• 제목/요약/키워드: Lateral compaction

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대심도 연약지반상에 건설되는 케이슨의 측방변형 사례 연구 (Case Study for Lateral Displacement of Caisson installed on Deep Soft Soils)

  • 김명학;윤민승;이상욱;이채건;한병원
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2010년도 추계 학술발표회
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    • pp.940-950
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    • 2010
  • In case of uneven surcharge like backfill or embankment after constructing caisson applied on the deep soft marine deposits, lateral deformation of soft soils would happen due to plastic deformation of soil particles by increase of excess pore water pressure. Lateral deformation of soil will result in the caisson displacement which affects soft soil-caisson structure safety. Soft soil was improved by soil compaction pile method, and then gravity caisson was installed. Soil deformations were monitored and analyzed with step by step backfill and embankment behind the caisson. Amount and speed of lateral deformation after the installation of caissons were closely related with the time of backfill and embankment. The relationship between maximum lateral displacement($\Delta_y$) in front of caisson and settlement($\Delta_s$) can be expressed as $\Delta_y=(0.0871)\Delta_s+122.95$. Soft soil depth did not affect the lateral displacement of caisson in this study, which can be explained the soft soil improvement under the caisson by S.C.P. method. Substantially the amount and speed of the lateral deformation of caisson were closely related with the uneven surcharging rate behind caisson.

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Gutta percha 충전시 도말층 유무에 따른 근관벽과의 접합도에 관한 주사전자현미경적 연구 (A SCANNING ELECTRON MICROSCOPIC STUDY ON THE ADAPTATION OF ROOT CANAL FILLING MATERIAL TO ROOT CANAL WALL WITH AND WITHOUT SMEAR LAYER)

  • 문주훈;조영곤
    • Restorative Dentistry and Endodontics
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    • 제17권2호
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    • pp.365-382
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    • 1992
  • The purpose of this study was to evaluate the adaptation of filling material to the dentinal walls of root canals with and without smear layer. Fifty extracted upper and lower anterior teeth were selected, and the root canals were instrumented with K - files 1mm short of the apical foramen by step - back method. The teeth were randomly divided into two groups of 25 each : in the group I, smear layers were not removed, and in the group II, smear layers were removed by 15% EDTA solution. Again the two groups 25 teeth were randomly divided into unfilled contol group and filling groups(lateral, ultrasonic, ULTRAFIL, McSpadden compaction group). Upon completion of root canal filling, the teeth were grooved on the both the labial and lingual surfaces and then split with mallet and chisel. Each specimens were examined with JSM - 840 Scanning Electron Microscope (JEOL., Japan). The results were as follows : 1. In the contol group, dentinal tubules of group I couldn't be distinguished in the canal wall, but those of group II appeared to be open and patent. 2. In the filling groups of group I, the tubular penetration of the sealer or gutta percha couldn't be seen, but in the filling groups of group II, it could be seen except McSpadden compaction group. 3. In the filling groups, ULTRAFIL group showed the best adaptation of filling material to root canal wall among the group I, and lateral and ultrasonic condensation group showed the best adaptation of filling material among the group II. McSpadden compaction group showed the worst adaptation in group I, II. 4. Generally, the group II showed better adapation of filling material to root canal wall than the group I.

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보강토의 시공중 토압변화 (Earth Pressure of a Reinforced Retaining Wall During Construction)

  • 노한성;최영철
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2001년도 토목섬유기술위원회 학술세미나 논문집
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    • pp.13-19
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    • 2001
  • The use of reinforced soil have been increased due to it's cost effectiveness, flexibility and so on. In this study, a full-scale reinforced soil with rigid facing were constructed to investigate the soil pressure variation of reinforcing system. The results of soil pressure during backfill construction are described. The influence of facing stiffness on soil pressure is addressed. The results show that lateral earth pressures on the wall are active state during backfill. It is obtained that the lateral soil pressure highly depends on the installation condition of pressure cell and construction condition. Long-term measurement will be followed to verify the design assumptions with respect to the distribution of lateral stress on the facing.

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동하중에 의한 강성벽체에 작용하는 토압 (Earth Pressure Acting on Rigid Retaining Wall due to the Dynamic Load)

  • 박종덕;전용백
    • 한국지반공학회논문집
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    • 제16권5호
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    • pp.157-168
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    • 2000
  • 토류구조물의 안정문제로는 장단기적으로 정적인 경우와 동적인 경우, 그리고 지반의 동적 거동특성, 흙의 강도저하 등을 미리 파악하여 기술적인 대처를 할 필요가 있을 것이다. 본 연구에서는 실내 모형 실험을 통하여 구조물의 배면에 토성이 다른 일반모래, 표준모래, 점성토를 뒷채움하여 다짐없이 강사만 하고, 룰러다짐, 진동다짐을 하여 토피의 수평 진동거리를 길게, 짧게 그리고 중간으로 하여 강성벽체에 작요?는 수평토압에 대한 정적, 동적 특성을 규명하는 것이다. 모형 실험장치로는 실험대, 토조, 토압측정장치, 진동하중 발생장치, 진동측정장치, 강사기, 롤러 등을 설치하여 거리에 따른 병진운동으로 가속도와 수평토압, 수평토압계수, 전체토압, 토압의 작용점, 지진토압증분 증을 구하여, 실험결과와 기존 이론결과, 그리고 유한요소 해석결과와 비교 고찰하였다.

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플러거 삽입깊이가 근관실러의 치근단 정출에 미치는 영향 (Influence of plugger penetration depth on the apical extrusion of root canal sealer in Continuous Wave of Condensation Technique)

  • 소호영;이영미;김광근;김기옥;김영경;김성교
    • Restorative Dentistry and Endodontics
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    • 제29권5호
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    • pp.439-445
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    • 2004
  • Continuous Wave 가압법으로 근관충전시 플러거 삽입 깊이에 따른 근관실러의 치근단 정출을 평가하고자 직선형의 단근관 및 15번 크기의 치근단공을 가지는 발거된 40개의 치아에서 0.06 경사도 40번 크기가 되게 니켈-티타늄 전동화일인 $ProFile^{\circledR}$로 근관을 형성하고 플러거 삽입깊이를 근단 3, 5 또는 7 mm로 하여 System $B^{TM}$를 이용한 Continuous Wave 가압법 및 측방가압법으로 근관을 충전하였다. 치근단으로 정출된 근관실러의 무게를 측정하여 일원변량분석법과 Duncan's Multiple Range Test로 통계분석하였다. 플러거 삽입깊이 3 mm 또는 5 mm의 Continuous Wave 가압 충전군은 삽입깊이 7 mm 가압충전 군 및 측방가압 충전군에 비해 유의하게 많은 근관실러의 치근단 정출을 나타내었다 (p < 0.05). 그러나 플러거 삽입깊이 3 mm군과 5 mm군 사이 및 플러거 삽입깊이 7 mm Continuous Wave 가압군과 측방가압 군 사이에는 유의한 차이가 나타나지 않았다 (p > 0.05). 본 연구의 결과로 보아 Continuous Wave 가압법으로 근관충전시에는 플러거 삽입깊이가 깊을수록 근관실러의 치근단 정출이 많음을 알 수 있다.

모래다짐말뚝과 널말뚝으로 처리된 연약점토지반의 거동 (Behavior of Soft Ground Treated with Sand Compaction Piles and Sheet Piles)

  • 유남재;정길수;박병수;김경수
    • 산업기술연구
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    • 제26권B호
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    • pp.93-99
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    • 2006
  • Centrifuge model experiments were performed to investigate the confining effects of the sheet piles, installed to the sides of soft clay ground treated with sand compaction piles, on the bearing capacity and concentration ratio of composite ground. For the given g-level in the centrifuge model tests, replacement ratio of SCP and the width of surcharge loads on the surface of ground with SCP, the confining effects of installing the sheet piles on the edges of SCP ground on the bearing capacity, change of stress concentration ratio and failure mechanism were investigated. Kaolin, one of typical clay mineral, and Jumunjin standard sand were used as a soft clay ground and sand compaction pile irrespectively. As results of experiments, lateral confining effect by inserting the model sheet piles fixed to the loading plate was observed. For the strip surcharge loading condition, the yielding stress intensity in the form of the strip surcharge loads tends to increase with increasing the embedded depth of sheet piles. The stress concentration ratio was found not to be influenced consistently with the embedded depth of sheet piles whereas the effect of stress intensity on stress concentration ratio shows the general trend that values of stress concentration ratio are relatively high at the initial stage of loading and tend to decrease and converge to the certain values. For the failure mechanism in the case of reinforced with sheet piles, displacement behavior related to the punching failure, settlement right beneath the loading plate occurred since the soil was confined with sheet piles, was observed.

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모래지반에서 재하방법이 반복수평하중을 받는 말뚝의 거동에 미치는 영향 (Effects of Loading Method on the Behavior of Laterally Cyclic Loaded Piles in Sand)

  • 백규호;김영준;이승연
    • 한국지반공학회논문집
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    • 제27권3호
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    • pp.63-73
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    • 2011
  • 반복수평하중을 받는 말뚝의 거동은 반복하중의 크기와 재하횟수 뿐만 아니라 반복하중의 재하방법(한방향 또는 양방향 재하)에도 영향을 받는다. 본 연구에서는 반복수평하중의 재하방법이 모래지반에 타입된 항타말뚝의 거동에 미치는 영향을 조사하기 위해서 가압토조를 이용한 모형말뚝재하시험을 수행하였다. 실험결과에 따르면 반복수평하중을 한방향으로 받는 말뚝의 누적 영구수평변위는 최초 재하방향과 같은 방향으로 발생하지만, 반복하중을 양방향으로 받는 말뚝의 영구수평변위는 최초 재하방향과 반대 방향으로 발생하였다. 그리고 이와 같은 반복하중의 재하방법에 따른 말뚝 영구수평변위의 변화로 인해 한방향 반복재하는 말뚝의 반복극한수평지지력을 감소시키고 양방향 반복 재하는 말뚝의 반복극한수평지지력을 증가시켰으며, 수평하중의 반복재하횟수가 많아질수록 하중의 재하방법에 따른 말뚝의 반복극한수평지지력 차이는 더욱 확대되었다. 또한 반복수평하중의 재하방법에 따른 말뚝 주변지반의 다짐도 차이로 인해 수평하중이 반복재하되는 동안 말뚝에 발생하는 최대 휨모멘트는 반복하중이 양방향보다 한방향으로 재하되는 경우에 더 크게 나타났다. 그러나 극한상태에서 말뚝에 발생한 최대 휨모멘트는 반복하중이 한방향보다 양방향으로 재하된 경우에 그리고 반복재하를 받은 경우보다 그렇지 않은 경우에 더 큰 것으로 조사되었다.

Consideration of locked-in stresses during backfill preparation

  • Gezgin, Ahmet Talha;Cinicioglu, Ozer
    • Geomechanics and Engineering
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    • 제18권3호
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    • pp.247-258
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    • 2019
  • Soil strength and failure surface geometry directly influence magnitudes of passive earth thrust acting on geotechnical retaining structures. Accordingly, it is expected that as long as the shape of the failure surface geometry and strength parameters of the backfill are known, magnitudes of computed passive earth thrusts should be highly accurate. Building on this premise, this study adopts conventional method of slices for calculating passive earth thrust and combines it with equations for estimating failure surface geometries based on in-situ stress state and density. Accuracy of the proposed method is checked using the results obtained from small-scale physical retaining wall model tests. In these model tests, backfill was prepared using either air pluviation or compaction and different backfill relative densities were used in each test. When the calculated passive earth thrust magnitudes were compared with the measured values, it was noticed that the results were highly compatible for the tests with pluviated backfills. On the other hand, calculated thrust magnitudes significantly underestimated the measured thrust magnitudes for those tests with compacted backfills. Based on this observation, a new approach for the calculation of passive earth pressures is developed. The proposed approach calculates the magnitude and considers the influence of locked-in stresses that are the by-products of the backfill preparation method in the computation of lateral earth forces. Finally, recommendations are given for any geotechnical application involving the compaction of granular bodies that are equally applicable to physical modelling studies and field construction problems.

크로스홀 탄성파 시험을 이용한 쇄석다짐말뚝의 시공직경 검측 (Logging for Diametric Variation of Granular Compaction Pile Using Crosshole Seismic Tests)

  • 박철수;정재우;김학성;김은정;목영진
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.1415-1426
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    • 2008
  • Stone columns, locally called "GCP (granular compaction pile)" can be used to improve strength and resistance against lateral movement of a foundation soil like rigid piles and piers. Also installation of such a discrete column facilitates drainage, and densifies and reinforces the soil in the sense of ground improvement. The integrity of the GCP has been indirectly controlled with the records of each batch including depth and the quantity of stone filled. An integrity testing was attempted using crosshole S-wave logging. The method is conceptionally same as the crosshole sonic logging (CSL) for drilled piers. The only and critical difference is that S-wave should be used in the logging, because P-wave velocity of the stone column is less than that of ground water. The crosshole sonic logger does not have the capability to measure S-wave propagating through the skeleton of crushed stone. An electro-mechanical source, which can generate either P- or SH-waves, and a 1-D geophone were used to measure SH-waves. Two 76mm diameter cased boreholes were installed 1 meter apart across the nominal 700mm diameter stone column. At every 10cm of depth, shear wave was measured across the stone column. One more borehole was also installed 1 meter outward from the one of the above boreholes to measure the shear wave profile of the surrounding soil. The diametric variation of the stone column with respect to depth was evaluated from the shear wave arrival times across the stone column, and shear wave velocities of crushed stone and surrounding soil. The volume calculated with these variational diameters is very close to the actual quantity of the stone filled.

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등입도 투수성 콘크리트 보강 조립토 다짐말뚝의 거동특성 및 침하량 평가기법 (An Estimation Method of Settlement and the Behaviour Characteristics of Granular Compaction Pile Reinforced with Uniformly Graded Permeable Concrete)

  • 김정호;김승욱;김홍택;황정순
    • 한국지반공학회논문집
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    • 제22권7호
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    • pp.73-83
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    • 2006
  • 조립토 다짐말뚝의 거동특성은 주로 말뚝의 횡방향 팽창을 억제하는 연약한 원지반의 횡방향 구속응력에 의해 지배된다. 따라서 조립토 다짐말뚝의 지반 보강 능력은 원지반의 비배수 전단강도가 $15{\sim}50kPa$ 정도인 경우에 가장 효과적인 것으로 알려지고 있으며, 보다 연약한 지반에서는 구속압력이 충분하게 발휘되지 않으므로 적용성이 크게 저하된다. 본 연구에서는 연약지반에 대한 조립토 다짐말뚝의 적용성 확대를 위해 등입도 투수성 콘크리트 보강 조립토 다짐말뚝 공법을 제안하였으며, 등입도 투수성 콘크리트와 쇄석 및 연약 점성토로 구성된 복합 공시체의 대형삼축압축시험을 통해 제안된 공법의 효율성을 입증하였다. 또한 본 연구에서는 제안된 공법의 실무 적용성 확보를 위해 침하량 산정기법을 제안하였으며, 제안된 침하량 산정기법의 검증을 위한 목적으로 3차원 유한요소해석을 실시하여 해석결과로 분석된 말뚝의 침하량과 제안식에 의해 산출된 침하량을 상호 비교 분석하였다. 추가적으로 본 연구에서는 다양한 변수분석을 수행하여 설계변수의 영향정도를 평가하였다.