• 제목/요약/키워드: secondary grouting

검색결과 10건 처리시간 0.025초

Experimental study on the performance of compensation grouting in structured soil

  • Zheng, Gang;Zhang, Xiaoshuang;Diao, Yu;Lei, Huayang
    • Geomechanics and Engineering
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    • 제10권3호
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    • pp.335-355
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    • 2016
  • Most laboratory test research has focused on grouting efficiency in homogeneous reconstituted soft clay. However, the natural sedimentary soils generally behave differently from reconstituted soils due to the effect of soil structure. A series of laboratory grouting tests were conducted to research the effect of soil structure on the performance of compensation grouting. The effects of grouting volume, overlying load and grouting location on the performance of compensation grouting under different soil structures were also studied. Reconstituted soil was altered with added cement to simulate artificial structured soil. The results showed that the final grouting efficiency was positive and significantly increased with the increase of stress ratio within a certain range when grouting in normally consolidated structured clay. However, in the same low yield stress situation, the artificial structured soil had a lower final grouting efficiency than the overconsolidated reconstituted soil. The larger of normalized grouting volume could increase the final grouting efficiency for both reconstituted and artificial structured soils. Whereas, the effect of the overlying load on final grouting efficiencies was unfavourable, and was independent of the stress ratio. As for the layered soil specimens, grouting in the artificial structured soil layer was the most efficient. In addition, the peak grouting pressure was affected by the stress ratio and the overlying load, and it could be predicted with an empirical equation when the overlying load was less than the yield stress. The end time of primary consolidation and the proportion of secondary consolidation settlement varied with the different soil structures, grouting volumes, overlying loads and grouting locations.

수리지질 및 암반공학 지수 간 상관분석을 통한 절리암반 내 그라우트 주입성 예측 연구 동향: 리뷰논문 (Trends in Predicting Groutability Based on Correlation Analysis between Hydrogeological and Rock Engineering Indices: A Review)

  • 백광민;장성간;정성우;;양민준
    • 지질공학
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    • 제33권2호
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    • pp.307-322
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    • 2023
  • 대형 댐 및 대심도 지하공간 개발에서 많이 시행되는 암반 그라우팅은 기초지반의 누수를 방지하여 안정성을 향상시키고 추가적인 재해를 방지하기 위해 사용되는 중요한 공종 중 하나이다. 대부분의 암반 그라우팅은 수리지질 및 암반공학적 지수들(RQD, Q-value, GSI, Js, Ap, Lu, SPI, and K)에 의해 영향을 받는다. 따라서, 안전하고 적절한 그라우팅 설계 및 시공을 위해서는 지질학자들의 정확한 기초 암반의 분석과 적절한 그라우팅 계획 수립이 필요하다. 해외의 경우 기초 암반의 수리지질 및 암반공학적 특성 분석과 그라우트 주입량(grout take, GT) 예측에 대한 연구가 활발히 이루어지고 있으며, 주로 댐의 기초지반 분야에서 많은 연구가 수행되었다. 하지만, 국내의 경우 그라우트 주입재료 및 시공관리 기법에 대한 연구는 많이 수행되었으나 암반의 수리지질 및 암반공학적 특성을 고려한 암반 그라우팅 공법에 대한 연구는 미흡한 실정이다. 이에 본 리뷰에서는 암반 그라우팅 계획시 중요한 수리지질 및 암반공학적 지수들(RQD, Q-value, GSI, Js, Ap, Lu, SPI, and K)과 그라우트 주입량의 상관성 분석을 진행한 해외 연구 사례를 파악하고 국내의 암반 그라우팅 관련 연구의 발전방향을 제시하였다.

Settlement behaviours and control measures of twin-tube curved buildings-crossing shield tunnel

  • Jianwei, Jia;Ruiqi, Gao;Defeng, Wang;Jianjun, Li;Ziwen, Song;Jinghui, Tan
    • Structural Engineering and Mechanics
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    • 제84권5호
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    • pp.699-706
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    • 2022
  • Settlement control techniques are critical for the safety of shield tunnel constructions, especially for facing complex situations. In this study, the shield tunnel structure from Huaita east road station to Heping Road station in Xuzhou metro No.3 line (China) is taken as engineering background, which has various complex problems of the upper-soft and lower-hard composite stratum conditions, twin curve shield tunnels, and underpass the foundation of the piled raft. The deformation characteristics of shield tunnelling passing through buildings are explored. Subsequently, comprehensive research methods of numerical simulation and field measurement are adopted to analyzing the effectiveness of settlement control by using the top grouting technique. The results show that the settlement of the buildings has obvious spatial characteristics, and the hysteresis effect can be obviously observed in soil deformation caused by shield construction. Meanwhile, the two shield constructions can cause repeated disturbances, reducing the soil deformation's hysteresis effect. Moreover, the shield tunnel's differential settlement is too large when a single line passes through, and the shield construction of the outer curve can cause more significant disturbance in the tunnel than the inside curve. Notably, the proposed process control parameters and secondary topgrouting method can effectively control the deformation of the shield tunnel, especially for the long-term deformation.

여수로 구조물 하부 암반 내 발달한 절리들을 통한 지하수 누수량 분석 (Evaluation on the leakage of ground-water through fractured rock under a spillway)

  • 김형수;정의진;이주현;이중우
    • 지구물리
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    • 제9권2호
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    • pp.129-134
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    • 2006
  • Recently, spillways are need to control stable water level for supporting main dams because of floods by unusual change of weather such as Typhoon Rusa. This study has been focused on the amount of leakage through the rock mass distributed fractures and joints under the opened emergency spillway. It is very important to evaluate the amount of leakage as these affect stability of spillway by interaction between effective stress and pore pressure. The commercial program MAFIC has been used for analyzing groundwater flow in fractured rock mass. The results showed that the values of range, average and deviation of leakage were 2.85∼3.79×10-1, 3.32×10-1 and 1.70×10-2 m3/day/m2 respectively. Secondary, we have estimated the effect of grouting after the transmissivity(Tf) of joint 1 as main pathway of leakage known from above results was changed from 1.78×10-7 to 1.59×10-9 m2/s. The results showed that the values of range, average and deviation of leakage were 7.80×10-4∼1.53×10-3, 1.18×10-3 and 1.32×10-4 m3/day/m2 respectively. As the result, the amount of leakage after grouting has been decreased by a ratio of 1 to 277.

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절리 암반의 수리지질 및 불연속면 특성 간 상관분석을 통한 그라우팅 계획 수립의 개선 방안 (Grouting Improvement through Correlation Analysis of Hydrogeology and Discontinuity Factors in a Jointed Rock-Mass)

  • 백광민;장성간;정성우;양민준
    • 지질공학
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    • 제34권2호
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    • pp.279-294
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    • 2024
  • 댐은 대규모 토목 구조물로서 안전한 운영을 위해 기초지반의 누수를 차단하고 추가적인 재해를 방지하기 위하여 암반 그라우팅에 대한 체계적인 접근 및 이해가 필요하다. 국내에서는 암반 그라우팅 계획에 있어 현장 기술자의 경험과 유사 사례에 의존하는 경향이 있으며, 보다 신뢰성 있는 그라우팅 계획을 위해 (토목 or 공학적) 이론과 (현장 or 지반) 조사결과를 바탕으로 한 개선방안이 필요한 실정이다. 암반에서 시행하는 그라우팅은 대부분 수리지질 및 불연속면 인자들(RQD, Js, Lu, SPI)에 의해 가장 큰 영향을 받는다. 본 연구에서는 국내 14개 현장에서 실시된 조사 자료를 토대로 수리지질학적 인자(Lu, SPI)와 불연속면 인자(RQD, Js), 그라우트 주입량(grout take) 간의 상관관계를 분석하고 암반 그라우팅 계획의 체계적인 수립 방안을 제시하였다. 연구 인자(RQD, Js, Lu, SPI) 간의 피어슨 상관계수(r)를 분석한 결과, Lu과 SPI의 상관관계(r = 0.92)가 가장 높고, RQD와 Lu(r = -0.75), RQD와 Js(r = 0.69), RQD와 SPI(r = -0.65), Js와 Lu(r = -0.47), SPI와 Js(r = -0.41) 순으로 상관관계가 감소하는 것으로 나타났다. 그라우트 주입량과 연구 인자(RQD, Js, Lu, SPI) 간 상관관계를 분석한 결과, Lu과 SPI는 값이 커질수록 주입량이 증가하는 경향을 보이나 RQD와 Js는 유의한 상관관계가 나타나지 않았다. SPI를 토대로 제안된 그라우팅 계획 수립의 접근 방법은 실제 수행한 차수 그라우팅 시공 자료와 비교‧분석을 통해 검증하였고, 향후 세부 연구 및 실무 수행에 있어 유용한 자료로 활용될 수 있다.

여수로 구조물 하부 암반 내 발달한 절리들을 통한 지하수 누수량 분석 (Evaluation on the leakage of ground-water through fractured rock under a spillway)

  • 김형수;이주현;정의진;이중우
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 춘계 학술발표회 논문집
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    • pp.69-74
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    • 2006
  • Recently, spillways are need to control stable water level for supporting main dams because of floods by unusual change of weather such as Typhoon Rusa. This study has been focused on the amount of leakage through the rock mass distributed fractures and joints under the opened emergency spillway. It is very important to evaluate the amount of leakage as these affect stability of spillway by interaction between effective stress and pore pressure. The commercial program MAFIC has been used for analyzing groundwater flow in fractured rock mass. The results showed that the values of range, average and deviation of leakage were $2.85\sim\;3.79\times10^{-1}$, $3.32\times10^{-1}$ and $1.70\times10^{-2}\;m^3/day/m^2$ respectively. Secondary, we have estimated the effect of grouting after the transmissivity$(T_f)$ of joint 1 as main pathway of leakage known from above results was changed from $1.78\times10^{-7}$ to $1.59\times10^{-9}\;m^2/s$. The results showed that the values of range, average and deviation of leakage were $7.80\times10^{-4}\sim1.53\times10^{-3}$, $1.18\times10^{-3}$ and $1.32\times10^{-4}\;m^3/day/m^2$ respectively. As the result, the amount of leakage after grouting has been decreased by a ratio of 1 to 277.

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A two-step interval risk assessment method for water inrush during seaside tunnel excavation

  • Zhou, Binghua;Xue, Yiguo;Li, Zhiqiang;Gao, Haidong;Su, Maoxin;Qiu, Daohong;Kong, Fanmeng
    • Geomechanics and Engineering
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    • 제28권6호
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    • pp.573-584
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    • 2022
  • Water inrush may occur during seaside urban tunnel excavation. Various factors affect the water inrush, and the water inrush mechanism is complex. In this study, nine evaluation indices having potential effects on water inrush were analysed. Specifically, the geographic and geomorphic conditions, unfavourable geology, distance from the tunnel to sea, strength of the surrounding rock, groundwater level, tidal action, cyclical footage, grouting pressure, and grouting reinforced region were analysed. Furthermore, a two-step interval risk assessment method for water inrush management during seaside urban tunnel excavation was developed by a multi-index system and interval risk assessment comprised of an interval analytic hierarchy process, fuzzy comprehensive evaluation, and relative superiority analysis. The novel assessment method was applied to the Haicang Tunnel successfully. A preliminary interval risk assessment method for water inrush was performed based on engineering geological conditions. As a result, the risk level fell into a risk level IV, which represents a section with high risk. Subsequently, a secondary interval risk assessment method was performed based on engineering geological conditions and construction conditions. The risk level of water inrush is reduced to a risk level II. The results agreed with the current tunnel situation, which verified the reliability of this approach.

GPS 항공사진측량의 효율성 평가에 관한 연구 (The Study of Efficient Estimation of GPS Photogrammetry)

  • 김용석;손호웅
    • 지구물리
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    • 제9권2호
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    • pp.121-128
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    • 2006
  • 최근 동적 DGPS 위치결정에 의한 사진기준점 측량은 국가기본도 작성과 지적재조사 사업을 비롯한 각종 국토개발 분야에 활용할 수 있으며, 앞으로 GPS 수신기 보급의 증가와 더불어 촬영시 비행동체의 정확한 움직임을 고려한 보간기법의 개발, 관성측량기에 의한 GPS의 단점보완 등에 관한 지속적인 연구가 요청되고 있다. GPS를 이용한 항공사진측량 방법에서는 항공기에 탑재한 GPS 수신기로 촬영 순간의 노출점의 위치와 회전각을 정확히 결정함으로써 외부표정요소 결정을 위한 지상기준점 측량을 생략하거나 또는 최소한의 기준점만을 사용하여 외부표정 요소를 결정할 수 있으며, 이에 따라 지형도 제작에 대한 시간과 경비를 크게 절감할 수 있다. 본 연구에서는 전통적 항공사진측량방법과 GPS 항공사진측량방법을 동시에 수행하고 두 방법의 결과를 비교하여 이들 방법간의 정밀도 및 효율성 등을 평가하고자 하였다. 연구결과 전통적 항공사진측량에 비하여 GPS 항공사진측량의 다양한 장점을 확인할 수 있었다. 특히, 외부표정에 필요한 지상기준점의 수는 약 70%∼80%이상, 지형도제작 비용은 약 30%∼50%이상 절감할 수 있었다. 뿐만 아니라 기준점의 수를 크게 생략하였음에도 불구하고 정밀도에는 영향이 없었음을 알 수 있었다.

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A case study on asymmetric deformation mechanism of the reserved roadway under mining influences and its control techniques

  • Li, Chen;Wu, Zheng;Zhang, Wenlong;Sun, Yanhua;Zhu, Chun;Zhang, Xiaohu
    • Geomechanics and Engineering
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    • 제22권5호
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    • pp.449-460
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    • 2020
  • The double-lane arrangement model is frequently used in underground coal mines because it is beneficial to improve the mining efficiency of the working face. When the double-lane arrangement is used, the service time of the reserved roadway increases by twice, which causes several difficulties for the maintenance of the roadway. Given the severe non-uniform deformation of the reserved roadway in the Buertai Coal Mine, the stress distribution law in the mining area, the failure characteristics of roadway and the control effect of support resistance (SR) were systematically studied through on-site monitoring, FLAC 3D numerical simulation, mechanical model analysis. The research shows that the deformation and failure of the reserved roadway mainly manifested as asymmetrical roof sag and floor heave in the region behind the working face, and the roof dripping phenomenon occurred in the severe roof sag area. After the coal is mined out, the stress adjustment around goaf will happen to some extent. For example, the magnitude, direction, and confining pressure ratio of the principal stress at different positions will change. Under the influence of high-stress rotation, the plastic zone of the weak surrounding rock is expanded asymmetrically, which finally leads to the asymmetric failure of roadway. The existing roadway support has a limited effect on the control of the stress field and plastic zone, i.e., the anchor cable reinforcement cannot fully control the roadway deformation under given conditions. Based on obtained results, using roadway grouting and advanced hydraulic support during the secondary mining of the panel 22205 is proposed to ensure roadway safety. This study provides a reference for the stability control of roadway with similar geological conditions.

Analysis of stability control and the adapted ways for building tunnel anchors and a down-passing tunnel

  • Xiaohan Zhou;Xinrong Liu;Yu Xiao;Ninghui Liang;Yangyang Yang;Yafeng Han;Zhongping Yang
    • Geomechanics and Engineering
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    • 제35권4호
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    • pp.395-409
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    • 2023
  • Long-span suspension bridges have tunnel anchor systems to maintain stable cables. More investigations are required to determine how closely tunnel excavation beneath the tunnel anchor impacts the stability of the tunnel anchor. In order to investigate the impact of the adjacent tunnel's excavation on the stability of the tunnel anchor, a large-span suspension bridge tunnel anchor is utilised as an example in a three-dimensional numerical simulation approach. In order to explore the deformation control mechanism, orthogonal tests are employed to pinpoint the major impacting elements. The construction of an advanced pipe shed, strengthening the primary support. Moreover, according to the findings the grouting reinforcement of the surrounding rock, have a significant control effect on the settlement of the tunnel vault and plug body. However, reducing the lag distance of the secondary lining does not have such big influence. The greatest way to control tunnel vault settling is to use the grout reinforcement, which increases the bearing capacity and strength of the surrounding rock. This greatly minimizes the size of the tunnel excavation disturbance area. Advanced pipe shed can not only increase the surrounding rock's bearing capacity at the pipe shed, but can also prevent the tunnel vault from connecting with the disturbance area at the bottom of the anchorage tunnel, reduce the range of shear failure area outside the anchorage tunnel, and have the best impact on the plug body's settlement control.