent damage model and the modified overstress damage model are equally applicable to the original rock, but the former performs much better compared with the latter for the grouting-reinforced body. In addition, it was also shown that water content and impact velocity both have significant effect on dynamic properties of the original rock and its grouting-reinforced body. Higher water content leads to more small broken rock pieces, larger fractal dimensions, lower dynamic peak strength and smaller elastic modulus. However, the water content plays a minor role in fractal dimensions when the impact velocity is beyond a certain value. Higher impact loading rate leads to higher degree of fragmentation and larger fractal dimensions both in argillaceous siltstone and its grouting-reinforced body. These results provide a sound basis for the quantitative evaluation on how cement grouting can contribute to the repair of broken soft rocks.

터널 내 파쇄지반 개량을 위한 압밀그라우팅 성능 평가 연구 (A Study on Improvement Effects on Fractured Rock Mass by Consolidation Grouting in Tunnel)

  • 정교철;서용석
    • 지질공학
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    • 제12권2호
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    • pp.189-202
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    • 2002
  • 본 연구에서는 파쇄대구간에서 현장시험을 실시하여 암반의 역학특성과 투수성 등을 평가함으로써 그라우팅에 의한 암반파쇄대의 개량효과를 평가하였다. 시험위치 주변 암반에 실시된 압밀그라우팅으로 인한 평균적인 암반개량정도는 변형계수가 평균 2.30, 탄성계수가 2.49로 나타나 탄성계수에 대한 개량이 더 효과적으로 나타났다. 본 연구를 통하여 얻어진 결과는 다음과 같다. (1) 주입단계가 진전됨에 따라 총 주입량의 변화는 암반의 일체화를 보여준다. (2) 압밀그라우팅의 실시 후에 측정된 루전치의 감소는 투수성의 개량을 보여준다. (3) 그라우팅 주입은 암반의 변형성과 강도특성의 개량을 가져을 수 있다. (4) 암반 개량전에 변형성이 큰 암반은 더욱 큰 역학특성의 개량을 보인다.

Application of rock mass index in the prediction of mine water inrush and grouting quantity

  • Zhao, Jinhai;Liu, Qi;Jiang, Changbao;Defeng, Wang
    • Geomechanics and Engineering
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    • 제30권6호
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    • pp.503-515
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    • 2022
  • The permeability coefficient is an essential parameter for the study of seepage flow in fractured rock mass. This paper discusses the feasibility and application value of using readily available RQD (rock quality index) data to estimate mine water inflow and grouting quantity. Firstly, the influence of different fracture frequencies on permeability in a unit area was explored by combining numerical simulation and experiment, and the relationship between fracture frequencies and pressure and flow velocity at the monitoring point in fractured rock mass was obtained. Then, the stochastic function generation program was used to establish the flow analysis model in fractured rock mass to explore the relationship between flow velocity, pressure and analyze the universal law between fracture frequency and permeability. The concepts of fracture width and connectivity are introduced to modify the permeability calculation formula and grouting formula. Finally, based on the on-site grouting water control example, the rock mass quality index is used to estimate the mine water inflow and the grouting quantity. The results show that it is feasible to estimate the fracture frequency and then calculate the permeability coefficient by RQD. The relationship between fracture frequency and RQD is in accordance with exponential function, and the relationship between structure surface frequency and permeability is also in accordance with exponential function. The calculation results are in good agreement with the field monitoring results, which verifies the rationality of the calculation method. The relationship between the rock mass RQD index and the rock mass permeability established in this paper can be used to invert the mechanical parameters of the rock mass or to judge the permeability and safety of the rock mass by using the mechanical parameters of the rock mass, which is of great significance to the prediction of mine water inflow and the safety evaluation of water inrush disaster management.

시멘트현탁액 주입에 의한 절리암반의 역학적 특성 변화 (The Effect of Cement Milk Grouting on the Deformation Behavior of Jointed Rock Mass)

  • 김태혁;이정인
    • 터널과지하공간
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    • 제13권5호
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    • pp.331-343
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    • 2003
  • 주입공법은 터널 등 지하구조물의 보강법으로 적용사례가 증가하고 있으나, 그 효과의 공학적 평가에 관한 연구는 매우 부족한 실정이며, 특히 절리를 포함한 불연속암반의 주입재에 의한 역학적 특성변화에 대한 연구는 거의 이루어지지 않고 있는 형편이다. 따라서 본 연구에서는 주입에 의한 불연속암반의 변형특성을 규명하기 위하여 절리군의 경사, 절리군의 간격을 달리한 절리암반모형을 제작한 후, 이에 대한 주입전후에 대한 이축압축시험을 실시하여 변형특성을 조사하였다. 또한 시멘트현탁액 주입공법이 적용된 고속도로터널에 대한 3차원 유한차분해석을 실시하여, 이를 현장계측자료와 비교함으로써 해석의 타당성을 검토하였다. 주입후 절리 암반모형에 대한 이축압축시험결과, 절리암반의 하중-변형곡선은 주입전의 비선형에서 선형적으로 변하였으며, 변형계수도 증가하는 것으로 나타났다. 절리간격과 최소주응력이 커짐에 따라 주입전 변형계수에 대한 주입후 변형계수의 비가 지수함수적으로 감소하는 경향을 보였다. 주입전후의 이축압축시험결과로부터 주입전 암반의 변형계수와 주입후 암반의 변형계수의 관계를 지수함수로 표현한 경험식으로 제시하였다. 현지암반의 주입에의한 보강효과를 3차원 유한차분법을 이용하여 해석한 결과, 주입공법이 적용될 경우 터널의 천단과 측벽에서 발생되는 변위는 현저하게 감소하는 것으로 해석되었으며, 굴착이 진행됨에 따라 발생하는 변위의 양상이 현장 계측결과와 유사한 경향을 나타내었다.

원유 저장용 지하공동의 건설중 점토 그라우팅에 의한 지하수 제어 (Countrol of Groundwater by Clay Grouting in Undergroun Excavation of Oil Storage Caverns)

  • 김치환;박창우;이석천
    • 터널과지하공간
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    • 제3권1호
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    • pp.24-32
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    • 1993
  • Groundwater movement is one of the most important elements in the construction and management of underground oil storage cavern. To control the groundwater flow, grouting is run in parallel with water curtains. But as traditional grouting is conducted within cavern before and after excavation, the effect of grouting is delayed and the injection sphere is limited in the rock mass. Therefore, it is desirable to introduce a more extensive and effective grouting. This article is to present the caly grouting, which was the first to be carried out in the construction of underground caverns for oil storage in Japan. After conducting the clay grouting, the effect was confirmed by ground water level and infiltration quantity to the caverns.

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Factors affecting waterproof efficiency of grouting in single rock fracture

  • Lee, Hang Bok;Oh, Tae-Min;Park, Eui-Seob;Lee, Jong-Won;Kim, Hyung-Mok
    • Geomechanics and Engineering
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    • 제12권5호
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    • pp.771-783
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    • 2017
  • Using a transparent fracture replica with aperture size and water-cement ratio (w/c), the factors affecting the penetration behavior of rock grouting were investigated through laboratory experiments. In addition, the waterproof efficiency was estimated by the reduction of water outflow through the fractures after the grout curing process. Penetration behavior shows that grout penetration patterns present similarly radial forms in all experimental cases; however, velocity of grout penetration showed clear differences according to the aperture sizes and water-cement ratio. It can be seen that the waterproof efficiency increased as the aperture size and w/c decreased. During grout injection or curing processes, air bubbles formed and bleeding occurred, both of which affected the waterproof ability of the grouting. These two phenomena can significantly prevent the successful performance of rock grouting in field-scale underground spaces, especially at deep depth conditions. Our research can provide a foundation for improving and optimizing the innovative techniques of rock grouting.

Experimental study of strength characteristics of reinforced broken rock mass

  • Yanxu Guo;Qingsong Zhang;Hongbo Wang;Rentai Liu;Xin Chen;Wenxin Li;Lihai Zhang
    • Geomechanics and Engineering
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    • 재33권6호
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    • pp.553-565
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    • 2023
  • As the structure of broken rock mass is complex, with obvious discontinuity and anisotropy, it is generally necessary to reinforce broken rock mass using grouting in underground construction. The purpose of this study is to experimentally investigate the mechanical properties of broken rock mass after grouting reinforcement with consideration of the characteristics of broken rock mass (i.e., degree of fragmentation and shape) and a range of reinforcement methods such as relative strength ratio between the broken rock mass and cement-based grout stone body (λ), and volumetric block proportion (VBP) representing the volumetric ratio of broken rock mass and the overall cement grout-broken rock mass mixture after the reinforcement. The experimental results show that the strength and deformation of the reinforced broken rock mass is largely determined by relative strength ratio (λ) and VBP. In addition, the enhancement in compressive strength by grouting is more obvious for broken rock mass with spherical shape under a relatively high strength ratio (e.g., λ=2.0), whereas the shape of rock mass has little influence when the strength ratio is low (e.g., λ=0.1). Importantly, the results indicate that columnar splitting failure and inclined shear failure are two typical failure modes of broken rock mass with grouting reinforcement.