• Title/Summary/Keyword: Tunnel grouting

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S-I model of horizontal jet grouting reinforcement for soft soil

  • Zhang, Ning;Li, Zhongyin;Ma, Qingsong;Ma, Tianchi;Niu, Xiaodong;Liu, Xixi;Feng, Tao
    • Geomechanics and Engineering
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    • 제15권5호
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    • pp.1029-1038
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    • 2018
  • A superposition-iteration (S-I) model is proposed to simulate the jet grouting pre-reinforcing impact for a shallow-buried tunnel. The common model is deduced by theoretical (force equilibrium) analysis and then transformed into the numerical formulation. After applying it to an actual engineering problem, the most obvious deficiency was found to be continuous error accumulation, even when the parameters change slightly. In order to address this problem, a superposition-iteration model is developed based on the basic assumption and superposition theory. First, the additional deflection between two successive excavation steps is determined. This is caused by the disappearance of the supporting force in the excavated zone and the soil pressure in the disturbed zone. Consequently, the final deflection can be obtained by repeatedly superposing the additional deflection to the initial deflection in the previous steps. The analytical solution is then determined with the boundary conditions. The superposition-iteration model is thus established. This model was then applied and found to be suitable for real-life engineering applications. During the calculation, the error induced by the ill-conditioned problem of the matrix is easily addressed. The precision of this model is greater compared to previous models. The sensitivity factors and their impact are determined through this superposition-iteration model.

Field test and research on shield cutting pile penetrating cement soil single pile composite foundation

  • Ma, Shi-ju;Li, Ming-yu;Guo, Yuan-cheng;Safaei, Babak
    • Geomechanics and Engineering
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    • 제23권6호
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    • pp.513-521
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    • 2020
  • In this paper, due to the need for cutting cement-soil group pile composite foundation under the 7-story masonry structure of Zhenghe District and the shield tunnel of Zhengzhou Metro Line 5, a field test was conducted to directly cut cement-soil single pile composite foundation with diameter Ф=500 mm. Research results showed that the load transfer mechanism of composite foundation was not changed before and after shield tunnel cut the pile, and pile body and the soil between piles was still responsible for overburden load. The construction disturbance of shield cutting pile is a complicated mechanical process. The load carried by the original pile body was affected by the disturbance effect of pile cutting construction. Also, the fraction of the load carried by the original pile body was transferred to the soil between the piles and therefore, the bearing capacity of composite foundation was not decreased. Only the fractions of the load carried by pile and the soil between piles were distributed. On-site monitoring results showed that the settlement of pressure-bearing plates produced during shield cutting stage accounted for about 7% of total settlement. After the completion of pile cutting, the settlements of bearing plates generated by shield machine during residual pile composite foundation stage and shield machine tail were far away from residual pile composite foundation stage which accounted for about 15% and 74% of total settlement, respectively. In order to reduce the impact of shield cutting pile construction on the settlement of upper composite foundation, it was recommended to take measures such as optimization of shield construction parameters, radial grouting reinforcement and "clay shock" grouting within the disturbance range of shield cutting pile construction. Before pile cutting, the pile-soil stress ratio n of composite foundation was 2.437. After the shield cut pile is completed, the soil around the lining structure is gradually consolidated and reshaped, and residual pile composite foundation reaches a new state of force balance. This was because the condensation of grouting layer could increase the resistance of remaining pile end and friction resistance of the side of the pile.

복개 구조물을 이용한 저토피 계곡부 터널의 통과방안에 대한 연구 (A study on the shallow tunneling method using cover structure)

  • 정용진;남현우;최호식
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 지반공학 공동 학술발표회
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    • pp.564-569
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    • 2005
  • Usually, Steel pipe grouting method or cut and cover method has been applied to tunnel with very shallow overburden or it is situated in valley. However, in case of lack of overburden height to reinforcement tunnel crown which is very difficult to construction. Also, application of cut and cover method that do not consider surrounding site condition causes popular enmity generation and environmental damage. It is the best alternative method that reduces the amount of excavated soil and excavate tunnel under ground to solve these problems. The tunneling method using cover structure which is to prevent a tunnel from collapse because this method can be reduce excavation area and construct tunnel under ground after set a cover structure and backfill ground. In this study, to know more effective structure type, comparative analysis was performed to behavior characters of slab and arch type construction that can be used to cover structure. Also a 2D and 3D numerical analysis have been performed to verify the stability of ground during excavation. As the result, the tunneling method using cover structure that it can be good alternative method for tunnel with shallow overburden and it through valley

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병설터널 굴착시 필라부의 보강을 고려한 안정성 평가기법 (Stability Estimation Method for Pillar Considering the Reinforcement Method during Twin-Tunnel Excavation)

  • 장부식;황정순;류준원;이응기;김홍택
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 춘계 학술발표회 논문집
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    • pp.980-987
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    • 2006
  • Recently, twin-tunnel is often designed considering the aspects of disaster prevention and economic reasons. However, the design cases and the studies are relatively insufficient. By the twin-tunnel excavation, deviate stresses of pillar between tunnels are increased and the increased stresses induce the instability of the twin-tunnel. In this study, numerical analyses about the twin-tunnel behaviour are conducted while varying ground strength, width of pillar and depth of earth cover and a series of regression analyses are carried out by using the results of numerical analyses for the twin-tunnel. Based on the numerical analyses, an estimation method of derived stresses is suggested though the regression analyses. Also, based on the results of regression analyses, an quantitative estimation method considering the reinforcement effects is also suggested. Then various parametric studies are conducted to be considered the reinforcement type and various design parameters. Finally, the efficiency of the suggested method is verified through the results of parametric studies.

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강관다단 그라우팅에 적용하는 속경성 실링재 개발 (Development of rapidly hardening seal material applicable to steel pipe multistage grouting)

  • 신현강;정혁상;김동현;유용선;김동훈
    • 한국터널지하공간학회 논문집
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    • 제21권2호
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    • pp.301-321
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    • 2019
  • 본 논문에서는 강관다단 그라우팅에 적용하는 속경성 실링재 개발에 관한 실험적 내용을 다루었다. 강관다단 그라우팅 공법에서 실링재는 본 주입재의 주입시 역류를 방지하기 위해 주입하며 주입 후 일정시간이 지난 다음 겔화 상태에서 본 주입재를 주입해야 한다. 그러나 주입된 실링재가 겔 상태가 되기 이전 유동성이 있을 경우 본 주입재와 함께 혼합됨은 물론, 주입재의 역류가 발생되어 원지반으로 주입이 곤란하며, 반대로 너무 시간이 지나 겔화단계를 넘어 고결되었을 경우 본 주입재가 지반내로 주입되지 못하는 경우가 발생된다. 실링재의 유동성이 없어져 겔화 상태로까지 걸리는 시간에 따라 강관다단 그라우팅의 공사시간이 결정되며, 이는 전체 터널의 공사기간과 밀접한 관련이 있어 중요한 요소 중에 하나이다. 따라서 본 연구에서는 실링재 본연의 역할과 기능을 할 수 있을 뿐 아니라 공사기간을 단축시킬 수 있도록 실링재의 겔화시간을 단축시킬 수 있는 칼슘알루미네이트 재료를 개발하였고, 실링재 겔화 여부를 판단하는 방법에 대해 제시하고, 아울러 실링재의 겔 상태에서 블리딩율에 대해서도 각 품질기준과 시험방법에 대해 제안하였다.

Experimental study on nano silica modified cement base grouting reinforcement materials

  • Zhou, Fei;Sun, Wenbin;Shao, Jianli;Kong, Lingjun;Geng, Xueyu
    • Geomechanics and Engineering
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    • 제20권1호
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    • pp.67-73
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    • 2020
  • With the increasing number of underground projects, the problem of rock-water coupling catastrophe has increasingly become the focus of safety. Grouting reinforcement is gradually applied in subway, tunnel, bridge reinforcement, coal mine floor and other construction projects. At present, cement-based grouting materials are easy to shrink and have low strength after solidification. In order to overcome the special problems of high water pressure and high in-situ stress in deep part and improve the reinforcement effect. In view of the mining conditions of deep surrounding rock, a new type of cement-based reinforcement material was developed. We analyses the principle and main indexes of floor strengthening, and tests and optimizes the indexes and proportions of the two materials through laboratory tests. Then, observes and compares the microstructures of the optimized floor strengthening materials with those of the traditional strengthening materials through scanning electron microscopy. The test results show that 42.5 Portland cement-based grouting reinforcement material has the advantages of slight expansion, anti-dry-shrinkage, high compressive strength and high density when the water-cement ratio is 0.4, the content of bentonite is 4%, and the content of Nano Silica is 2.5%. The reinforcement effect is better than other traditional grouting reinforcement materials.

고수압 조건에서의 지반재해 저감을 위한 최신 그라우팅 시공관리 기술 기초연구 (A Fundamental Study of a Neo-Grouting Technology for the Decreasing of a Ground Disaster in a High Water Pressure Conditions)

  • 김진춘;유병선;강희진;권영삼
    • 한국방재안전학회논문집
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    • 제7권1호
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    • pp.9-16
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    • 2014
  • 고수압 시공 조건에서는 시설물 자체의 건설로 인하여 발생하는 주변지반의 이완 및 손상의 발생 그리고 시설물내로의 해수의 유입을 방지하기 위한 차수 및 지수설계 및 시공이 중요한 관건이다. 그라우팅 공사는 현재 지하철건설, 고속 철도건설, 각종 산악터널건설, 하천 저수지 재방 신설 및 보수공사 등에 년간 수조원 대의 시장규모를 형성하고 있지만, 설계 및 시공관리에 대한 관리기준이 정밀하지 못하여 경험적인 판단에 의존하는 부분이 너무 많아 경제적 손실도 매우 클 것이라고 쉽게 단정할 수 있다. 그라우팅 기술은 국가적 차원의 대규모 중요 건설공사 현장에서 필수적인 기술로 사용되고 있지만 기술에 대한 인식이 빈약하고 정립된 관리기준이 부재하여 신뢰성의 낙후가 심각한 실정이다. 따라서 본 연구는 고수압 조건에서 지반재해 저감을 위한 최신 그라우팅 시공관리기술에 대한 기초 연구를 제공함이 그 목적이다.

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.

경부고속철도(대구-부산) 도심통과 노반신설 공사중 기존 지하철 터널구간의 구조적 안정성 검토 (Structure stability study for existing subway tunnel segment of Seoul-Busan high-speed railroad (Daegu - Busan) construction)

  • 공병승;김민호
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2007년도 춘계학술대회 논문집
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    • pp.1752-1759
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    • 2007
  • In the new Seoul-Busan high speed railroad construction specially city center passage roadbed establishment is recommended the staibility for the existing subway tunnel segments of Busan subway line No. 1 and No.2. regarding the appearance condition, a quality condition and the durability of the objective facility site exact inspection, and it evaluates the numerical analysis which uses MIDAS GTS it leads and there is the objective of the place where the stability of the objective facility and this tunnel it investigates. To immediacy of the on-the-spot inspection result whole facility it is a condition where the reinforcement which is simple not to be hindrance is necessary, 2nd Line case it is a condition which transfer is good but the general defect and the damage which occur from the tunnel of NATM type were confirmed part. While roadbed establishment constructing that the continuous maintenance is necessary, it is judged. The result of 1st, 2nd Line maximum sinkage, unequal sinkage and the lining stress of numerical analysis are within permission and the damage degree is appearing with the fact that the degree it will can disregard it is slight. But it enforces necessary Pre-grouting in order to minimize an actual tunnel face conduct and when the tunnel is excavated it is judged with the fact that necessary to minimize the outflow possibility.

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터널 배수시설에 유입된 침전물의 유입경로 및 성분분석 연구 (A Study on Analysis of Influx Path and Ingredient of Sedimentation Substance in Tunnel Drainage System)

  • 우종태;유상건
    • 한국구조물진단유지관리공학회 논문집
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    • 제8권4호
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    • pp.145-152
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    • 2004
  • 적색 침전물은 철성분이 가장 많이 포함되어 있었는데 이는 흙막이공과 지역 특성상 철분을 많이 포함하고 있는 지하수에 원인이 있는 것으로 판단된다. 백색 침전물의 경우 가장 많이 발견된 성분은 산화칼슘으로 건설당시 지반보강을 위하여 시행한 그라우팅 주입재인 시멘트가 지하수와 함께 터널 내부로 유입된 침전물로서 터널의 안전성에는 영향이 없을 것으로 판단된다. 흑색 침전물은 정거장 시점 및 종점 근접부 터널에서 발생되고 있으며, 이는 청소용수 퉁 이물질이 터널 내 배수시설로 유입되어 백색 또는 적색 침전물과 혼합된 침전물이다.