• 제목/요약/키워드: In-plane displacement

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비선형구성식을 이용한 기초지반의 거동해석 (Analysis on the Behaviour of Foundation Using the Non-Linear Constitutive Laws)

  • 정진섭
    • 대한토목학회논문집
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    • 제13권2호
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    • pp.253-265
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    • 1993
  • 본 연구는 Lade에 의해서 제안된 비선형구성모델을 이용하여 지반거동을 해석하기 위한 수치해석 방법을 제시하고자 한것이다. 그 첫 시도로서 축대칭조건과 평면변형율조건의 비선형 경계치 문제를 해석하기 위하여 변위법을 이용한 유한요소 프로그램을 개발하였다. 모델의 매개변수를 결정하기 위한 시험과 모형기초지반의 시험재료는 백마강모래를 사용하였다. 그리고 실내시험 자료로 부터 비선형구성모델 의 매개변수를 결정할 때 컴퓨터 프로그램을 개발하여 사용하였다. 구성 모델의 정도를 검증하기 위하여 개발된 유한요소프로그램을 사용한 예측결과를 매개변수 결정에 사용된 실험 결과뿐만 아니라 결정에 사용되지 아니한 실험결과와도 비교하였다. 검증에 사용된 시험은 다음과 같다 ; (1) 등방압축팽창시험, (2) 구속압력을 달리한 배수삼축압축시험 (3) 모형기초지반의 재하시험, 이상의 시험과 수치해석결과를 비교하여 비선형구성모델과 유한요소해석프로그램의 정도를 확인하고 평면변형율조건에 있는 2차원모형기초지반의 거동 특성을 검토하였다.

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거골 경부 골절의 나사못 고정 방향에 따른 결과 비교 (Screw Fixation Techniques for Talar Neck Fractures (Anterior versus Posterior insertion))

  • 신동은;윤형구;최우진;이윤석;한승철
    • 대한족부족관절학회지
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    • 제14권1호
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    • pp.79-83
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    • 2010
  • Purpose: To compare the clinical and radiological results between the anterior and posterior screw fixation for the treatment of talar neck fracture. Materials and Methods: Among 30 patients who received surgical treatment for talar neck fracture from 2001 to 2008. Twenty-seven patients with a follow-up period of more than 1 year were divided into two groups. Twelve patients were treated with anterior screw fixation and 15 patients with posterior approaches. We analyzed preoperative, postoperative and follow-up radiographs. Clinical results were evaluated by Hawkins criteria. Results: The posteriorly inserted screws were placed across the more central portion of the talar neck and perpendicular to the plane of fracture (p<0.05). There were no difference in clinical results, the duration of union, and complications including avascular necrosis between two groups. However, 2 patients complained of pain around the talonavicular joint in the anterior insertion group. Conclusion: Although the clinical results were good irrespective of insertion methods, the posterior approach of screw fixation for talar neck fractures allows for a better mechanical advantage than anterioly placed screws. This may allow early motion with a reduced risk of failure of fixation or of displacement of the fracture.

Moisture-dependent Physical Properties of Detarium microcarpum Seeds

  • Aviara, Ndubisi A.;Onaji, Mary E.;Lawal, Abubakar A.
    • Journal of Biosystems Engineering
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    • 제40권3호
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    • pp.212-223
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    • 2015
  • Purpose: Physical properties of Detarium microcarpum seeds were investigated as a function of moisture content to explore the possibility of developing bulk handling and processing equipment. Methods: Seed size, surface area, and 1,000-seed weight were determined by measuring the three principal axes, measuring area on a graph paper, and counting and weighing seeds. Particle and bulk densities were determined using liquid displacement and weight in a measuring cylinder, respectively. Porosity was computed from particle and bulk densities. Roundness and sphericity were measured using shadowgraphs. Angle of repose and static and kinetic coefficients of friction were determined using the vertical cylindrical pipe method, an inclined plane, and a kinetic coefficient of friction apparatus. Results: In the moisture range of 8.2%-28.5% (db), the major, intermediate, and the minor axes increased from 2.95 to 3.21 cm, 1.85 to 2.61 cm, and 0.40 to 1.21 cm, respectively. Surface area, 1,000-seed weight, particle density, porosity, and angle of repose increased from 354.62 to $433.19cm^2$, 3.184 to 3.737 kg, 1060 to $1316kg/m^3$, and 30.0% to 53.1%, respectively, whereas bulk density decreased from 647.6 to $617.2kg/m^3$. Angle of repose increased from $13.9^{\circ}$ to $28.4^{\circ}$. Static and kinetic coefficients of friction varied between 0.096 and 0.638 on different structural surfaces. Conclusions: Arithmetic mean, geometric mean, and equivalent sphere effective diameters determined at the same moisture level were significantly different from each other, with the arithmetic mean diameter being greatest. Surface area, 1,000-seed weight, particle density, porosity, and angle of repose all increased linearly with moisture content. Bulk density decreased linearly with moisture content. The coefficients of friction had linear relationships with moisture content. The highest values of static and kinetic coefficients of friction were observed on galvanized steel and hessian fabric, respectively, whereas the lowest values were observed on fiberglass.

부마찰력을 고려한 말뚝기초 설계 (Design of Pile Foundations Considering Negative Skin Friction)

  • 김주형;권오성;김명모
    • 한국지반공학회논문집
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    • 제21권5호
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    • pp.65-74
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    • 2005
  • 압밀이 진행 중인 지반에 설치되는 말뚝은 부마찰력을 받으며 과도한 부마찰력은 기초 및 상부구조물의 안정에 심각한 영향을 미칠 수 있다. 본 연구에서는 큰 잔류침하가 예상되는 연약지반에 교각 기초로 시공되는 말뚝의 부마찰력을 산정하여 기초의 지지력에 대한 안정성을 평가하였다. 본 연구에서는 연약 점성토 내에 설치될 말뚝기초가 큰압밀침하가 발생하는 지역에 적합한지 여부를 판단하였는데, 이를 위해 시기별 지반조사 자료로부터 얻은 대상지반의 압밀정수와 침하 계측자료를 이용하여 현재의 압밀도와 잔류침하량을 산정하였다. 말뚝의 깊이별 침하량은 부마찰력을 고려할 수 있도록 수정된 하중전이함수법과 수치해석적 방법의 두 가지 방법으로 예측하였는데, 두 방법으로 구한 깊이별 말뚝변위와 최대 축하중은 서로 유사한 값을 나타내었으며, 중립면의 위치도 유사하게 나타났다. 부마찰력을 고려하여 말뚝의 지지력에 대한 안전성 평가를 수행한 결과 말뚝이 설계지지력에 못미치 경우에는 slip layer코팅을 적용하여 부마찰력을 감소시키거나 말뚝의 지지층 근입깊이를 늘려 지지력을 증가시키는 방안을 추천하였다.

Investigation of three-dimensional deformation mechanisms of existing tunnels due to nearby basement excavation in soft clay

  • Wanchun Chen;Lixian Tang;Haijun Zhao;Qian Yin;Shuang Dong;Jie Liu;Zhaohan Zhu;Xiaodong Ni
    • Geomechanics and Engineering
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    • 제34권2호
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    • pp.115-124
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    • 2023
  • By conducting three-dimensional simulation with consideration of small-strain characteristics of soil stiffness, the effects of excavation geometry and tunnel cover to diameter ratio on deformation mechanisms of an existing tunnel located either at a side of basement or directly underneath the basement were systematically studied. Field measurements were used to verify the numerical model and model parameters. For basement excavated at a side of an existing tunnel, the maximum settlement and horizontal displacement of the tunnel are always observed at the tunnel springline closer to basement and tunnel crown, respectively, regardless of basement geometry. By increasing basement length and width by five times, the maximum movements of tunnel located at the side of basement and directly underneath the basement increase by 450% and 186%, respectively. Obviously, tunnel movements are more sensitive to basement length rather than basement width. For basement excavated at a side of an existing tunnel, tunnel movements at basement centerline become stable when basement length reaches 10 He (i.e., final excavation depth). Moreover, tunnel heaves due to overlying basement excavation become stable when the normalized basement length (L/He) is larger than 8.0. As tunnel cover to diameter ratio varies from 2.5 to 3.0, the maximum heave and tensile strain of tunnel due to overlying basement excavation decrease by up to 41.0% and 44.5%, respectively. If basement length is less than 8 He, the assumption of plane strain condition of basement-tunnel interaction grossly overestimates tunnel movements, and ignores tensile strain of tunnel along its longitudinal direction. Thus, three-dimensional numerical analyses are required to obtain a reasonable estimation of tunnel responses due to adjacent and overlying basement excavations in clay.

Experimental research on the evolution characteristics of displacement and stress in the formation of reverse faults

  • Chen, Shao J.;Xia, Zhi G.;Yin, Da W.;Du, Zhao W.
    • Geomechanics and Engineering
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    • 제23권2호
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    • pp.127-137
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    • 2020
  • To study the reverse fault formation process and the stress evolution feature, a simulation test system of reverse fault formation is developed based on the analysis of reverse fault formation mechanism. The system mainly consists of simulation laboratory module, operation console and horizontal loading control system, and data monitoring system. It can represent the fault formation process, induce fault crack initiation and simulate faults of different throws. Simulation tests on reverse fault formation process are conducted by using the simulation test system: horizontal loading is added to one side of the model. the bottom rock layer cracks under the effect of the induction device. The crack dip angle is about 29°. A reverse fault is formed with the expansion of the crack dip angle towards the upper right along the fracture surface and the slippage of the hanging wall over the foot wall. Its formation process unfolds five stages: compressive deformation of rock, local crack initiation, reverse fault penetration, slippage of the hanging wall over the foot wall and compaction of fault plane. There is residual structural stress inside rock after fault formation. The study methods and results have guiding and referential significance for further study on reverse fault formation mechanism and rock stress evolution.

함수비가 낮은 동결토의 전단강도 및 강성 평가 (Evaluation of the Shear Strength and Stiffness of Frozen Soil with a Low Water Content)

  • 김상엽;이종섭;김영석;변용훈
    • 지질공학
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    • 제25권1호
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    • pp.93-102
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    • 2015
  • 지반은 동결이 발생함에 따라 물리적 특성이 변화하며, 동결현상에 따른 기초구조물의 안정성 평가는 설계시 중요한 고려사항 중 하나이다. 본 연구에서는 동결 및 전단과정 중 연직응력 변화에 따른 동결토의 전단강도 및 강성을 평가하고자 하였다. 동결토의 강도평가를 위하여 직접전단실험을 수행하였으며, 직접전단실험 중 강성평가를 위한 전단파 측정을 동시에 수행하였다. 실험수행을 위하여, 동결용 직접전단상자를 제작하였으며, 상·하부 전단상자의 벽면에는 전단파 트랜스듀서인 벤더 엘리먼트를 각각 설치하였다. 시료는 주문진사 및 실트, 그리고 증류수를 이용하여 포화도 10%로 혼합하였으며, 상대밀도가 모든 조건에서 동일하게 유지되도록 조성하였다. 조성된 시료는 -5℃까지 동결을 진행시킨 후, 온도를 유지한 상태로 직접전단실험을 수행하였다. 동결 및 전단과정 중 시료에는 다양한 크기의 연직응력이 가해졌으며, 전단과정 중 수평변위에 따른 전단응력 및 수직변위, 그리고 전단파를 측정하였다. 실험결과, 모든 구속조건의 경우에서 동결 혹은 전단과정의 연직응력이 증가함에 따라 전단강도는 증가하였으며, 전단과정의 연직응력만 증가한 경우보다 동결과정의 연직응력도 함께 증가한 경우 전단강도가 더 크게 증가하는 것으로 나타났다. 또한, 전단파 속도의 변화는 측정위치에 따라 다른 경향을 보였으며, 전단면을 통과하여 측정한 경우 전단파 속도는 전단변형이 진행됨에 따라 감소하는 것으로 나타났다. 본 연구는 동결 및 전단과정 시 구속조건의 효과를 평가한 연구로써, 포화도가 낮은 상태의 동결토의 강도 및 강성에 대한 기초자료로 활용될 수 있을 것으로 예상된다.

임플랜트 고정체의 형태와 연결방식에 따른 임플랜트 및 지지조직의 응력분포 (STRESS ANALYSIS OF SUPPORTING TISSUES AND IMPLANTS ACCORDING TO IMPLANT FIXTURE SHAPES AND IMPLANT-ABUTMENT CONNECTIONS)

  • 한상운;박하옥;양홍서
    • 대한치과보철학회지
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    • 제42권2호
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    • pp.226-237
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    • 2004
  • Purpose: Four finite element models were constructed in the mandible having a single implant fixture connected to the first premolar-shaped superstructure, in order to evaluate how the shape of the fixture and the implant-abutment connection would influence the stress level of the supporting tissues fixtures, and prosthethic components. Material and methods : The superstructures were constructed using UCLA type abutment, ADA type III gold alloy was used to fabricate a crown and then connected to the fixture with an abutment screw. The models BRA, END , FRI, ITI were constructed from the mandible implanted with Branemark, Endopore, Frialit-2, I.T.I. systems respectively. In each model, 150 N of vertical load was placed on the central pit of an occlusal plane and 150 N of $40^{\circ}$ oblique load was placed on the buccal cusp. The displacement and stress distribution in the supporting tissues and the other components were analysed using a 2-dimensional finite element analysis . The maximum stress in each reference area was compared. Results : 1. Under $40^{\circ}$ oblique loading, the maximum stress was larger in the implant, superstructure and supporting tissue, compared to the stress pattern under vertical loading. 2. In the implant, prosthesis and supporting tissue, the maximum stress was smaller with the internal connection type (FRI) and the morse taper type (ITI) when compared to that of the external connection type (BRA & END). 3. In the superstructure and implant/abutment interface, the maximum stress was smaller with the internal connection type (FRI) and the morse taper type (ITI) when compared to that of the external connection type (BRA & END). 4. In the implant fixture, the maximum stress was smaller with the internal connection type (FRI) and the morse taper type (ITI) when compared to that of the external connection type (BRA & END). 5 The stress was more evenly distributed in the bone/implant interface through the FRI of trapezoidal step design. Especially Under $40^{\circ}$ oblique loading, The maximum stress was smallest in the bone/implant interface. 6. In the implant and superstructure and supporting tissue, the maximum stress occured at the crown loading point through the ITI. Conclusion: The stress distribution of the supporting tissue was affected by shape of a fixture and implant-abutment connection. The magnitude of maximum stress was reduced with the internal connection type (FRI) and the morse taper type (ITI) in the implant, prosthesis and supporting tissue. Trapezoidal step design of FRI showed evenly distributed the stress at the bone/implant interface.

Effects of Skill Level and Feet Width on Kinematic and Kinetic Variables during Jump Rope Single Under

  • Jang, Kyeong Hui;Son, Min Ji;Kim, Dae Young;Lee, Myeoung Gon;Kim, You Kyung;Kim, Jin Hee;Youm, Chang Hong
    • 한국운동역학회지
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    • 제27권2호
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    • pp.99-108
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    • 2017
  • Objective: The purpose of this study was to analyze the effects of skill level and width between feet on kinematic and kinetic variables during jump rope single under with both feet. Method: Fifteen subjects in the skilled group (age: $10.85{\pm}0.40yrs$, height: $142.13{\pm}5.41cm$, weight: $36.97{\pm}6.65kg$) and 15 subjects in the unskilled group (age: $10.85{\pm}0.40yrs$, height: $143.31{\pm}5.54cm$, weight: $40.81{\pm}10.39kg$) participated in this study. Results: Participants in the skilled group minimized the anteroposterior displacement of their center of mass by modifying the width between their feet and decreased the range of motion (ROM) of their trunk in the sagittal plane. The preferred width during the jump rope decreased by 5.61~6.11 cm (32~37%) in comparison to width during static standing. The induced width was increased by 16.44~16.67 cm (82~85%), regardless of skill level. The kinematic variables of the left and right legs of members of the unskilled group were significantly different from those of members in the skilled group regarding the ROM of the hip, knee, and ankle joint. Otherwise, the members of the skilled group were consistent in terms of the kinematic variables of the right and left legs. Conclusion: The preferred width between feet during the jump rope was found to be beneficial for maintaining dynamic stability. The unskilled group exhibited asymmetry in left and right motion within the ranges of motion of the ankle, knee, and hip joints, regardless of the width. Therefore, long-term accurate jump rope motions will contribute to an improvement in the left and right imbalances of the entire body.

슬관절 주위 글격의 기초과학 및 스포츠 손상 (KNEE: Basic Science and Injury of Bone)

  • 김희천
    • 대한정형외과스포츠의학회지
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    • 제2권2호
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    • pp.77-81
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    • 2003
  • 목적: 슬관절 주위 골격의 기초과학을 생체역학을 중심으로 설명하고 빈도가 높은 스포츠 손상들에 대해 기술하고자 한다. 해부 밀 운동학: 슬관절은 순수한 경첩 관절이 아니며 적합하지 않으므로 여섯 방향의 운동이 가능하다. 경골대퇴간 운동역학: 슬관절의 굴곡-신전 축은 시상면에 수직이 아닐 뿐 아니라, 관상면상 관절선과 평행하지 않으므로, 경골대퇴관절은 굴곡 시 내반과 내회전이 동반되고 신전 시에는 외반과 외회전이 동반된다. 슬개대퇴 관절: 슬개대퇴 관절 압박력은 슬관절의 굴곡 각도와 사두고근력에 비례한다 슬개골은 신전기전의 moment arm을 증가시켜 신전기전의 효율을 증대시키고 지렛대 역할을 한다. 슬개골 골절: 비전위성 골절이면서 하지 직거상 운동이 보존된 경우에 비수술적 치료의 적응증이 되며 수술적 치료 시 고정 방법의 선택은 골절 양상에 따라 결정되겠으나 어느 술식을 선택하여도 신전지대의 봉합은 필수적이며 중요하다 슬개골 불안정성: 선행 해부학적 이상을 조사해야 하며 급성 탈구에서도 골연골 골절편이 있거나 재발의 위험이 높은 운동선수에서 인대 봉합을 고려할 수 있다. 비수술적 치료 및 재활에도 불수하고 계속되는 재발성 아탈구나 탈구는 수술이 필요하다 학령기 스포츠 손상: Idiopathic Adolescent Anterior Knee Pain, Osgood-Schlatter Disease, Sinding-Larsen-Johansson Disease 등이 흔하다

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