• 제목/요약/키워드: vertical stress

검색결과 1,178건 처리시간 0.034초

비등방 지반에서 터널굴착을 위한 3차원 아칭식의 유도 및 그 영향 조사 (Derivation of a 3D Arching Formula for Tunnel Excavation in Anisotropic Ground Conditions and Examination of Its Effects)

  • 손무락
    • 한국지반공학회논문집
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    • 제34권12호
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    • pp.19-27
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    • 2018
  • 테르쟈기는 트랩도어 처짐에 기반한 상부지반의 수직활동면을 가정한 2차원 아칭식을 제안하였다. 이후 관련 식은 3차원 터널굴착조건과 경사활동면을 고려할 수 있도록 확장되었다. 본 연구에서는 3차원 터널굴착조건에서 비등방지반조건을 반영하여 터널 횡방향 및 종방향에서의 지반물성치 및 활동면의 경사각을 달리하여 고려할 수 있도록 더욱 확장된 아칭식을 유도하고 제시하였다. 제시된 식을 이용하여 다양한 조건(지반물성치, 경사활동면, 굴착조건, 상재하중, 토압계수)에서 발생되는 수직응력에 대해 조사하였고 테르쟈기의 2차원 아칭식과도 비교하였다. 조사결과, 발생 수직응력은 굴착폭 및 굴착길이, 경사각, 상재하중이 증가할수록 증가했고 점착력과 마찰각, 토압계수가 감소할수록 증가하였으며, 굴착길이가 작을 때와 횡방향 지반물성치에 의해서 더 큰 영향을 받는 것으로 나타났다. 또한 테르쟈기 2차원 아칭식과 비교하여 발생 수직응력은 더 작은 것으로 나타났고 그 차이정도는 지반물성치, 경사활동면, 3차원 터널굴착 조건에 따라 매우 큰 영향을 받는 것으로 나타났다. 제시된 3차원 아칭식은 터널굴착으로 인한 복잡한 아칭현상을 보다 잘 이해하는데 도움을 줄 수 있을 것으로 판단된다.

연직파이프쿨링 공법에 의한 매스콘크리트 온도균열 제어에 관한 해석적 연구 (Analytical Study on Thermal Cracking Control of Mass Concrete by Vertical Pipe Cooling Method)

  • 서태석;조윤구;이근주;임창근
    • 콘크리트학회논문집
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    • 제26권1호
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    • pp.57-62
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    • 2014
  • 이 연구에서는 수직으로 긴 매스 구조물에 적합한 파이프쿨링 공법을 제안하기 위하여 기존의 파이프쿨링 공법과는 달리 파이프를 수직으로 설치하는 연직파이프쿨링 공법을 개발하였다. 타당성을 검토하기 위하여 해석대상 부재의 형상($1{\times}3{\times}20m$, $4{\times}4{\times}4m$)을 대상으로 하여 FEM 해석을 수행하였으며, 온도 및 응력 변화와 온도균열 지수 등을 검토하였다. 그 결과, 매스콘크리트 구조물의 온도균열 제어에 효과가 있는 것을 확인할 수 있었다.

100 kW급 조류발전용 듀얼 수직축 터빈의 성능특성 연구 (Investigation on Performance Characteristics of Dual Vertical Axis Turbine of 100 kW Class Tidal Energy Convertor)

  • 허만웅;김동환;박진순
    • 한국수소및신에너지학회논문집
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    • 제31권1호
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    • pp.151-159
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    • 2020
  • This study aimed to investigate the performance characteristics of vertical axis turbine of tidal energy convertor. Three-dimensional Reynolds-averaged Navier-Stokes equation with shear stress transport turbulence model has been solved to analyze the fluid flow of the vertical axis turbine. The hexahedral grids have been used to construct the computational domain and the grid dependency test has been performed to find the optimum grid system. Four steps have been carried out to design the vertical axis turbine of the 100 kW class tidal energy convertor.

수직다이아프램을 사용한 충전형 각형강관기둥 접합부의 내력평가 (Structural Strength of Beam-to-CFT Connections with Vertical Diaphragm)

  • 김경태;이헌우;김영기;김태진;김종호
    • 한국강구조학회 논문집
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    • 제29권3호
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    • pp.237-247
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    • 2017
  • 본 연구에서는 각형 강관 내부에 수직 다이아프램이 적용된 CFT 기둥 접합부의 구조적 특성에 대해 알아보았다. 각형 CFT 기둥의 거동을 파악하기 위해 실대형 3개 실험체를 제작하여 실험을 수행하였다. 유한요소해석을 통해 다이아프램의 거동을 확인하였으며 접합부 내력식을 제안하였다.

스테레오 시간분해 입자영상유속계를 이용한 외부경계층 수직날 배열에 의한 마찰저항 저감 기구에 관한 실험적 조사 (Experimental Investigation on the Drag Reduction Mechanism of Outer-layer Vertical Blades Array using Stereoscopic Time-Resolved PIV)

  • 이인원;박성현;전호환;황아롬;안남현
    • 동력기계공학회지
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    • 제17권6호
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    • pp.95-101
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    • 2013
  • A stereo PIV measurements in a circulating water channel has been performed to investigate the skin friction reduction mechanism of the outer-layer vertical blades first devised by Hutchins. In a recent PIV measurement study, considerable skin friction reduction was achieved as much as 2.73%~7.95% by outer-layer vertical blades array. In the present study, the influence of vertical blades array upon the characteristics of the turbulent coherent structures was analyzed by proper orthogonal decomposition method. It is observed that the vortical structures are cut and deformed by blades array and also the turbulent intensity and the Reynolds stress were weakened by the blades. These phenomena strongly associate the skin-friction drag reduction mechanism in the turbulent boundary layer flow.

설계 및 시공과정에 보정된 고층건물 구조재의 지진하중에 의한 영향 평가 (An Evaluation for Vertical Structural Members Compensated during Design Process and These Compensated during Construction of High-rise Building under Seismic Load)

  • 정은호
    • 한국지진공학회논문집
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    • 제3권1호
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    • pp.93-102
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    • 1999
  • 건물의 고층화가 이루어지면서 구조부재에 미치는 축력이 증가하게 되고 축소현상을 발생시킨다. 이러한 축소현상은 구조물의 사용헝 저하를 가져올뿐만아니라 2차 응력 발생으로 구조물 자체의 안전에도 영향을 미친다. 수직구조부재의 축소량을 예측하는 목적은 인접 부재간의 부등축소를 보정하는 데 있다 본 논문에서는 시공과정에서만 보정을 실시한 경우와 설계단계에서 축소량을 예측하여 보정을 한 경우에 대해 각각 지진하중을 적용하여 구조부재에 미치는 영향에 대해 비교.검토를 하였으며 수직구조부재의 축소량은 반드시 예측되어 보정을 실시하여야 하는 것으로 나타났다.

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An analytical solution for estimating the stresses in vertical backfilled stopes based on a circular arc distribution

  • Jaouhar, El-Mustapha;Li, Li;Aubertin, Michel
    • Geomechanics and Engineering
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    • 제15권3호
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    • pp.889-898
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    • 2018
  • Backfilling of mine stopes with waste rocks or tailings is commonly done to enhance ground stability. It is also an alternative for mining wastes disposal. A successful application of underground backfilling requires an accurate evaluation of the stress distribution in stopes. Over the years, various analytical solutions have been proposed to assess these stresses. Most of them were based on the arching theory, considering uniform stresses across horizontal layer elements. The vertical and horizontal stresses in vertical stopes are principal stresses only along the vertical center line, but not close to the walls where there is rotation of the principal stresses. A few solutions use arc layer elements that follow the iso-contours of the minor principal stresses, based on numerical solutions. In this paper, a modified analytical solution is developed for the stresses in vertical backfilled stopes, considering a circular arc distribution. The proposed solution is calibrated with a few numerical modeling results and then validated by additional numerical simulations under different conditions.

Structural performance evaluation of bolted end-plate connections in a half-through railway inclined girder

  • Jung Hyun Kim;Chang Su Shim
    • Steel and Composite Structures
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    • 제49권5호
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    • pp.473-486
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    • 2023
  • A through-railway bridge with an inclined girder has recently been applied to optimize the cross-section of a slender bridge structure in railway bridges. To achieve the additional cross-section optimization effect by the bolted end-plate connection, it is necessary to investigate the application of the bolted end-plate tension connection between the inclined girder and the crossbeam. This basic study was conducted on the application of the bolted end-plate moment connection of crossbeams to half-through girders with inclined webs. The combined behavior of vertical deflection and rotational behavior was observed due to the effect of the web inclination in the inclined girder where the steel crossbeam was connected to the girder by the bolted end-plate moment connection. Therefore, in the experiment, the deflection of the inclined girder was 1.77-2.93 times greater than that of the vertical girder but the lateral deflection of the inclined girder was 0.4 times less than that of the vertical girder. Moreover, the tensile stress of the upper bolts in the inclined girder with low crossbeams was clearly 0.81 times lower than that of the vertical girder. According to the results, the design formula for vertical girders does not reflect the influence of the web inclination. Therefore, this study proposed the design procedures for the inclined girder to apply the bolted end-plate moment connection of the crossbeam to the inclined girder by reflecting the design change factors according to the effect of the web inclination.

Soil arching analysis in embankments on soft clays reinforced by stone columns

  • Fattah, Mohammed Y.;Zabar, Bushra S.;Hassan, Hanan A.
    • Structural Engineering and Mechanics
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    • 제56권4호
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    • pp.507-534
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    • 2015
  • The present work investigates the behavior of the embankment models resting on soft soil reinforced with ordinary and stone columns encased with geogrid. Model tests were performed with different spacing distances between stone columns and two lengths to diameter ratios (L/d) of the stone columns, in addition to different embankment heights. A total number of 42 model tests were carried out on a soil with undrianed shear strength $${\sim_\sim}10kPa$$. The models consist of stone columns embankment at s/d equal to 2.5, 3 and 4 with L/d ratio equal 5 and 8. Three embankment heights; 200 mm, 250 mm and 300 mm were tested for both tests of ordinary (OSC) and geogrid encased stone columns (ESC). Three earth pressure cells were used to measure directly the vertical effective stress on column at the top of the middle stone column under the center line of embankment and on the edge stone column for all models while the third cell was placed at the base of embankment between two columns to measure the vertical effective stress in soft soil directly. The performance of stone columns embankments relies upon the ability of the granular embankment material to arch over the 'gaps' between the stone columns spacing. The results showed that the ratio of the embankment height to the clear spacing between columns (h/s-d) is a key parameter. It is found that (h/s-d)<1.2 and 1.4 for OSC and ESC, respectively; (h is the embankment height, s is the spacing between columns and d is the diameter of stone columns), no effect of arching is pronounced, the settlement at the surface of the embankment is very large, and the stress acting on the subsoil is virtually unmodified from the nominal overburden stress. When $(h/s-d){\geq}2.2$ for OSC and ESC respectively, full arching will occur and minimum stress on subsoil between stone columns will act, so the range of critical embankment height will be 1.2 (h/sd) to 2.2 (h/s-d) for both OSC and ESC models.

Seismic vulnerbility analysis of Bankstown's West Terrace railway bridge

  • Mirza, Olivia;Kaewunruen, Sakdirat;Galia, Darren
    • Structural Engineering and Mechanics
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    • 제57권3호
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    • pp.569-585
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    • 2016
  • This paper highlights a case study that investigates the behaviour of existing bridge, West Terrace Bridge, induced by horizontal seismic loading. Unfortunately the lack of past information related to seismic activity within the NSW region has made it difficult to understand better the capacity of the structure if Earthquake occurs. The research was conducted through the University of Western Sydney in conjunction with Railcorp Australia, as part of disaster reduction preparedness program. The focus of seismic analyses was on the assessment of stress behaviour, induced by cyclic horizontal/vertical displacements, within the concrete slab and steel truss of the bridge under various Earthquake Year Return Intervals (YRI) of 1-100, 1-200, 1-250, 1-500, 1-800, 1-1000, 1-1500, 1-2000 and 1-2500. Furthermore the stresses and displacements were rigorously analysed through a parametric study conducted using different boundary conditions. The numerical analysis of the concrete slab and steel truss were performed through the finite element software, ABAQUS. The field measurements and observation had been used to validate the results drawn from the finite element simulation. It was illustrated that under a YRI of 1/1000 the bottom chord of the steel truss failed as the stress induced surpassed the ultimate stress capacity and the horizontal displacement exceeded the allowable displacement measured in the field observations whereas the vertical displacement remained within the previously observed limitations. Furthermore the parametric studies in this paper demonstrate that a change in boundary conditions alleviated the stress distribution throughout the structure allowing it to withstand a greater load induced by the earthquake YRI but ultimately failed when the maximum earthquake loading was applied. Therefore it was recommended to provide a gap of 50mm on the end of the concrete slab to allow the structure to displace without increasing the stress in the structure. Finally, this study has proposed a design chart to showcase the failure mode of the bridge when subjected to seismic loading.