• 제목/요약/키워드: maximum lateral displacement

검색결과 202건 처리시간 0.026초

성토지반에 타입된 H 말뚝의 약축방향에 대한 횡방향 장기지지거동 (Lateral long term behavior for web direction of Driven H-Piles in Embankment)

  • 박영호;정경자;김낙영;황영철
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 기초기술학술발표회
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    • pp.43-56
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    • 2002
  • To find a lateral long term behavior of driven H-piles in embankment, inclinometer is installed at pile and measurement is done during a year. When behavior of measured slope angles is in accord with behavior of nonlinear p-y curves(Reese, Murchison and O'Neil, Matlock's p-y analysis), maximum displacement of pile head, maximum stress and maximum bending moment of pile obtained from the numerical analysis are shown. As results, maximum lateral displacement at pile head, maximum stress and maximum bending moment of pile are shown linear behavior, And maximum lateral load, maximum lateral displacement, and maximum bending moment at pile obtained from the numerical analysis are 8∼12.4tonf, 9∼10.1㎜, and 10.39∼12.67tonf-m per pile according to the curves, respectively.

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성토지반에 타입된 H 말뚝의 횡방향 장기지지거동 (Lateral long term behavior of Driven H-Piles in Embankment)

  • 박영호;정경자;김주경;김동인
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2002년도 봄 학술발표회 논문집
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    • pp.575-582
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    • 2002
  • To find a lateral long term behavior of driven H-piles in embankment, inclinometer is installed at pile and measurement is done during a year. When behavior of measured slope angles is in accord with behavior of nonlinear p-y curves(Reese, Murchison and O'Neil, Matlock's p-y analysis), maximum displacement of pile head, maximum stresses and maximum bending of pile obtained from the numerical analysis are shown. As results, maximum lateral displacement at pile head, maximum stress and maximum bending moment of pile are shown linear behavior. And maximum lateral load, maximum lateral displacement, and maximum bending moment at pile head obtained from the numerical analysis are 8∼12.4tonf, 9∼10.1mm, and 10.39∼12.67tonf-m per pile according to the curves, respectively.

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두경부 위치에 따른 측두하악장애환자의 하악 torque 회전운동 분석 (Effects of Head Posture on the Rotational Torque Movement of Mandible in Patients with Temporomandibular Disorders)

  • 박혜숙;최종훈;김종열
    • Journal of Oral Medicine and Pain
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    • 제25권2호
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    • pp.173-189
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    • 2000
  • The purpose of this study was to evaluate the effect of specific head positions on the mandibular rotational torque movements in maximum mouth opening, protrusion and lateral excursion. Thirty dental students without any sign or symptom of temporomandibular disorders(TMDs) were included as a control group and 90 patients with TMDs were selected and examined by routine diagnostic procedure for TMDs including radiographs and were classified into 3 subgroups : disc displacement with reduction, disc displacement without reduction, and degenerative joint disease. Mandibular rotational torque movements were observed in four head postures: upright head posture(NHP), upward head posture(UHP), downward head posture(DHP), and forward head posture(FHP). For UHP, the head was inclined 30 degrees upward: for DHP, the head was inclined 30 degrees downward: for FHP, the head was positioned 4cm forward. These positions were adjusted with the use of cervical range-of-motion instrumentation(CROM, Performance Attainment Inc., St. Paul, U.S.A.). Mandibular rotational torque movements were monitored with the Rotate program of BioPAK system (Bioresearch Inc., WI, U.S.A.). The rotational torque movements in frontal and horizontal plane during mandibular border movement were recorded with two parameters: frontal rotational torque angle and horizontal rotational torque angle. The data obtained was analyzed by the SAS/Stat program. The obtained results were as follows : 1. The control group showed significantly larger mandibular rotational angles in UHP than those in DHP and FHP during maximum mouth opening in both frontal and horizontal planes. Disc displacement with reduction group showed significantly larger mandibular rotational angles in DHP and FHP than those in NHP during lateral excursion to the affected and non-affected sides in both frontal and horizontal planes(p<0.05). 2. Disc displacement without reduction group showed significantly larger mandibular rotational angles in FHP than those in any other head postures during maximum mouth opening as well as lateral excursion to the affected and non-affected sides in both frontal and horizontal planes. Degenerative joint disease group showed significantly larger mandibular rotational angles in FHP than those in any other head postures during maximum mouth opening, protrusion and lateral excursion in both frontal and horizontal planes(p<0.05). 3. In NHP, mandibular rotational angle of the control group was significantly larger than that of any other patient subgroups. Mandibular rotational angle of disc displacement with reduction group was significantly larger than that of disc displacement without reduction group during maximum mouth opening in the frontal plane. Mandibular rotational angle of disc displacement without reduction group was significantly larger than that of disc displacement with reduction group or degenerative joint disease group during maximum mouth opening in the horizontal plane(p<0.05). 4. In NHP, mandibular rotational angles of disc displacement without reduction group were significantly larger than those of the control group or disc displacement with reduction group during lateral excursion to the affected side in both frontal and horizontal planes. Mandibular rotational angle of disc displacement without reduction group was significantly smaller than that of the control group during lateral excursion to the non-affected side in frontal plane. Mandibular rotational angle of disc displacement without reduction group was significantly larger than that of disc displacement with reduction group during lateral excursion to the non-affected side in the horizontal plane(p<0.05). 5. In NHP, mandibular rotational angle of the control group was significantly smaller than that of disc displacement with reduction group or disc displacement without reduction group during protrusion in the frontal plane. Mandibular rotational angle of disc displacement without reduction group was significantly larger than that of the disc displacement with reduction group or degenerative joint disease group during protrusion in the horizontal plane. Mandibular rotational angle of the control group was significantly smaller than that of disc displacement without reduction group or degenerative joint disease group during protrusion in the horizontal plane(p<0.05). 6. In NHP, disc displacement without reduction group and degenerative joint disease group showed significantly larger mandibular rotational angles during lateral excursion to the affected side than during lateral excursion to the non-affected side in both frontal and horizontal planes(p<0.05). The findings indicate that changes in head posture can influence mandibular rotational torque movements. The more advanced state is a progressive stage of TMDs, the more influenced by FHP are mandibular rotational torque movements of the patients with TMDs.

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모형실험에 의한 사질토 지반에서 단말뚝의 수평거동 특성 (Lateral Behavior Characteristics of Short Pile in Sands by Model Tests)

  • 김진복;박종운;한대환;권오균
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 춘계 학술발표회 초청강연 및 논문집
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    • pp.366-376
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    • 2008
  • The model tests of short pile with very small pile length/diameter(L/D) were performed in this paper. Varying the pile diameter, length, and the lateral loading point, the lateral resistance and behavior of very short pile were studied in this model tests. The experimental and analytical results are as follows. The lateral ultimate resistance of short pile in sands was the maximum at the point of h/L=0.75, regardless of pile length/diameter(L/D). As the pile diameter is larger, the lateral ultimate resistance of pile with L/D=1 decreases a little and the lateral resistance increases according to the ratio of pile length/diameter. As the lateral loads are acting on the pile, the displacement of pile head is maximum at the pile top of h/L=0, but minimum at the middle point of the pile. And if the loading point is under the middle of pile, the displacement of pile head occurs oposite in the loading direction, but its magnitude is very small.

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제주 지역의 지반 특성을 고려한 흙막이벽의 측방토압 적용에 관한 연구 II -어스앵커 공법 시공 사례- (A Study on the Application of Lateral Earth Pressure to Earth Retaining Wall Considering Ground Characteristics in Jeju II - Case of Earth Anchor Construction -)

  • 김도형;이동욱;김승현;고권문
    • 한국지반신소재학회논문집
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    • 제22권2호
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    • pp.85-92
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    • 2023
  • 본 연구에서는 제주 지역에서 어스앵커로 지지된 흙막이벽의 측방토압 적용을 평가하기 위하여, 2개의 현장 시공 사례를 기반으로 수평변위에 대한 계측값과 예측값을 비교하였다. 흙막이벽에 작용하는 측방토압의 예측은 Rankine 토압, Hong & Yun 측방토압, Terzaghi & Peck 수정측방토압, Tschebotarioff 측방토압을 이용하여 탄소성해석을 실시하였다. 그 결과, A현장에 대한 최대 수평변위의 예측값은 계측값에 비하여 약 10배~12배로 화인되었으며, B현장의 경우에는 예측값이 계측값보다 약 9배~12배로 평가되었다. 즉, 2개 현장 모두 계측값에 비해 예측값에 의한 최대 수평변위가 유사한 증가율을 보였다. 모든 현장 사례에서 계측값에 의한 최대 수평변위는 퇴적층, 연암층 및 클링커층에서 발생하였고, 수평변위 형상은 사다리꼴 형태에 나타냈다. 그리고 예측값에 의한 최대 수평변위는 클링커층 주변에서 발생하였으며, 수평변위 형상은 타원형으로 나타났다. 클링커층이 혼재되어 있는 지반에서 계측값이 예측값과 매우 다른 수평변위 경향을 보이는 원인으로는 클링커층이 암반층과 연속된 지층의 형태로 존재하기 때문으로 판단되었다. 즉, 예측되는 토압 분포와 상당히 다른 경향을 보이는 제주 지역의 토압 분포 특성을 고려하면 과다하게 평가되는 기존의 예측방법을 적용하는 것은 다소 무리가 있을 것으로 판단되기 때문에, 보다 경제성을 확보할 수 있는 현실적인 제주 지역의 측방토압에 관한 연구가 수행될 필요가 있다.

철근콘크리트 전단벽의 횡하중-횡변위 관계의 일반화 (Generalized Lateral Load-Displacement Relationship of Reinforced Concrete Shear Walls)

  • 문주현;양근혁
    • 콘크리트학회논문집
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    • 제26권2호
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    • pp.159-169
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    • 2014
  • 이 연구에서는 철근콘크리트 전단벽의 횡하중 거동과 연성을 합리적으로 평가하기 위해서 모멘트-곡률관계를 정립하고 이로부터 단순화된 횡하중-횡변위관계를 제시하였다. 최초 휨 균열, 인장철근 항복, 최대내력, 최대내력의 80% 및 인장철근파단시점에서 모멘트와 곡률은 힘의 평형조건과 변형적합조건으로부터 정립되었다. 최대내력 이후의 곡률평가를 위한 압축측연단 콘크리트 변형률은 Razvi and Saatcioglu의 구속된 콘크리트의 응력-변형률 관계를 이용하여 최대응력의 감소계수와 횡보강근 체적지수의 함수로 제시하였다. 모멘트 평가모델은 변수연구를 통하여 인장철근지수, 수직철근지수 및 축력지수의 함수로 일반화하였다. 횡변위는 전단벽의 높이에 따라 분포된 이상화된 곡률로부터 모멘트 면적법을 이용하여 환산하였다. 제시된 횡하중-횡변위관계는 기존 실험 결과와 잘 일치하였으며, 특히 최대내력 이후의 거동을 잘 평가하였다.

연약지반에 설치된 앵커지지 강널말뚝 흙막이벽의 거동 (The Behavior of Sheet Piling Walls supported by Anchors in Soft Ground)

  • 홍원표;송영석;김동욱
    • 한국지반공학회논문집
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    • 제20권4호
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    • pp.65-74
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    • 2004
  • 인천국제공항 공사현장의 7개 흙막이 굴착단면에서 계측된 자료를 토대로 연약지반에 설치된 앵커지지 강널말뚝 흙막이벽의 수평변위과 흙막이벽에 작용하는 측방토압을 조사하였다. 연약지반에서 앵커지지 흙막이벽에 작용하는 측방토압의 분포는 직사각형 모양이며, 측방토압의 크기는 $0.6\gamma H$임을 알 수 있다. 제안된 측방토압의 크기는 NAVFAC(1982)의 경험토압과 동일함을 알 수 있다. 한편, 연약지반에 설치된 앵커지지 흙막이벽의 안정성에 대한 판단기준은 흙막이벽의 최대수평변위속도와 안정수를 이용하여 마련할 수 있다. 흙막이벽의 최대수평변위속도가 1mm/day이하이면 흙막이벽의 안정성이 양호한 현장이고, 1-2mm/day이면 주의시공을 요하는 현장이며, 2mm/day이 상이면 흙막이벽의 안정성이 불량한 현장이라고 판단할 수 있다.

Study on deformation law of surrounding rock of super long and deep buried sandstone tunnel

  • Ding, Lujun;Liu, Yuhong
    • Geomechanics and Engineering
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    • 제16권1호
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    • pp.97-104
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    • 2018
  • The finite difference software Flac3D is used to study the influence of tunnel burial depth, tunnel diameter and lateral pressure coefficient of original rock stress on the stress and deformation of tunnel surrounding rock under sandstone condition. The results show that the maximum shear stress, the radius of the plastic zone and the maximum displacement in the surrounding rock increase with the increase of the diameter of the tunnel. When the lateral pressure coefficient is 1, it is most favorable for surrounding rock and lining structure, with the increase or decrease of lateral pressure coefficient, the maximum principal stress, surrounding displacement and plastic zone range of surrounding rock and lining show a sharp increase trend, the plastic zone on the lining increases with the increase of buried depth.

경사계를 이용한 대구 서부지역 반야월층 굴착 지반의 변위 분석 (Displacement Analysis of an Excavation Wall using Inclinometer Instrumentation Data, Banyawol Formation, Western Daegu)

  • 임명혁
    • 지질공학
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    • 제23권1호
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    • pp.47-55
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    • 2013
  • 대구 지하철 굴착공사 중 노출된 굴착벽의 수평변위분석을 위해 서로 인접한 3개소의 경사계 계측자료를 이용하여 굴착지반의 변위특성 및 원인을 지질공학적 관점에서 고찰하였다. 연구지역은 경상누층군 하양층군 반야월층 지반에 해당하며 안산암질화산암, 석회질셰일, 사암, 호온펠스, 규장암맥 등으로 구성된 하부의 암반층과 이를 부정합으로 피복하고 있는 상부의 토사층으로 구성된다. 경사계 계측공 중 D4 지반의 암반층은 RMR V 등급이며, 층리면과 단층면을 따라 심도 12 m 지점에서 N34W 방향으로 최대수평변위량이 101.39 mm로 분석 되었고, D5 지반의 암반층은 RMR IV 등급이며, 셰일의 층리면, 셰일과 규장암의 접촉면을 따라 심도 9 m와 14 m에서 거의 남쪽 방향으로 최대수평변위량이 53.01 mm ~ 55.17 mm로 측정 되었다. Y6 지반의 암반층은 RMR III 등급이며, 상부 토사층과 하부 암반층의 경계면인 부정합면을 따라 심도 7 m 지점에서 S52W 방향으로 12.65 mm의 최대수평변위량을 나타낸다. 굴착벽에서 측정한 암반 내 불연속면들을 평사투영하여 예상되는 변위방향과 각 경사계 계측분석 결과 얻어진 수평변위방향이 거의 일치하는 결과를 보였으며, 굴착벽의 지중수평변위는 암반 내 불연속면의 발달정도와 종류, 배향 및 암석의 종류에 좌우되며, 굴착벽에 수직방향과 수평평행방향의 벡터 합성 방향으로 많이 발생한다. 또한 토사층 내 지중수평변위의 양상이 심도에 따라 비교적 곡선이며 연속적 궤적을 보이는데 반해 암반층 내 지중수평변위의 양상은 직선적이고 불규칙적 궤적을 나타낸다.

Experimental investigation of lateral displacement of PVD-improved deposit

  • Chai, Jin-Chun;Xu, Fang
    • Geomechanics and Engineering
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    • 제9권5호
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    • pp.585-599
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    • 2015
  • Laboratory model tests were conducted to investigate the effect of surcharge loading rate on the magnitude of lateral displacement of prefabricated vertical drains (PVDs) improved deposit. The test results indicate that under the condition that the system had sufficient factor of safety (FS) ($FS{\geq}1.2$), for the similar model ground under the same total applied surcharge load, the lateral displacement increases with the increase of loading rate. The test results have been used to check the validity of a previously proposed method for predicting the maximum lateral displacement, and it shows that the data points are around the middle line of the predicted range, which supports the usefulness of the proposed method. The basic idea of the prediction method is an empirical relationship between the normalized lateral displacement (NLD) and a ration of load to the undrained shear strength of the deposit (RLS). The model test results offer some modifications of the NLD-RLS relationship: (1) instead of a bilinear relationship, NLD-RLS relationship may be entirely nonlinear; (2) the upper bound value of RLS for the proposed method can be used may be limited to 2.1 instead of the originally proposed value of 3.0.