• 제목/요약/키워드: ground displacement

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도시철도 지중 콘크리트 구조물의 내진해석법 적용에 관한 연구 (A Study of seismic analysis method of urban rail transit's underground concrete structure)

  • 이희영;이동호;김은겸
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2005년도 추계학술대회 논문집
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    • pp.1159-1164
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    • 2005
  • Seismic analysis methods in use on ground structure are equivalentstatic analysis, response-displacement method and dynamic analysis etc. Equivalentstatic analysis does not considerdynamic effect, and dynamic analysis process is very complex. then 'Urbanrail transit earthquake-resistance design standard (2005.06)' is persuading that analyze by response displacement method that consider enough dynamic effect of ground structure statically. But, It is very complex and difficult to apply response-displacement method in the field. So, modified equivalentstatic analysis or pseudo static analysis that is easy to apply in the field and have rationality of design is practically used. In this study, I try to prescribe the applicable scale of structure and static analysis that have calculative effectiveness about response-displacement method by comparing and analyzing the result of each analysis method according to the scale of urban rail transit' box type concrete structure and by performing seismic analysis that apply modified equivalentstatic analysis, pseudo static analysis and response-displacement method changing the kind of ground, depth of bedrock, size of structure.

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연약지반 굴착시 강널말뚝 흙막이벽의 안정성 평가 (Stability Evaluation of Sheet-pile Walls during Excavation Works in Soft Ground)

  • 홍원표;김동욱;송영석;이재호
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.1442-1447
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    • 2005
  • Based on the field measuring data obtained from excavation sections in Inchon International Airport project, the relationships between the horizontal displacement of sheet-pile walls and the deformations of soft ground around the excavation were investigated. The horizontal displacements of walls according to supporting method are largely occurred in order of anchors, anchors with struts, and struts. The depths of maximum horizontal displacement are varied with supporting systems. If the stability number shows lower than ${\pi}$, the maximum horizontal displacement and the velocity of maximum horizontal displacement are respectively developed less than 1% of excavation depth and 1mm/day. When the stability number shows lower than ${\pi}+2$, the maximum horizontal displacement and the velocity are respectively developed less than 2.5% of excavation depth and 2mm/day. Also, when the stability number shows more than ${\pi}+2$, the maximum horizontal displacement and the velocity are rapidly increased.

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사면안정해석을 위한 사진측량을 이용한 사면변위계측시스템 (Displacement Measuring System for the Slope Stability Analysis Using the Softcopy Photogrammetry)

  • 한중근;송영석
    • 한국지반공학회논문집
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    • 제19권4호
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    • pp.23-32
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    • 2003
  • 사면지반변위를 측정하기 위한 기존의 시스템은 고가의 장비를 사용함에도 불구하고 설치ㆍ유지가 힘들고 지반지표의 전반적 계측이 힘들며 계측시 위험을 항상 동반한다. 따라서, 이러한 단점을 극복하고 사면의 변위량을 굴착초기부터 굴착단계별 및 유지관리단계까지 쉽게 미숙련자들도 측정할 수 있는 방법이 필요하며 이를 위하여 사진측량 장점을 활용한 소프트카피 사진측량(Softcopy Photogrammetry)의 매카니즘이 사면지반의 변위계측을 위해 적용되었으며 이는 접근하기 어려운 위험 사면의 3차원 지반데이터를 효과적으로 획득ㆍ분석할 수 있는 방법으로 제시하였다. 또한, 기존의 지상사진측량결과 분석과는 다른 등고선 재생성과정을 광속조정프로그램인 DIMA (Digital IMage Analysis)를 개발 적용하여 적용성을 높였다. 사면파괴발생현장 사례를 통해 사면파괴 전후의 계측결과에 대한 사면안정체계 및 기존계측시스템의 단점을 해결할 수 있는 기술적 토대를 마련할 수 있었다.

배전용 콘크리트전주 기초지반의 횡방향변위 분석 (Lateral Displacement Analysis of Concrete Electric Pole Foundation Grounds)

  • 안태봉
    • 조명전기설비학회논문지
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    • 제23권5호
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    • pp.42-49
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    • 2009
  • 배전용 콘크리트 전주에 작용하는 힘들이 지반의 변위에 미치는 영향을 유한요소법을 이용하여 분석하였다. 지반의 종류, 풍하중, 근가의 위치, 매입길이, 경간의 길이를 변화시키며 단전주와 겹전주의 경우에 지반의 변위를 분석하였다. 근가의 위치는 매입길이의 1/4지점에서 변위가 최소로 나타났다. 지반의 종류는 지반의 강성이 클수록 변위가 작아서 연약한 점토나 느슨한 모래지반 또는 실트 지반은 변위가 크다. 겹전주는 굴착면적이 커서 변위가 다소 큰 것으로 판단되며 시공시에는 콘크리트보강이 필요하다. 지표면에 가까울수록 횡방향 변위는 매입길이비가 작은 전주가 더 크게 나타났다. 횡방향 변위를 줄이기 위해서는 매입길이를 크게 하는 것이 좋다. 경간길이는 횡방향 변위에 영향이 별로 없는 것으로 나타났다.

Displacement-based seismic design of open ground storey buildings

  • Varughese, Jiji Anna;Menon, Devdas;Prasad, A. Meher
    • Structural Engineering and Mechanics
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    • 제54권1호
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    • pp.19-33
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    • 2015
  • Open ground storey (OGS) buildings are characterized by the sudden reduction of stiffness in the ground storey with respect to the upper infilled storeys. During earthquakes, this vertical irregularity may result in accumulated damage in the ground storey members of OGS buildings without much damage in the upper storeys. Hence, the structural design of OGS buildings needs special attention. The present study suggests a modification of existing displacement-based design (DBD) procedure by proposing a new lateral load distribution. The increased demands of ground storey members of OGS buildings are estimated based on non-linear time history analysis results of four sets of bare and OGS frames having four to ten storey heights. The relationship between the increased demand and the relative stiffness of ground storey (with respect to upper storeys) is taken as the criterion for developing the expression for the design lateral load. It is also observed that under far-field earthquakes, there is a decrease in the ground storey drift of OGS frames as the height of the frame increases, whereas there is no such reduction when these frames are subjected to near-field earthquakes.

Ground Deformation Evaluation during Vertical Shaft Construction through Digital Image Analysis

  • Woo, Sang-Kyun;Woo, Sang Inn;Kim, Joonyoung;Chu, Inyeop
    • KEPCO Journal on Electric Power and Energy
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    • 제7권2호
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    • pp.285-293
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    • 2021
  • The construction of underground structures such as power supply lines, communication lines, utility tunnels has significantly increased worldwide for improving urban aesthetics ensuring citizen safety, and efficient use of underground space. Those underground structures are usually constructed along with vertical cylindrical shafts to facilitate their construction and maintenance. When constructing a vertical shaft through the open-cut method, the walls are mostly designed to be flexible, allowing a certain level of displacement. The earth pressure applied to the flexible walls acts as an external force and its accurate estimation is essential for reasonable and economical structure design. The earth pressure applied to the flexible wall is closely interrelated to the displacement of the surrounding ground. This study simulated stepwise excavation for constructing a cylindrical vertical shaft through a centrifugal model experiment. One quadrant of the axisymmetric vertical shaft and the ground were modeled, and ground excavation was simulated by shrinking the vertical shaft. The deformation occurring on the entire ground during the excavation was continuously evaluated through digital image analysis. The digital image analysis evaluated complex ground deformation which varied with wall displacement, distance from the wall, and ground depth. When the ground deformation data accumulate through the method used in this study, they can be used for developing shaft wall models in future for analyzing the earth pressure acting on them.

On the improvement of inelastic displacement demands for near-fault ground motions considering various faulting mechanisms

  • Esfahanian, A.;Aghakouchak, A.A.
    • Earthquakes and Structures
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    • 제9권3호
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    • pp.673-698
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    • 2015
  • This paper investigates inelastic seismic demands of the normal component of near-fault pulse-like ground motions, which differ considerably from those of far-fault ground motions and also parallel component of near-fault ones. The results are utilized to improve the nonlinear static procedure (NSP) called Displacement Coefficient Method (DCM). 96 near-fault and 20 far-fault ground motions and the responses of various single degree of freedom (SDOF) systems constitute the dataset. Nonlinear Dynamic Analysis (NDA) is utilized as the benchmark for comparison with nonlinear static analysis results. Considerable influences of different faulting mechanisms are observed on inelastic seismic demands. The demands are functions of the strength ratio and also the pulse period to structural period ratio. Simple mathematical expressions are developed to consider the effects of near-fault motion and fault type on nonlinear responses. Modifications are presented for the DCM by introducing a near-fault modification factor, $C_N$. In locations, where the fault type is known, the modifications proposed in this paper help to obtain a more precise estimate of seismic demands in structures.

연약지반 성토시의 기울기변화를 이용한 안정관리기법에 관한 실험적 연구 (A Experimental Study on the Stability Management Method using change of Inclination for Embankment on Soft Clay)

  • 류지훈;임종철;장지건
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 춘계 학술발표회 논문집
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    • pp.898-905
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    • 2005
  • The settlement of embankment on soft clay includes shear settlement due to shear deformation. Even though the consolidation settlement is not related to lateral displacement, but shear settlement makes the embankment unstable because it deforms ground and decreases the ground strength. In order to determine the shear deformation behaviour during embankment construction, 3 cases (1B, 2B, and 3B) of rapid undrained loading tests on soft clays were performed. Shear settlement is consist of elastic settlement, plastic settlement and viscous settlement. Elastic settlement isn't considered because the range is small, therefore the first is the range of plastic displacement, and the second is that of viscous displacement in the displacement-time curve for each loading stage. After determining that the change in the inclination of the viscous displacement range is larger than in the plastic displacement range after the ground failure occurs for the loading stage, the stability management methods were suggested considering that it is hard to divide the plastic displacement range and the viscous displacement range. The stability management method was based on the ratio of the plastic displacement range's inclination and the viscous displacement range's inclination. A stability management method based on the ratio of the total inclination for each loading stage compared to the whole inclination in the initial loading stage was also recommended.

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Sentinel 위성기반 한반도 연속 지반변화 관측체계 개발 (Development of Continuous Ground Deformation Monitoring System using Sentinel Satellite in the Korea)

  • 유정흠;윤혜원
    • 대한원격탐사학회지
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    • 제35권5_2호
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    • pp.773-779
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    • 2019
  • 본 연구에서는 유럽에서 운영 중인 Sentinel-1 위성레이더 자료를 기반으로 하여 한반도 전역의 지반변화를 자동으로 분석하는 체계 구축을 수행하였다. 장시간에 걸려 발생하는 지반변화 자연재난은 광역적 지역에서 발생하게 되어 관측의 어려움과 분석을 위한 대용량의 자료가 요구되었다. 하지만, 인공위성의 발달로 광역지역을 주기적으로 관측할 수 있는 방법이 개발되었으며, 이렇게 축적된 다년간의 위성 관측 자료를 활용하여 시계열적인 지반의 변화를 분석할 수 있게 되었다. 이에 연구원에서는 한반도 전 지역을 대상으로 위성레이더 관측자료 취득에서 부터 지반변위 분석 및 분석 결과 표출까지 모든 과정을 자동화 하는 체계를 구축하였다. 본 연구에서 개발된 체계를 기반으로 한반도 전 지역에 대한 주기적인 지반변화 자료의 갱신이 가능하게 되었으며, 변화 우려지역에 대한 사전적 정보제공을 통하여 대형 재난에 대한 예방단계의 대응이 가능하게 될 것으로 기대된다. 향후 지역별 자동화 분석 체계와 동일대상 지역의 다 채널 분석 및 3차원 변화 분석체계에 대한 연구가 진행된다면, 보다 다양한 지반변위 정보를 제공할 수 있을 것이다.

Seismic response of a high-rise flexible structure under H-V-R ground motion

  • We, Wenhui;Hu, Ying;Jiang, Zhihan
    • Earthquakes and Structures
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    • 제23권2호
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    • pp.169-181
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    • 2022
  • To research the dynamic response of the high-rise structure under the rocking ground motion, which we believed that the effect cannot be ignored, especially accompanied by vertical ground motion. Theoretical analysis and shaking table seismic simulation tests were used to study the response of a high-rise structure to excitation of a H-V-R ground motion that included horizontal, vertical, and rocking components. The use of a wavelet analysis filtering technique to extract the rocking component from data for the primary horizontal component in the first part, based on the principle of horizontal pendulum seismogram and the use of a wavelet analysis filtering technique. The dynamic equation of motion for a high-rise structure under H-V-R ground motion was developed in the second part, with extra P-△ effect due to ground rocking displacement was included in the external load excitation terms of the equation of motion, and the influence of the vertical component on the high-rise structure P-△ effect was also included. Shaking table tests were performed for H-V-R ground motion using a scale model of a high-rise TV tower structure in the third part, while the results of the shaking table tests and theoretical calculation were compared in the last part, and the following conclusions were made. The results of the shaking table test were consistent with the theoretical calculation results, which verified the accuracy of the theoretical analysis. The rocking component of ground motion significantly increased the displacement of the structure and caused an asymmetric displacement of the structure. Thus, the seismic design of an engineering structure should consider the additional P-△ effect due to the rocking component. Moreover, introducing the vertical component caused the geometric stiffness of the structure to change with time, and the influence of the rocking component on the structure was amplified due to this effect.