• 제목/요약/키워드: grouting arrangement

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지반 그라우팅에 의한 상부구조물의 안전성 분석 (Stability Analysis of Upper Structures by Soil Grouting)

  • 황철성
    • 한국안전학회지
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    • 제28권4호
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    • pp.58-65
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    • 2013
  • Transportation and further expansion of social infrastructure was needed along the development of urbanization and population concentration. To use the underground space due to the lack of availability of land, it is inevitable to intersect between present structure and tunnel during construction. Soil grouting is one of the ground improvement methods to reinforce weak soil around the underground structures by injection of grouting liquid. Some of central columns of an upper structure are damaged during injection of grouting liquid by injection pressure. To investigate and improve the stability of the tunnel, three dimensional analysis are performed with full construction stages which includes the construction of present underpass, damaging columns of the underpass, reinforcing the columns by H-pile and shear walls, and excavation and construct tunnel. The arrangement of grouting holes such as curtain and horizontal type affects largely to the stability of upper structure and horizontal arrangement diminish the shear forces which is the cause of damage of central columns. The liquid injection type of reinforcement for tunnel is not recommended while the presence of upper structure with columns. Wall type reinforcing is utilize for permant support of upper structures which is affected by grouting injection pressure. H-pile is utilize for temporary support, but not for permanent since the sharing of shear forces is not much to shear wall during tunnel construction.

점성토 연약지반에서의 다중 동시주입 컴팩션 그라우팅 공법 적용성 연구 (Study on Applicability of Simultaneous Multiple Compaction Grouting Method in Soft Clay Ground)

  • 이효범;정현석;정의엽;최항석
    • 대한토목학회논문집
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    • 제39권6호
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    • pp.779-788
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    • 2019
  • 컴팩션 그라우팅 공법, 일명 CGS (Compaction Grouting System) 공법은 저유동성 그라우트재의 주입을 통해 주변 지반을 압밀·다짐하여 원지반의 물성 향상은 물론 지중 그라우트 구근체의 형성을 통해 복합지반 거동을 기대함으로써 지반을 개량하는 공법이다. 그러나 기존 컴팩션 그라우팅 공법에 사용되는 펌프는 한 번에 여러 공을 동시에 주입하기 어려워 시공 물량이 많아 신속함이 요구되는 공사 시에 시공 효율성 확보가 어려웠다. 따라서 본 논문에서는 3공까지 동시주입이 가능한 다중 동시주입 컴팩션 그라우팅 공법을 개발하여 현장시험을 통해 지반 보강효과의 적용성을 평가하였다. 현장시험은 점성토 연약지반에 단일공과 3공 삼각 배열로 각각 시험시공하고 그라우팅 주입 전·후 표준관입시험(SPT)을 수행하여 그 결과를 비교·분석하였다. 최종적으로 점성토 연약지반에서 다중 동시주입 컴팩션 그라우팅 공법의 적용 시, 요구되는 적정 동시주입 이격거리와 충분한 지반 안정화 시간 확보의 중요성에 대해 제언하였다.

터널 콘크리트 라이닝 배면공동 뒷채움 전후의 GPR 반응 (Comparison of the GPR response of the cavity behind the tunnel lining before and after the backfill grouting)

  • 문윤섭;하희상;고광범
    • 한국지구물리탐사학회:학술대회논문집
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    • 한국지구물리탐사학회 2008년도 공동학술대회
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    • pp.191-194
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    • 2008
  • 터널 시공당시 발생하는 여굴이나 라이닝과 원지반 사이에 발생하는 배면공동은 터널의 안정성에 심각한 문제를 야기할 가능성이 있으므로 모르타르 등으로 반드시 뒷채움 시공을 하여야 한다. 이러한 뒷채움 시공이 필요한 공동의 위치, 규모의 확인 및 뒷채움 시공의 결과를 효과적으로 확인하는 비파괴 방법으로 GPR탐사가 보편적으로 이용되어진다. 본 논문에서는 서울의 ○○ 터널의 천단부에 대하여 뒷채움 시공전 450MHz 주파수 대역의 안테나를 이용하여 연속적인 GPR탐사를 수행하였고, 그 결과 전체 터널구간 중 크고 작은 8개구간의 배면 공동이 존재하고 있음을 확인하였다. 뒷채움 시공 이후에도 동일한 측선에서 GPR탐사를 수행한 결과 시공전에 발견된 배면공동이 모두 효과적으로 메워진 것을 확인할 수 있었으며, 기타 철근이 배근되어진 구간역시 밀착도가 더욱 향상된 것을 확인할 수 있었다.

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설계변수가 수직밀폐형 지중열교환기 설계길이에 미치는 영향 (Effect of the Design Parameters of Geothermal Heat Exchanger Design Length)

  • 민경천;최재호
    • 한국지열·수열에너지학회논문집
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    • 제7권2호
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    • pp.10-15
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    • 2011
  • A ground loop heat exchanger for the ground source heat pump system is the core equipment determining the thermal performance and initial cost of the system The length and performance of the heat exchanger is dependent on the ground thermal conductivity, the operation hours, the ground loop diameter, the grout, the ground loop arrangement, the pipe placement and the design temperature. The result of this simulation shows that higher thermal conductivity of grouting materials leads to the decrease length of geothermal heat exchanger from 100.0 to 84.4%.

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.

지열펌프 구동에 의한 지중 온도 분포 변화 모델링 연구 (Numerical Simulation for the Subsurface Temperature Distribution Disturbed by Heat-Pump Operation)

  • 신지연;배광옥;이강근
    • 한국신재생에너지학회:학술대회논문집
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    • 한국신재생에너지학회 2006년도 추계학술대회
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    • pp.40-43
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    • 2006
  • Public demand for the heat pump system as a next generation energy equipment is increasing for its eco-friendly and cost-effective advantage. Many researches have been concentrated on how to calculate and develop its own efficiency, while the possible effect of the heat pump operation on the whole subsurface temperature distribution is relatively less considered, During the current study, subsurface temperature disturbance caused by seasonal surface temperature cycle in Busan area and general W-tube heat pump operation is simulated in 3-dimensional heterogeneous medium. It shows that subsurface deeper than 10m from the surface remains nearly unchanged throughout the 4 seasons and groundwater convect ion in highly permeable layer near the surface acts like a main path of heat plume from heat pump system, This implies the significance of detail descript ion in shallow sedimentary layer or highly permeable layer which plays an important role on the regional flow advection and heat transfer. Also, the effect of groundwater convection increases when the arrangement of the 2 injection pipes and 2 extract ion well is maintained parallel to groundwater flow. Therefore, more careful and detail investigation is required before installation and operation of heat pump system that it may not cause any possible change of microbial ecosystem in the shallow subsurface environment or 'contamination of temperature' for groundwater use as well as the loss of efficiency of the equipment itself. This can also help to design the optimized grouting system for heat pump.

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FE validation of the equivalent diameter calculation model for grouped headed studs

  • Spremic, Milan;Pavlovic, Marko;Markovic, Zlatko;Veljkovic, Milan;Budjevac, Dragan
    • Steel and Composite Structures
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    • 제26권3호
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    • pp.375-386
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    • 2018
  • Existing design codes for steel-concrete composite structures give only general information about the shear connection provided by headed studs in group arrangement. Grouting of the openings in prefabricated concrete slabs, where the grouped headed studs are placed in the deck pockets is alternative to cast-in-place decks to accomplish fast execution of composite structures. This paper considers the possibility to reduce the distance between the studs within the group, bellow the Eurocode limitations. This may lead to increased competitiveness of the prefabricated construction because more studs are placed in the group if negative effectives of smaller distances between studs are limited. The main purpose of this work is to investigate these limits and propose an analytical calculation model for prediction of the shear resistance of grouped stud arrangements in the deck pockets. An advanced FEA model, validated by results of push-out experiments, is used to analyze the shear behavior of the grouped stud with smaller distance between them than recommended by EN 1994-1. Calculation model for shear resistance, which is consistent with the existing Eurocode rules, is proposed based on a newly introduced equivalent diameter of the stud group, $d_G$. The new calculation model is validated by comparison to the results of FE parametric study. The distance between the studs in the longitudinal direction and the number of stud rows and columns in the group are considered as the main variables.