• 제목/요약/키워드: Shallow bedrock depth

검색결과 33건 처리시간 0.027초

Effect of subsurface flow and soil depth on shallow landslide prediction

  • Kim, Minseok;Jung, Kwansue;Son, Minwoo;Jeong, Anchul
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.281-281
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    • 2015
  • Shallow landslide often occurs in areas of this topography where subsurface soil water flow paths give rise to excess pore-water pressures downslope. Recent hillslope hydrology studies have shown that subsurface topography has a strong impact in controlling the connectivity of saturated areas at the soil-bedrock interface. In this study, the physically based SHALSTAB model was used to evaluate the effects of three soil thicknesses (i.e. average soil layer, soil thickness to weathered soil and soil thickness to bedrock soil layer) and subsurface flow reflecting three soil thicknesses on shallow landslide prediction accuracy. Three digital elevation models (DEMs; i.e. ground surface, weathered surface and bedrock surface) and three soil thicknesses (average soil thickness, soil thickness to weathered rock and soil thickness to bedrock) at a small hillslope site in Jinbu, Kangwon Prefecture, eastern part of the Korean Peninsula, were considered. Each prediction result simulated with the SHALSTAB model was evaluated by receiver operating characteristic (ROC) analysis for modelling accuracy. The results of the ROC analysis for shallow landslide prediction using the ground surface DEM (GSTO), the weathered surface DEM and the bedrock surface DEM (BSTO) indicated that the prediction accuracy was higher using flow accumulation by the BSTO and weathered soil thickness compared to results. These results imply that 1) the effect of subsurface flow by BSTO on shallow landslide prediction especially could be larger than the effects of topography by GSTO, and 2) the effect of weathered soil thickness could be larger than the effects of average soil thickness and bedrock soil thickness on shallow landslide prediction. Therefore, we suggest that using BSTO dem and weathered soil layer can improve the accuracy of shallow landslide prediction, which should contribute to more accurately predicting shallow landslides.

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국내 지반조건이 고려된 지진 방재기술 확립 방안;지반분류 방법 개선 방안을 중심으로 (Development of Earthquake Prevention Technique Considering Geotechnical Site Characteristics of Korea)

  • 김동수;윤종구;김경택;조성하
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2005년도 지반공학 공동 학술발표회
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    • pp.154-162
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    • 2005
  • In this paper, site response analyses were performed based on equivalent linear technique using the shear wave velocity profiles of 162 sites collected around the Korean peninsula. The site characteristics, particularly the shear wave velocities and the depth to the bedrock, are compared to those in the western United States. The results show that the site-response coefficients based on the mean shear velocity of the top 30m ($V_{S30}$) suggested in the current code underestimates the motion in short-period ranges and overestimates the motion in mid-period ranges. Also the current Korean code based on UBC is required to be modified considering site characteristics in Korea for the reliable estimation of site amplification. From the results of numerical estimations, new regression curves were derived between site coefficients ($F_a$ and $F_v$) and the fundamental site periods, and site coefficients were grouped based on site periods in the regions of shallow bedrock. The standard deviations of the proposed method was reasonable compared to site classification based on $V_{S30}$. Finally, new site classification system is recommended based on site periods for regions of shallow bedrock depth in Korea.

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Soil vibration induced by railway traffic around a pile under the inclined bedrock condition

  • Ding, Xuanming;Qu, Liming;Yang, Jinchuan;Wang, Chenglong
    • Geomechanics and Engineering
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    • 제24권2호
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    • pp.143-156
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    • 2021
  • Rail transit lines usually pass through many complicated topographies in mountain areas. The influence of inclined bedrock on the train-induced soil vibration response was investigated. Model tests were conducted to comparatively analyze the vibration attenuation under inclined bedrock and horizontal bedrock conditions. A three-dimension numerical model was built to make parameter analysis. The results show that under the horizontal bedrock condition, the peak velocity in different directions was almost the same, while it obviously changed under the inclined bedrock condition. Further, the peak velocity under inclined bedrock condition had a larger value. The peak velocity first increased and then decreased with depth, and the trend of the curve of vibration attenuation with depth presented as a quadratic parabola. The terrain conditions had a significant influence on the vibration responses, and the inclined soil surface mainly affected the shallow soil. The influence of the dip angle of bedrock on the peak velocity and vibration attenuation was related to the directions of the ground surface. As the soil thickness increased, the peak velocity decreased, and as it reached 173% of the embedded pile length, the influence of the inclined bedrock could be neglected.

New site classification system and design response spectra in Korean seismic code

  • Kim, Dong-Soo;Manandhar, Satish;Cho, Hyung-Ik
    • Earthquakes and Structures
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    • 제15권1호
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    • pp.1-8
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    • 2018
  • A new site classification system and site coefficients based on local site conditions in Korea were developed and implemented as a part of minimum design load requirements for general seismic design. The new site classification system adopted bedrock depth and average shear wave velocity of soil above the bedrock as parameters for site classification. These code provisions were passed through a public hearing process before it was enacted. The public hearing process recommended to modify the naming of site classes and adjust the amplification factors so that the level of short-period amplification is suitable for economical seismic design. In this paper, the new code provisions were assessed using dynamic centrifuge tests and by comparing the design response spectra (DRS) with records from 2016 Gyeongju earthquake, the largest earthquake in history of instrumental seismic observation in Korea. The dynamic centrifuge tests were performed to simulate the representative Korean site conditions, such as shallow depth to bedrock and short-period amplification characteristics, and the results corroborated with the new DRS. The Gyeongju earthquake records also showed good agreement with the DRS. In summary, the new code provisions are reliable for representing the site amplification characteristic of shallow bedrock condition in Korea.

내진설계기준의 지반분류체계 및 설계응답스펙트럼 개선을 위한 연구 - (II) 제안 (Site Classification and Design Response Spectra for Seismic Code Provisions - (II) Proposal)

  • 조형익;;김동수
    • 한국지진공학회논문집
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    • 제20권4호
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    • pp.245-256
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    • 2016
  • In the companion paper (I - Database and Site Response Analyses), site-specific response analyses were performed at more than 300 domestic sites. In this study, a new site classification system and design response spectra are proposed using results of the site-specific response analyses. Depth to bedrock (H) and average shear wave velocity of soil above the bedrock ($V_{S,Soil}$) were adopted as parameters to classify the sites into sub-categories because these two factors mostly affect site amplification, especially for shallow bedrock region. The 20 m of depth to bedrock was selected as the initial parameter for site classification based on the trend of site coefficients obtained from the site-specific response analyses. The sites having less than 20 m of depth to bedrock (H1 sites) are sub-divided into two site classes using 260 m/s of $V_{S,Soil}$ while the sites having greater than 20 m of depth to bedrock (H2 sites) are sub-divided into two site classes at $V_{S,Soil}$ equal to 180 m/s. The integration interval of 0.4 ~ 1.5 sec period range was adopted to calculate the long-period site coefficients ($F_v$) for reflecting the amplification characteristics of Korean geological condition. In addition, the frequency distribution of depth to bedrock reported for Korean sites was also considered in calculating the site coefficients for H2 sites to incorporate sites having greater than 30 m of depth to bedrock. The relationships between the site coefficients and rock shaking intensity were proposed and then subsequently compared with the site coefficients of similar site classes suggested in other codes.

항공 TEM 을 이용한 천해지역에서의 퇴적층 두께 및 기반암 심도 원격탐사에 관하여 (Towards remote sensing of sediment thickness and depth to bedrock in shallow seawater using airborne TEM)

  • Vrbancich, Julian;Fullagar, Peter K.
    • 지구물리와물리탐사
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    • 제10권1호
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    • pp.77-88
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    • 2007
  • 선행된 연구에서의 성공적인 수심도 작성 예에 뒤이어, 항공전자탐사를 이용한 해저면 특성파악 가능성이 고찰되었다. 헬리콥터에 탑재된 시간영역전자탐사 (TEM) 장비에서 얻어진 자료의 1D 역산으로부터 추정된 퇴적층의 두께가 해양 탄성파 연구에 기초하여 얻어진 추정치와 비교되었다. 일반적으로, 해수의 깊이가 대략 20 m이고 퇴적층의 두께가 40 m 미만이면 퇴적층의 두께 즉 비전도성 기반암까지의 깊이는 두 경우에 있어서 타당한 범위 내에서 일치됨을 보였다. 잡음이 섞인 합성자료의 역산은 초기 모형이 실제모형과 차이가 나는 경우에도 수직 전자탐사 유일성 이론과 일치하게 역산 후 실제모형과 매우 닮은 결과를 보여주었다. 잡음이 섞인 합성자료로부터 얻어진 천해 해수 깊이에 관한 표준편차는 대략 깊이의 ${\Box}5\;%$ 정도였으며, 이는 실제자료의 역산 시 대략 ${\pm}1\;m$ 정도의 오차를 우발할 수 있다. 이에 상응하는 기반암 깊이 추정의 불확실성은 대략 ${\pm}10\;%$에 이른다. 잡음이 포함된 합성자료로부터 얻어진 해수와 퇴적층의 평균 역산 두께는 대략 1 m 정도의 정밀도를 나타냈고, 중합에 의해 정밀도가 향상되었다. 주의 깊게 보정된 항공 TEM 자료를 이용하면 퇴적층의 두께와 기반암의 지형을 조사할 수 있다는 가능성을 알 수 있었으며, 천해에서의 해저면 저항치를 알아내기 위한 방법으로서의 가능성도 보여 주었다.

강우침투에 대한 불포화 토사사면의 확률론적 안정해석 (Probabilistic Stability Analysis of Unsaturated Soil Slope under Rainfall Infiltration)

  • 조성은
    • 한국지반공학회논문집
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    • 제34권5호
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    • pp.37-51
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    • 2018
  • 우리나라의 산지사면은 풍화잔류토 층의 깊이가 얕아 강우의 침투로 인한 사면파괴가 많이 발생한다. 이때 파괴면의 깊이는 얕고 토사층과 기반암의 경계면 근처를 통과하는 특징을 가지고 있다. 강우의 침투로 인한 불포화 토사사면의 불안정성에 중요한 영향을 미치는 지반 정수들은 큰 불확실성을 포함한다. 따라서 본 연구에서는 강우로 인한 사면파괴를 예측하기 위하여 지반의 수리학적 특성과 강도특성을 랜덤변수로 고려하는 몬테카를로 시뮬레이션에 의한 확률론적 해석 절차를 제안하였다. 일정한 강우강도에 대한 기반암이 얕게 존재하는 불포화 토사사면의 안정성 예측을 위하여 강우강도에 따른 사면 표면에서의 경계조건을 반영하여 Green-Ampt 모델을 수정하고 얕은 기반암의 경계조건을 도입하였다. 침투해석의 결과를 무한사면 해석에 적용하여 안전율을 계산하였다. 제안된 확률론적 해석법은 강우의 침투에 따른 사면의 시간 의존적 파괴확률을 계산할 수 있다.

교량기초 종류 및 지반-구조물 상호작용을 고려한 지진취약도 분석 (Seismic Fragility of Bridge Considering Foundation and Soil Structure Interaction)

  • 김선재;안효준;송기일
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권6호
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    • pp.129-137
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    • 2020
  • 구조해석을 시행함에 있어 기초는 소성힌지모델로서 고정단으로 간주되고는 한다. 본 연구에서는 기초가 고정단일 때, 2m깊이의 기반암에 시공된 직접기초일 때, 그리고 기반암 심도 10m~20m 구간에 시공된 말뚝기초일 때의 기초, 교각, 교좌장치의 변위를 비교하였으며 기초에 가해지는 전단력을 비교하고, 한계 상태에 대하여 손상 확률을 계산하고 비교하였다. 고정단으로 계산되었을때 기초부 변위가 0m에 수렴하였으나, 심도 2m의 기반암 위에 시공된 직접기초는 상대적으로 변위가 발생하였고, 심도 18m의 기반암에 선단부가 관입되도록 시공된 말뚝기초는 더 큰 변위를 보였다. 또한 하부구조물인 기초의 변위가 상부구조물의 변위에도 영향을 끼치는 것으로 분석되었으나, 기초부분에 가해지는 전단력에는 세 가지 경우에 대하여 차이가 미미하였다. 교각 상단의 변위에 끼치는 영향은 직접기초와 말뚝기초간에 차이가 없는 반면, 고정단으로 가정하고 해석되었을 때와는 큰 차이가 있었다.

Amplification based on shear wave velocity for seismic zonation: comparison of empirical relations and site response results for shallow engineering bedrock sites

  • Anbazhagan, P.;Aditya, Parihar;Rashmi, H.N.
    • Geomechanics and Engineering
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    • 제3권3호
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    • pp.189-206
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    • 2011
  • Amplification based on empirical relations is widely used for seismic microzonation of urban centers. Amplifications are used to represent the site effects of a particular soil column. Many empirical correlations are available to estimate the amplification of seismic waves. These correlations are based on the ratio of shear wave velocity of foundation/rock to soil velocity or 30 m equivalent shear wave velocity ($Vs^{30}$) and are developed considering deep soil data. The aim of this work is to examine the applicability of available amplification relations in the literature for shallow engineering bedrock sites by carrying out site response studies. Shear wave velocity of thirteen sites having shallow engineering bedrock have been selected for the study. In these locations, the depth of engineering bedrock (> 760 ${\pm}$ 60 m/s) is matched with the drilled bore hole. Shear wave velocity (SWV) has been measured using Multichannel Analysis of Surface Wave survey. These sites are classified according to the National Earthquake Hazards Reduction Program (NEHRP) classification system. Amplifications for an earthquake are arrived for these sites using empirical relations and measured SWV data. Site response analysis has been carried out in SHAKE using SWV and using synthetic and real earthquake data. Amplification from site response analysis and empirical relations are compared. Study shows that the amplification arrived using empirical relations does not match with the site response amplification. Site response amplification is much more than empirical values for same shear wave velocity.

기반암 깊이와 토층 평균 전단파속도를 이용한 국내 지반분류 방법 및 지반 증폭계수 개선 (Development of Site Classification System and Modification of Site Coefficients in Korea Based on Mean Shear Wave Velocity of Soil and Depth to Bedrock)

  • 김동수;이세현;윤종구
    • 대한토목학회논문집
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    • 제28권1C호
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    • pp.63-74
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    • 2008
  • 본 논문에서는 국내 125개 지반에 대한 지층 구성, 전단파속도 주상도, 기반암 깊이 등을 기존 자료의 수집 및 부분 시험 수행을 통해 확보하여 지진응답해석을 수행하였고, 이를 바탕으로 기반암이 얕아 대부분의 지반조사가 기반암까지 이루어지는 국내 지반조건에 적합하도록 기반암 깊이와 토층 평균 전단파속도를 동시에 고려하는 2-매개변수 지반분류 방법을 새롭게 제안하였다. 우선, 기반암 깊이(H)에 대해 10m와 20m를 경계 값으로 설정하여 $H_1$ 지반(H<10m), $H_2$ 지반($10m{\leq}H<20m$) 그리고 $H_3$ 지반($H{\geq}20m$)으로 분류하고 이후, 토층 평균 전단파속도($V_{s,soil}$)를 추가 변수로 하여 총 7개의 지반그룹으로 세분화 하였다. 또한 각 지반그룹에 대하여, 지진응답해석 결과로부터 획득한 지반 증폭계수의 경향성과 그 분산정도를 분석하여 새로운 지반분류 방법의 타당성을 입증하고, 각 지반그룹별 대표 지반 증폭계수 및 설계응답스펙트럼도 함께 제안하였다. 제안된 지반 증폭계수와 이를 대표하는 추세선은 암반노두 가속도의 변화에 따른 지반의 비선형성을 일정한 경향성과 함께 효율적으로 표현하고 있다. 또한 지진응답해석으로부터 획득한 스펙트럴 가속도의 평균값과 제안된 설계응답스펙트럼을 비교한 결과, 일부 지반그룹에서 차이가 발생하였고, 추후 지반 증폭계수 계산을 위한 적분구간을 국내 지반조건에 적합하도록 개선할 필요가 있음을 확인하였다.