• 제목/요약/키워드: pile depth

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사질토 지반에 설치된 우산형 마이크로파일의 지진 시 수평거동 특성 (Horizontal Behavior Characteristics of Umbrella-Type Micropile Applied in Sandy Soil Subjected to Seismic Motion)

  • 김수봉;손수원;김진만
    • 한국지반환경공학회 논문집
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    • 제21권7호
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    • pp.5-16
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    • 2020
  • 현재 경주지진 및 포항지진 발생으로 내진설계기준이 강화되어 기존 시설물에 대한 내진성능평가를 실시하고 있다. 기존 시설물의 피해를 최소화하면서 국한된 협소한 장소에서 시공이 가능한 마이크로파일공법을 개선하여 지진 시 내진성능효과를 확보하고자 한다. 개선방법은 주 기둥인 연직말뚝 주변에 우산형태로 경사말뚝을 시공하여 말뚝 상부의 사각접시형 플레이트에서 말뚝을 모두 일체화하는 것이다. 본 논문에서는 수치해석으로 사질토지반에서 다양한 지진파에 대해 우산형 마이크로파일의 수평변위 거동을 분석하였다. 수치해석 결과, 지반이 연약할수록 우산형 마이크로파일의 수평저항력의 효과가 우수하였다. 경사말뚝의 근입심도에 따른 분석결과, 동일한 지반강도에서 근입심도가 15m 이상일 경우에 수평변위 저감 효과가 뚜렷했으며, N치 30 이상의 지반에 정착하면 지진 시에 효과가 있는 것으로 확인되었다. 마이크로파일의 근입심도와 수평변위 억제효과가 비례하였으며, 대체적으로 지반이 약할수록 변위억제 효과가 컸다. 우산형 마이크로파일은 수직말뚝이 모멘트에 대한 저항을 하고, 경사말뚝이 축력에 대한 저항을 하는 복합저항효과가 있었다.

음향 텔레메트리에 의한 변산반도에서의 참돔(Pagrus major)의 이동 범위 및 행동 특성 (Movement range and behavior characteristics of Pagrus major by acoustic telemetry in Byeonsan Peninsular, Korea)

  • 허겸;허민아;강경미;황두진;신현옥
    • 수산해양기술연구
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    • 제57권1호
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    • pp.34-44
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    • 2021
  • In order to collect basic information of response behavior of red seabream (Pagrus major) during pilling, works for constructing wind power station in Byeonsan Peninsular, Korea were investigated. Four cultured red seabream CRB1 to CRB4 [total length (TL): 27.1 ± 1.0 cm; body weight: 359 ± 30 g] were tagged with an acoustic tag and used in experiment. CRB1 and CRB2 to CBR4 were released on the sea surface at same time around the constructing site of the wind power plant on September 22, 2017 and July 18, 2018, respectively. The tracking of the CRB1 to CRB2 and CRB3 to CRB4 were conducted for two hours, approximately, using VR100 receiver including a directional hydrophone and VR2W receivers array consisted of 19 presence/absence receivers (VR2W receivers), respectively. The underwater noise level before (no pile driving works) and during pile driving works was measured 116.0-118.0 dB (re 1��Pa) and a maximum of 160 dB (re 1��Pa), respectively. CRB1 moved about 6.0 km with average swimming speed of 80.2 ± 20.5 cm/s for 2.1 hours without pile driving work. The average water depth of the sea bed on the route of CRB1 was 9.1 ± 0.4 m. CRB2 moved about 7.3 km with the average swimming speed of 96.8 ± 27.1 cm/s for 2.1 hours with pile driving work. The water depth of the sea bed on the route of CRB2 was 11.9 ± 0.6 m. At results of the Rayleigh's z-test two fishes CRB1 and CRB2 showed significant directionality in the movement (p < 0.01). Movement mean angles of CRB1 and CRB2 were 92.7 and 251.8°, respectively. CRB2, CRB3 and CRB4 exhibited the escaping behavioral response from the noise of source during the pile driving work. The swimming speed of the CRB2 exposed on the heavy underwater noise stimuli due to the pile driving work was 1.21 times faster than that of the CRB1 exposed on the ambient underwater noise in the study site.

지반보강용 그라우팅 말뚝의 응력분담비에 대한 수치해석적 연구 (Numerical Study on the Stress-distribution Ratio of Grouting Pile for Reinforced Ground)

  • 이경주;이준규;張維維;송기일
    • 한국지반공학회논문집
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    • 제39권2호
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    • pp.19-30
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    • 2023
  • 연약지반 대책공법으로 적용되는 다짐모래말뚝과 같은 지중구조물은 주로 복합지반 설계법에 의해 침하 및 안정성을 분석한다. 복합지반 설계법의 기본원리는 아칭효과이며 말뚝의 보강효과는 응력분담비로 평가한다. 탄성적 특성을 갖는 그라우팅 말뚝을 지반보강공법으로 적용할 때 기존의 응력분담비 평가는 말뚝이 지표까지 설치되어 상재하중이 말뚝과 원지반에 같이 직접 재하되는 경우만을 고려해 왔다. 본 연구에서는 지반보강 말뚝의 설치를 지표까지 올리지 않고 지중 어느 위치에서 마감할 때에는 지금까지의 연구들에 의해 적용된 응력분담비 적용 방법이 달라져야 한다는 것을 보여주었다. 고강도 Jet grouting이 적용되었을 때 원지반에 대한 그라우팅 말뚝의 응력분담비(n)는 통상 30~50 범위의 값을 적용한다. 그러나 이는 지표까지 말뚝이 놓이는 경우이고 말뚝 상단의 위치가 지표로부터 멀리 깊게 위치될 경우 응력분담 효과가 급격히 저감되며 응력구(stress bulb) 경계가 되는 깊이부터는 정량적 값 1.5에 수렴했다.

Gravel Pile의 현장적용을 위한 시험시공 사례연구 (A Case Study on the Application of Gravel Pile in Soft Ground)

  • 천병식;고용일;여유현;김백영;최현석
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 연약지반처리위원회 학술세미나
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    • pp.32-41
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    • 2000
  • Sand drain as a vertical drainage is widely used in soft ground improvement Recently, sand, the principal source of sand drain, is running out. The laboratory model tests were carried out to utilize gravel as a substitute for sand. Though which the characteristics of gravel are compared to those of sand for engineering purpose. Two cylindrical containers for the model test were filled with marine clayey soil from the west coast of Korea with a column in the center, one with sand, the other with gravel. Vibrating wire type piezometers were installed at the distance of 1.0D, 1.5D and 2.0D from the center of the column. The characteristics of consolidation were studied with data obtained from the measuring instrument place on the surface of the container. The parameter study was performed on the marine clayey soil before and after the test in order to verify the effectiveness of the improvement. The clogging effect was checked at various depth in gravel column after the test. In-situ tests area was divided into two areas by material used. One is Sand Drain(SD) and Sand Compaction Pile(SCP) area, the other is Gravel Drain(GD) and Gravel Compaction Pile(GCP) area. Both areas were monitored to obtain the information on settlement, pore water pressure and bearing capacity by measuring instruments for stage loading caused by embankment. The results of measurements were analyzed. According to the test results, the settlement was found to be smaller in gravel drain than in sand drain. The increase in bearing capacity by gravel pile explains the result. The clogging effect was not found in gravel column. It is assumed that gravel is relatively acceptable as a drainage material. Gravel is considered to be a better material than sand for bearing capacity, and it is found that bearing capacity is larger when gravel is used as a gravel compaction pile than as a gravel drain.

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사질토지반에서 폐색효과를 고려한 개단말뚝의 지지력 산정 (I) - 새로운 지지력 산정식의 개발- (Estimation of Bearing Capacity for Open-ended Pile in Sands Considering Soil Plugging (I) -Development of New Design Equation-)

  • 백규호
    • 한국지반공학회논문집
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    • 제18권4호
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    • pp.189-197
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    • 2002
  • 개단말뚝의 지지력은 말뚝의 폐색정도에 영향을 받으며, 이러한 폐색정도는 관내토증분비인 IFR에 의하여 정량화 될 수 있다. 그러나 말뚝의 폐색정도가 말뚝의 지지력에 미치는 영향을 정확하게 고려하는 개단말뚝의 지지력 산정기준이 현재까지 없는 실정이다. 따라서 말뚝의 폐색정도가 지지력에 미치는 영향을 조사하기 위하여 계측기가 부착된 모형 개단말뚝과 가압토조를 이용해서 모형말뚝시험을 수행하였다. 시험결과 개단말뚝의 IFR은 말뚝의 관입깊이에 대한 관내토길이의 비로 정의되는 관내토길이비(PLR)로부터 예측이 가능함을 알 수 있었다. 그리고 개단말뚝의 선단 지지력과 주면마찰력은 말뚝의 IFR이 증가함에 따라 감소하는 경향을 보였다. 또한 이와 같은 모형말뚝시험의 결과에 근거하여 개단말뚝의 선단지지력과 주면마찰력을 산정할 수 있는 새로운 지지력산정식이 제안되었다.

Numerical response of pile foundations in granular soils subjected to lateral load

  • Adeel, Muhammad B.;Aaqib, Muhammad;Pervaiz, Usman;Rehman, Jawad Ur;Park, Duhee
    • Geomechanics and Engineering
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    • 제28권1호
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    • pp.11-23
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    • 2022
  • The response of pile foundations under lateral loads are usually analyzed using beam-on-nonlinear-Winkler-foundation (BNWF) model framework employing various forms of empirically derived p-y curves and p-multipliers. In practice, the p-y curve presented by the American Petroleum Institute (API) is most often utilized for piles in granular soils, although its shortcomings are recognized. The objective of this study is to evaluate the performance of the BNWF model and to quantify the error in the estimated pile response compared to a rigorous numerical model. BNWF analyses are performed using three sets of p-y curves to evaluate reliability of the procedure. The BNWF model outputs are compared with results of 3D nonlinear finite element (FE) analysis, which are validated via field load test measurements. The BNWF model using API p-y curve produces higher load-displacement curve and peak bending moment compared with the results of the FE model, because empirical p-y curve overestimates the stiffness and underestimates ultimate resistance up to a depth equivalent to four times the pile diameter. The BNWF model overestimates the peak bending moment by approximately 20-30% using both the API and Reese curves. The p-multipliers are revealed to be sensitive on the p-y curve used as input. These results highlight a need to develop updated p-y curves and p-multipliers for improved prediction of the pile response under lateral loading.

Impact of soft and stiff soil interlayers on the pile group dynamic response under lateral harmonic load

  • Masoud Oulapour;Sam Esfandiari;Mohammad M. Olapour
    • Geomechanics and Engineering
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    • 재33권6호
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    • pp.583-596
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    • 2023
  • The interlayers, either softer or stiffer than the surrounding layers, are usually overlooked during field investigation due to the small thickness. They may be neglected through the analysis process for simplicity. However, they may significantly affect the dynamic behavior of the soil-foundation system. In this study, a series of 3D finite-element Direct-solution steady-state harmonic analyses were carried out using ABAQUS/CAE software to investigate the impacts of interlayers on the dynamic response of a cast in place pile group subjected to horizontal harmonic load. The experimental data of a 3×2 pile group testing was used to verify the numerical modeling. The effects of thickness, depth, and shear modulus of the interlayers on the dynamic response of the pile group are investigated. The simulations were conducted on both stiff and soft soils. It was found that the soft interlayers affect the frequency-amplitude curve of the system only in frequencies higher than 70% of the resonant frequency of the base soil. While, the effect of stiff interlayer in soft base soil started at frequency of 35% of the resonant frequency of the base soil. Also, it was observed that a shallow stiff interlayer increased the resonant amplitude by 11%, while a deep one only increased the resonant frequency by 7%. Moreover, a shallow soft interlayer increased the resonant frequency by 20% in soft base soils, whereas, it had an effect as low as 6% on resonant amplitude. Also, the results showed that deep soft interlayers increased the resonant amplitude by 17 to 20% in both soft and stiff base soils due to a reduction in lateral support of the piles. In the cases of deep thick, soft interlayers, the resonant frequency reduced significantly, i.e., 16 to 20%. It was found that the stiff interlayers were most effective on the amplitude and frequency of the pile group.

Field investigation and numerical study of ground movement due to pipe pile wall installation in reclaimed land

  • Hu Lu;Rui-Wang Yu;Chao Shi;Wei-Wei Pei
    • Geomechanics and Engineering
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    • 제34권4호
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    • pp.397-408
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    • 2023
  • Pipe pile walls are commonly used as retaining structures for excavation projects, particularly in densely populated coastal cities such as Hong Kong. Pipe pile walls are preferred in reclaimed land due to their cost-effectiveness and convenience for installation. However, the pre-bored piling techniques used to install pipe piles can cause significant ground disturbance, posing risks to nearby sensitive structures. This study reports a well-documented case history in a reclamation site, and it was found that pipe piling could induce ground settlement of up to 100 mm. Statutory design submissions in Hong Kong typically specify a ground settlement alarm level of 10 mm, which is significantly lower than the actual settlement observed in this study. In addition, lateral soil movement of approximately 70 mm was detected in the marine deposit. The lateral soil displacement in the marine deposit was found to be up to 3.4 and 3.1 times that of sand fill and CDG, respectively, mainly due to the relatively low stiffness of the marine deposit. Based on the monitoring data and site-investigation data, a 3D numerical analysis was established to back-analyze soil movements due to the installation of the pipe pile wall. The comparison between measured and computed results indicates that the equivalent ground loss ratio is 20%, 40%, and 20% for the fill, marine deposit and CDG, respectively. The maximum ground settlement increases with an increase in the ground loss ratio of the marine deposit, whereas the associated influence radius remains stationary at 1.2 times the pipe pile wall depth (H). The maximum ground settlement increases rapidly when the thickness of marine deposit is less than 0.32H, particularly for the ground loss ratio of larger than 40%. This study provides new insights into the pipe piling construction in reclamation sites.

JSP 공법의 시공 사례 (An Example of JSP Method)

  • 구본충
    • 기술사
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    • 제37권3호
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    • pp.50-53
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    • 2004
  • JSP(Jumbo Super Pile) method is a foundation treatment of mixing in depth, one of the soft ground improvement methods through which settlement and deformation of ground foundation is prevented. An example of this method which is applied for the foundation design of a new drainage pumping station is Introduced, and another applied example for an existing pumping station which is built on soft foundation is also introduced.

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대규모 절개사면에 설치된 억지말뚝의 거동 (The Behavior of Stabilizing Piles installed in a Large-Scale Cut Slope)

  • 송영석;홍원표
    • 지질공학
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    • 제19권2호
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    • pp.191-203
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    • 2009
  • 본 연구에서는 대규모 절개사면에서 억지말뚝의 효과를 확인하고, 사면과 억지말뚝의 거동을 조사하였다. 먼저, 사면의 절토공사시 경사계를 이용하여 사면지반의 거동을 조사하였다. 계측결과 사면지반의 수평변위는 점차적으로 증가하고, 사면활동면의 발생위치에서 급격히 감소하는 것으로 나타났다. 이를 통하여 사면활동깊이의 예측이 가능하였다. 사면활동면의 예측을 통하여 억지말뚝의 설계와 시공이 수행되었다. 그리고 억지말뚝으로 보강된 절개사면에 대하여 각종 계측시스템을 적용하여 억지말뚝의 거동을 조사하였다. 계측결과 억지말뚝의 수평변위는 켄틸레버보의 변형형상과 유사하게 발생되었으며, 말뚝두부의 철근콘크리트보의 설치로 인하여 두부의 수평변위 억제효과를 확인할 수 있다. 억지말뚝의 최대휨응력이 발생되는 깊이는 대상지반의 상부토사층이 존재하는 깊이와 유사한 것으로 나타났다. 또한, 쏘일네일링 시공을 위한 억지말뚝 전면부 사면굴착시 억지말뚝의 수평변위가 증가함을 알 수 있다. 본 연구를 통하여 대규모 절개사면에 대하여 억지말뚝의 적용성 및 효과를 확인할 수 있다.