• 제목/요약/키워드: Pile monitoring

검색결과 80건 처리시간 0.021초

타입 말뚝의 지지력 증가효과 특성 (The Characteristics of the Set-up Effect of Driven Piles)

  • 조천환
    • 한국지반공학회논문집
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    • 제19권4호
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    • pp.235-246
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    • 2003
  • 국내의 경우 이 등(1994)의 연구를 시작으로 국지 현장별로 타입말뚝의 지지력 증가효과에 대한 사례연구들이 있었다. 그러나 충분한 시험자료를 바탕으로 한 지지력 증가효과에 대한 전반적인 검토는 아직 미흡한 실정이고, 또한 지지력 증가효과에 지반조건 및 말뚝의 형상이 미치는 영향에 대해서는 아직 보고 된 바 없다. 타입말뚝의 지지력 증가효과를 실무적으로 이용하기 위해서는 현장에서 실구조물에 적용된 말뚝에 대한 시험자료의 분석을 실시하는 것이 필요하다. 본 연구에서는 말뚝기초의 설계 및 향후 사질토에서의 지지력 증가효과 등의 연구를 위한 기본 자료로 활용하기 위해 실구조물에 적용되는 다양한 시험말뚝의 시공과 동재하시험 자료 분석을 통해 지지력 증가효과에 대한 현상을 알아보았다. 말뚝의 동재하시험의 분석 결과, 말뚝지지력의 증가는 토질별로도 영향을 받지만 조성이력에도 영향을 받는 것으로 분석되었으며, 특히 사질토에도 상당한 지지력 증가효과가 나타났다. 이러한 말뚝의 지지력의 증가는 주로 주면부에서 발생하였으며, 선단형상에 따른 지지력 증가효과는 점성토에서는 폐단말뚝이 크고, 사질토에서는 개단말뚝이 큰 것으로 나타났다.

광섬유 센서와 지중경사계를 이용한 사면의 거동 분석 (Analysis of Slope Behavior Using FBG Sensor and Inclinometer)

  • 장기태;한희수;유병선
    • 한국지반공학회논문집
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    • 제19권6호
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    • pp.397-406
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    • 2003
  • 사면 내에 설치된 억지말뚝의 보강효과를 평가하고, 사면의 가상 파괴면을 예측하기 위하여 지속적인 계측관리를 통한 사면의 거동을 감지할 필요가 있다. 본 연구는 계측기를 통한 계측자료가 사면과 억지말뚝의 안정성 및 보강효과를 평가할 수 있는 자료로 활용될 수 있도록 하기 위한 것으로, 현장에 설치된 억지말뚝에 광섬유 센서(FBG 센서), V/W 및 경사계를 설치하여, 사면 내 억지말뚝의 거동분석을 하였다. 또한 각 계측기의 데이터를 비교 분석함으로써, 광섬유 센서와 같은 스마트 계측기술을 실제 토목 구조물에 활용할 수 있는 방안을 현장시험을 통해 검증하고자 한다. 이를 위해 각 계측기에서 구하여진, 연구 대상사면의 거동과 억지말뚝의 보강효과 및 변형률 분포의 상관관계를 비교 분석하였다. 그 결과, FBG 센서와 V/W 센서 및 경사계의 계측결과가 잘 일치하며, 억지말뚝에 의한 사면의 보강효과가 충분함을 알 수 있었다.

현장 계측 사례를 통한 단독 말뚝의 주면마찰계수($\alpha$, $\beta$ 계수) 역산정 (Back-calculation of Skin Friction Coefficient ($\alpha$, $\beta$) on a Single Pile by Long-Tenn Field Monitoring)

  • 고준영;김영호;최용규;정상섬
    • 한국지반공학회논문집
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    • 제26권11호
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    • pp.99-110
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    • 2010
  • 연구에서는 부주면마찰력이 발생하는 3개 지역 총 16본 말뚝의 현장 계측 자료들을 바탕으로 국내 지반 특성에 맞는 주면마찰계수($\alpha$, $\beta$ 계수)의 분포범위를 압밀도(U)와 역청재(S.L) 도포 유무에 따라 역산정하였다. 역청재 도포 말뚝의 부주면마찰력 저감효과는 50~90% 정도인 것으로 나타났으며, 기존 설계에 사용되던 제안 값과의 비교를 통해, 본 연구에서 산정된 $\alpha$$\beta$계수가 적정 범위에 있으며, 그 결과 국내지반조건을 반영한 말뚝의 장, 단기 주면마찰력을 예측할 수 있는 기본자료를 제시하였다.

Influence characteristics of isolation piles on deformation of existing shallow foundation buildings under deep excavation

  • Liu, Xinrong;Liu, Peng;Zhou, Xiaohan;Wang, Linfeng;Zhong, Zuliang;Lou, Xihui;Chen, Tao;Zhang, Jilu
    • Geomechanics and Engineering
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    • 제31권1호
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    • pp.1-14
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    • 2022
  • Urban deep excavation will affect greatly on the deformation of adjacent existing buildings, especially those with shallow foundations. Isolation piles has been widely used in engineering to control the deformation of buildings adjacent to the excavation, but its applicability is still controversial. Based on a typical engineering, numerical calculation models were established and verified through monitoring data to study the influence characteristics of isolation piles on the deformation of existing shallow foundation buildings. Results reveal that adjacent buildings will increase building settlement δv and the deformation of diaphragm walls δh, while the isolation piles can effectively decrease these. The surface settlement curve is changed from "groove" type to "double groove" type. Sufficiently long isolation pile can effectively decrease δv, while short isolation piles will lead to a negative effect. When the building is within the range of the maximum settlement location P, maximum building rotation θm will increase with the pile length L and the relative position between isolation pile and building d/D increase (d is the distance between piles and diaphragm walls, D is the distance between buildings and diaphragm walls), instead, θm will decrease for buildings outside the location P, and the optimum was obtained when d/D=0.7.

연약점성토지반의 얕은 굴착시 줄말뚝을 이용한 흙막이공 (Earth Retaining Structure Using a Row of piles during Shallow Excavation in Soft Clay)

  • 홍원표;윤종민;송영식
    • 한국지반공학회논문집
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    • 제16권1호
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    • pp.191-201
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    • 2000
  • 본 연구에서는 굴착부지가 넓고 지하수위가 높은 점성토지반에 얕은 굴착시 종래에 널리 적용되었던 강널말뚝 흙막이공 대신 줄말뚝을 이용한 흙막이공을 제안하였다. 줄말뚝을 이용한 흙막이 구조물의 거동을 관찰하기 위하여 지하굴착기간 동안 경사계 및 지하수위계를 설치하여 말뚝과 지반의 수평변위와 지하수위 변화를 조사하였다. 현장계측결과 말뚝과 지반의 변형거동은 굴착면 기울기, 말뚝두부구속조건, 말뚝설치간격, 굴착지반의 안정수 등의 요소에 영향을 받는 것으로 나타났다. 그리고 줄말뚝을 이용한 흙막이공의 시공성과 안정성뿐만 아니라 근접시공의 문제점이 없는 연약지반에서는 강널말뚝 흙막이공보다 경제적인 공법임을 확인하였다.

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Structural damage detection through longitudinal wave propagation using spectral finite element method

  • Kumar, K. Varun;Saravanan, T. Jothi;Sreekala, R.;Gopalakrishnan, N.;Mini, K.M.
    • Geomechanics and Engineering
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    • 제12권1호
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    • pp.161-183
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    • 2017
  • This paper investigates the damage identification of the concrete pile element through axial wave propagation technique using computational and experimental studies. Now-a-days, concrete pile foundations are often common in all engineering structures and their safety is significant for preventing the failure. Damage detection and estimation in a sub-structure is challenging as the visual picture of the sub-structure and its condition is not well known and the state of the structure or foundation can be inferred only through its static and dynamic response. The concept of wave propagation involves dynamic impedance and whenever a wave encounters a changing impedance (due to loss of stiffness), a reflecting wave is generated with the total strain energy forked as reflected as well as refracted portions. Among many frequency domain methods, the Spectral Finite Element method (SFEM) has been found suitable for analysis of wave propagation in real engineering structures as the formulation is based on dynamic equilibrium under harmonic steady state excitation. The feasibility of the axial wave propagation technique is studied through numerical simulations using Elementary rod theory and higher order Love rod theory under SFEM and ABAQUS dynamic explicit analysis with experimental validation exercise. Towards simulating the damage scenario in a pile element, dis-continuity (impedance mismatch) is induced by varying its cross-sectional area along its length. Both experimental and computational investigations are performed under pulse-echo and pitch-catch configuration methods. Analytical and experimental results are in good agreement.

Study on collapse mechanism and treatment measures of portal slope of a high-speed railway tunnel

  • Guoping Hu;Yingzhi Xia;Lianggen Zhong;Xiaoxue Ruan;Hui Li
    • Geomechanics and Engineering
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    • 제32권1호
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    • pp.111-123
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    • 2023
  • The slope of an open cut tunnel is located above the exit of the Leijia tunnel on the Changgan high-speed railway. During the excavation of the open cut tunnel foundation pit, the slope slipped twice, a large landslide of 92500 m3 formed. The landslide body and unstable slope body not only caused the foundation pit of the open cut tunnel to be buried and the anchor piles to be damaged but also directly threatened the operational safety of the later high-speed railway. Therefore, to study the stability change in the slope of the open cut tunnel under heavy rain and excavation conditions, a 3D numerical calculation model of the slope is carried out by Midas GTS software, the deformation mechanism is analyzed, anti-sliding measures are proposed, and the effectiveness of the anti-sliding measures is analyzed according to the field monitoring results. The results show that when rainfall occurs, rainwater collects in the open cut tunnel area, resulting in a transient saturation zone on the slope on the right side of the open cut tunnel, which reduces the shear strength of the slope soil; the excavation at the slope toe reduces the anti-sliding capacity of the slope toe. Under the combined action of excavation and rainfall, when the soil above the top of the anchor pile is excavated, two potential sliding surfaces are bounded by the top of the excavation area, and the shear outlet is located at the top of the anchor pile. After the excavation of the open cut tunnel, the potential sliding surface is mainly concentrated at the lower part of the downhill area, and the shear outlet moves down to the bottom of the open cut tunnel. Based on the deformation characteristics and the failure mechanism of the landslides, comprehensive control measures, including interim emergency mitigation measures and long-term mitigation measures, are proposed. The field monitoring results further verify the accuracy of the anti-sliding mechanism analysis and the effectiveness of anti-sliding measures.

A practical modification to coaxial cables as damage sensor with TDR in obscured structural members and RC piles

  • Mehmet Ozgur;Sami Arsoy
    • Structural Monitoring and Maintenance
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    • 제10권2호
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    • pp.133-154
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    • 2023
  • Obscured structural members are mostly under-evaluated during condition assessment due to lack of visual inspection capability. Insufficient information about the integrity of these structural members poses a significant risk for public safety. Time domain reflectometry (TDR) is a novel approach in structural health monitoring (SHM). Ordinary coaxial cables "as is" without a major modification are not suitable for SHM with TDR. The objective of this study is to propose a practical and cost-effective modification approach to commercially available coaxial cables in order to use them as a "cable sensor" for damage detection with the TDR equipment for obscured structural members. The experimental validation and assessment of the proposed modification approach was achieved by conducting 3-point bending tests of the model piles as a representative obscured structural member. It can be noted that the RG59/U-6 and RG6/U-4 cable sensors expose higher strain sensitivity in comparison with non-modified "as is" versions of the cables used. As a result, the cable sensors have the capability of sensing both the presence and the location of a structural damage with a maximum aberration of 3 cm. Furthermore, the crack development can be monitored by the RG59/U-6 cable sensor with a simple calibration.

DCM(심층혼합처리공법)에 의한 자립식 흙막이 적용사례 (Application for Self-Supported Retaining Wall Using Deep Cement Mixing)

  • 정경환;김용완;신민식;한경태;김태효
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 춘계 학술발표회 논문집
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    • pp.257-267
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    • 2006
  • The earth retaining wall systems for excavation works in a populated urban area or a poor soil deposit can be limited due to various restriction. Thus there are various methods to be applied for them such as the soldier pile method, the diaphragm wall with counterfort and so on. In this study, the self-supported earth retaining wall using the DCM(Deep Cement Mixing) method, including its merits, demerits and some important characteristics occured in the design and the construction stage, was introduced. It might be reference for the other design and construction procedures using the DCM method.

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The effect of cathodic protection system by means of zinc sacrificial anode on pier in Korea

  • Jeong, Jin-A;Jin, Chung-Kuk
    • Journal of Advanced Marine Engineering and Technology
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    • 제38권10호
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    • pp.1206-1211
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    • 2014
  • This study has been conducted to confirm the effect of sacrificial anode cathodic protection system for 90 days to protect corrosion on pier that is located in Korea. The cathodically protected structure was a slab and a pile cap. Before the construction of cathodic protection system, the macrography was carried out. As a result of the macrography, many corrosion traces were confirmed in this structure. The trace was mainly focused on joint and zones that concrete cover was eliminated. To apply the cathodic protection system, many onsite techniques have been adopted. In addition, to confirm the inner state of steel in concrete properly, a corrosion monitoring sensor (DMS-100, Conclinic Co. Ltd) has been applied. Test factors were corrosion & cathodic protection potential, 4 hour depolarization potential, resistivity and current density. After 90 days from the installation of cathodic protection system, it could confirm that proper corrosion protection effect was obtained by considering the result of tests.