• 제목/요약/키워드: Ground layer

검색결과 1,152건 처리시간 0.029초

조경배식에 있어 지피식생조성에 관한 연구 -몽촌토성을 중심으로- (A Study on the Ground Covering in Landscape Planting -In the Case of the Mongchon Earth Fort-)

  • 우종서;이경재
    • 한국조경학회지
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    • 제18권4호
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    • pp.7-16
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    • 1991
  • This research investigated soil, plants, insects and birds in the Mongchon Earth Fort, establishing the 11 plots, according to planting treatment, in order to present management method for ecological stability of species in the ground covering plots. The results of analysizing the investigated data summarize as follows. 1. In the ground covering plots without upper layer, the density and coverage of middle and low layer in the natural plots were higher than those in the artificial plots. 2. In the ground covering plots without upper layer, the density and coverage of low layer were higher than those in the artificial, while the density and coverage of herb layer in the natural plots were lower. 3. Whether there was upper layer or not, the total species diversity and enenness of the ground covering community in the natural plot without artificial treatment and natural treatment plot were higher than those ground covering. 4. In the ground covering plots with upper layer, the species diversity of ground covering in the plots without artificial treatment is high, while the species diversity in the plots with natural treatment caused the secondary succession is higher than that of the natural plot. 5. In the ground covering plots without upper layer, the species diversity in the plots with artificial management was higher than that of natural plots, while the evenness in the plots with artificial management was lower. 6. In the ground covering plots with upper layer the species diversity of insect in the plot of natural state was higher than that of insect in the plots with artifical treatment. 7. Synthetically, in the area with upper layer the species diversity of the ground covering community in the natural plot was high, while in the area without upper layer, the species diversity of it in the plots with artificial treatment was high. The insect turned up frequently in the plots of high species diversity of the ground covering, so the bird did in the plots of high species diversity of the ground covering and insects.

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Seismic performance of the immersed tunnel under offshore and onshore ground motions

  • Bowei Wang;Guquan Song;Rui Zhang;Baokui Chen
    • Earthquakes and Structures
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    • 제27권1호
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    • pp.41-55
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    • 2024
  • There are obvious differences between the characteristics of offshore ground motion and onshore ground motion in current studies, and factors such as water layer and site conditions have great influence on the characteristics of offshore ground motion. In addition, unlike seismic response analysis of offshore superstructures such as sea-crossing bridges, tunnels are affected by offshore soil constraints, so it is necessary to consider the dynamic interaction between structure and offshore soil layer. Therefore, a seismic response analysis model considering the seawater, soil layer and tunnel structure coupling is established. Firstly, the measured offshore and different soil layers onshore ground records are input respectively, and the difference of seismic response under different types of ground motions is analyzed. Then, the models of different site conditions were input into the measured onshore bedrock strong ground motion records to study the influence of seawater layer and silt soft soil layer on the seabed and tunnel structure. The results show that the overall seismic response between the seabed and the tunnel structure is more significant when the offshore ground motion is input. The seawater layer can suppression the vertical seismic response of seabed and tunnel structure, while the slit soft soil layer can amplify the horizontal seismic response. The results will help to promote seismic wave selection of marine structures and provide reference for improving the accuracy of seismic design of immersed tunnels.

지반 이완구간 추정을 위한 지하투과레이더의 적용 (Application of Ground Penetrating Radar for Estimation of Loose Layer)

  • 홍원택;강성훈;이종섭
    • 한국지반공학회논문집
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    • 제31권11호
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    • pp.41-48
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    • 2015
  • 대규모 지반침하 및 지반함몰로 인한 재산, 인명피해를 사전에 예방하기 위하여 지반의 공동 및 이완구간에 대한 조사는 필수적이다. 최근, 지하투과레이더를 이용한 지반침하 및 지반함몰 구간 예측과 관련된 연구가 활발히 진행되고 있으나, 기존의 지하투과레이더 탐사에서는 전기적 임피던스가 서로 다른 층간 경계면 심도만을 산정하므로 조밀한 지반과 느슨한 지반을 서로 반대로 예측하는 오류를 범할 수 있었다. 본 연구에서는, 지하투과레이더로부터 획득된 전자기파의 반사파 특성을 이용하여 이완구간 심도를 추정하고자 하였다. 이완구간에 따른 신호획득을 위하여 과거 침하이력이 있었던 현장을 대상으로 지하투과레이더 탐사가 수행되었으며, 결과의 상호비교 및 검증을 위하여 동적 콘 관입시험이 수행되었다. 전자기파의 반사특성 분석 결과, 지하투과레이더 안테나에서 처음 측정된 신호와 조밀한 지반에서 반사되어 측정된 전자기파는 동일한 위상을 보이며, 느슨한 지반에서 반사되는 경우 안테나에서 처음 측정된 신호와 반대 위상을 보이는 것으로 나타났다. 획득된 지하투과레이더 신호로부터 대상지반의 이완구간 심도 산정 및 동적 콘 관입지수와 상호비교 결과, 지하투과레이더 신호 분석으로부터 산정된 이완구간 또는 조밀한 구간의 심도는 높은 신뢰도로 산정되었다. 본 연구에서 수행된 지하투과레이더 신호획득 및 분석과정은 지반 불연속층의 심도산정뿐만 아니라 이완구간 산정에 활용될 수 있을 것으로 판단된다.

터널굴착으로 발생한 주변 단일지층 및 복합지층 지반에서의 지반변위에 대한 거동비교 (Comparison of Ground Movements in A Single Ground Layer and Multiple Ground Layers due to Nearby Tunnel Excavation)

  • 손무락;윤종철
    • 대한토목학회논문집
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    • 제30권3C호
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    • pp.167-174
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    • 2010
  • 본 논문에서는 터널굴착으로 발생한 주변 단일지층 및 복합지층 지반에서의 지반변위에 대한 거동을 상호 비교하기 위하여 수치해석을 수행하였다. 수치해석은 단일지층 및 복합지층 조건에서 서로 다른 시공조건(지반손실량)을 가진 터널에 대해 수행되었으며, 수치해석 결과로부터 얻어진 지표면에서의 최대 침하량과 최대 수평변위량은 지층조건 및 시공조건별로 상호비교되었다. 뿐만 아니라, 수치해석을 통해 얻어진 지표면에서의 최대 침하량은 터널 굴착부 천단에서 발생된 최대 침하량과 지층조건 및 시공조건(지반손실량)별로 상호 비교되었으며, 지표면에서의 최대 침하량과 최대 수평변위량의 관계 또한 지층조건에 따라 상호 비교되었다. 더불어, 지층조건에 따라 터널굴착부에서 발생한 지반손실량($V_L$)과 지표면에서 형성된 총 침하부피량($V_s$)이 서로 비교되었다. 수치해석을 통해 얻어진 결과와 기존 현장계측자료와의 비교가 수행되었으며, 이를 통해 본 연구의 결과가 향후 터널굴착으로 발생된 서로 다른 지층조건을 가진 주변지반에서의 거동을 파악하고 분석하는 실무자료로서 활용될 수 있다는 것을 파악하였다.

Ground Penetrating Radar Imaging of a Circular Patterned Ground near King Sejong Station, Antarctica

  • Kim, Kwansoo;Ju, Hyeontae;Lee, Joohan;Chung, Changhyun;Kim, Hyoungkwon;Lee, Sunjoong;Kim, Jisoo
    • 지질공학
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    • 제31권3호
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    • pp.257-267
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    • 2021
  • Constraints on the structure and composition of the active layer are important for understanding permafrost evolution. Soil convection owing to repeated moisture-induced freeze-thaw cycles within the active layer promotes the formation of self-organized patterned ground. Here we present the results of ground penetrating radar (GPR) surveys across a selected sorted circle near King Sejong Station, Antarctica, to better delineate the active layer and its relation to the observed patterned ground structure. We acquire GPR data in both bistatic mode (common mid-points) for precise velocity constraints and monostatic mode (common-offset) for subsurface imaging. Reflections are derived from the active layer-permafrost boundary, organic layer-weathered soil boundary within the active layer, and frozen rock-fracture-filled ice boundary within the permafrost. The base of the imaged sorted circle possesses a convex-down shape in the central silty zone, which is typical for the pattern associated with convection-like soil motion within the active layer. The boundary between the central fine-silty domain and coarse-grained stone border is effectively identified in a radar amplitude contour at the assumed active layer depth, and is further examined in the frequency spectra of the near- and far-offset traces. The far-offset traces and the traces from the lower frequency components dominant on the far-offset traces would be associated with rapid absorption of higher frequency radiowave due to the voids in gravel-rich zone. The presented correlation strategies for analyzing very shallow, thin-layered GPR reflection data can potentially be applied to the various types of patterned ground, particularly for acquiring time-lapse imaging, when electric resistivity tomography is incorporated into the analysis.

Key technologies research on the response of a double-story isolated structure subjected to long-period earthquake motion

  • Liang Gao;Dewen Liu;Yuan Zhang;Yanping Zheng;Jingran Xu;Zhiang Li;Min Lei
    • Earthquakes and Structures
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    • 제26권1호
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    • pp.17-30
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    • 2024
  • Earthquakes can lead to substantial damage to buildings, with long-period ground motion being particularly destructive. The design of high-performance building structures has become a prominent focus of research. The double-story isolated structure is a novel type of isolated structure developed from base isolated structure. To delve deeper into the building performance of double-story isolated structures, the double-story isolated structure was constructed with the upper isolated layer located in different layers, alongside a base isolated structure for comparative analysis. Nonlinear elastoplastic analyses were conducted on these structures using different ground motion inputs, including ordinary ground motion, near-field impulsive ground motion, and far-field harmonic ground motion. The results demonstrate that the double-story isolated structure can extend the structural period further than the base isolated structure under three types of ground motions. The double-story isolated structure exhibits lower base shear, inter-story displacement, base isolated layer displacement, story shear, and maximum acceleration of the top layer, compared to the base isolated structure. In addition, the double-story isolated structure generates fewer plastic hinges in the frame, causes less damage to the core tube, and experiences smaller overturning moments, demonstrating excellent resistance to overturning and a shock-absorbing effect. As the upper isolated layer is positioned higher, the compressive stress on the isolated bearings of the upper isolated layer in the double-story isolated structure gradually decreases. Moreover, the compressive stress on the isolated bearings of the base isolated layer is lower compared to that of the base isolated structure. However, the shock-absorbing capacity of the double-story isolated structure is significantly increased when the upper isolated layer is located in the middle and lower section. Notably, in regions exposed to long-period ground motion, a double-story isolated structure can experience greater seismic response and reduced shock-absorbing capacity, which may be detrimental to the structure.

The dynamic response and seismic damage of single-layer reticulated shells subjected to near-fault ground motions

  • Zhang, Ming;Parke, Gerry;Chang, Zhiwang
    • Earthquakes and Structures
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    • 제14권5호
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    • pp.399-409
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    • 2018
  • The dynamic response and seismic damage of single-layer reticulated shells in the near field of a rupturing fault can be different from those in the far field due to the different characteristics in the ground motions. To investigate the effect, the dynamic response and seismic damage of this spatial structures subjected to two different ground motions were numerically studied by nonlinear dynamic response analysis. Firstly, twelve seismic waves with an apparent velocity pulse, including horizontal and vertical seismic waves, were selected to represent the near-fault ground motion characteristics. In contrast, twelve seismic records recorded at the same site from other or same events where the epicenter was far away from the site were employed as the far-fault ground motions. Secondly, the parametric modeling process of Kiewitt single-layer reticulated domes using the finite-element package ANSYS was described carefully. Thirdly, a nonlinear time-history response analysis was carried out for typical domes subjected to different earthquakes, followed by analyzing the dynamic response and seismic damage of this spatial structures under two different ground motions based on the maximum nodal displacements and Park-Ang index as well as dissipated energy. The results showed that this spatial structures in the near field of a rupturing fault exhibit a larger dynamic response and seismic damage than those obtained from far-fault ground motions. In addition, the results also showed that the frequency overlap between structures and ground motions has a significant influence on the dynamic response of the single-layer reticulated shells, the duration of the ground motions has little effects.

다양한 다층 지반모형에 대한 지진동 증폭 (Earthquake Amplification for Various Multi-Layer Ground Models)

  • 정수근;김호연;김대현
    • 지질공학
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    • 제33권2호
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    • pp.293-305
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    • 2023
  • 지진이 발생할 때 대한 지진동 증폭 현상을 확인하기 위해 1g 진동대와 연성토조(Laminar Shear Box, LSB)를 이용하여 모형지반을 조성하였고, 3가지 모델에 대하여 지진동 증폭현상에 대하여 확인하였다. 3가지의 모형지반을 선정하였으며 모든 모형지반에서 조밀한 층과 느슨한 층으로 나누었고, 지반모형의 경우는 다층 수평지반, 다층 제방지반, 다층 분지지반모형으로 선정하였다. 각 지반모형을 제작하며 가속도계 매설을 진행하였으며, 인공지진파, Sinesweep파와 Sine 10 Hz의 지진파를 통하여 증폭현상을 확인하였다. 최대지반가속도(Peak ground acclelration, PGA)와 응답스펙트럼 가속도(Spectrum acceleration, SA)를 통해 지진동 증폭현상을 확인하였다. 수평 다층지반에서 조밀한 지반을 통과 후 느슨한 지반에서 가속도 증폭이 조밀한 지반에 비해 크게 발생하는 것을 확인할 수 있었으며, 다른 두 모형지반에서는 층의 경계면을 통과 후 점차 중심부에서 가속도 증폭이 더 크게 발생하는 것을 확인할 수 있었다.

연약지반 개량시 지오그리드 보강효과에 관한 실험적 연구 (Experimental Study on the Reinforcement Effect of Geogrid in Soft Ground Improvement)

  • 함현수;이상덕
    • 한국지반신소재학회논문집
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    • 제17권2호
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    • pp.1-7
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    • 2018
  • 해안지대나 습지와 같은 연약지반에 도로나 철도 건설이 빈번해지면서 이를 위한 연약지반 개량 사례가 증가하고 있다. 일반적으로 연약지반 개량시 작업조건만을 고려하거나 경제성만을 고려한 공법은 다수 존재하나 작업조건과 경제성을 함께 고려할 경우 적용 가능한 공법은 제한적이다. 이러한 경우 표층부와 심층부를 병용하여 개량하는 공법이 적용되어지는데, 이에 대한 기초적인 연구가 부족한 현실이다. 따라서, 본 연구에서는 연약지반에서 표층부 개량과 심층부 개량을 병용하는 경우에 대해 모형시험을 수행하여 지오그리드 보강 효과를 확인하고자 하였으며, 이때 표층부의 두께, 심층부 개량체의 직경 및 길이가 지오그리드 보강 효과에 미치는 영향을 파악하고자 하였다. 그 결과 표층부의 두께가 심층부의 직경보다 보강효과가 크다는 것을 확인하였고, 또한 표층부를 지오그리드로 보강한 경우 표층부의 강도가 증진되어 침하량이 저감됨을 확인하였다.

지면 운동에 따른 정사각주 후류의 와류 유동장 수치 해석 Part I. 고정 지면과 이동 지면 비교 (Numerical Analysis of the Vortex Shedding past a Square Cylinder with Moving Ground)

  • 김태윤;이보성;이동호
    • 한국항공우주학회지
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    • 제33권6호
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    • pp.1-7
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    • 2005
  • 비압축성 평균 Navier-Stokes 방정식에 $\varepsilon{-SST}$ 난류 모델을 적용하여 정사각주 주위 유동과 지면의 간극 유동을 해석하였다. 지면이 운동할 경우에는 지면의 박리 전단층의 강도가 약화되어 사각주 상/하부의 박리 전단층 상호 작용을 촉진시키므로 고정 지면에 비하여 더 낮은 간극에서도 와류 배출이 발생한다. 지면 효과를 고려할 경우 고정 지면의 경우와는 달리 지면의 박리 거품이 존재하지 않게 되고, 이로 인하여 2차 박리 주파수는 나타나지 않는다. 이와 더불어 지면이 운동할 경우 고정 지면에 비해 더 높은 와류 배출 주파수와 공력 계수가 나타남을 확인하였다.