• Title/Summary/Keyword: 지형태 관련성

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Assessment of Earthquake Induced Landslide Susceptibility with Variation of Groundwater Level (지하수위 변화에 따른 지진 유발 산사태의 취약섬 분석)

  • Kim, Ji-Seok;Park, Hyuek-Jin;Lee, Jung-Hyun
    • Economic and Environmental Geology
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    • v.44 no.4
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    • pp.289-302
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    • 2011
  • Since the frequency of the earthquake occurrence in Korean peninsular is continuously increasing, the possibility that massive landslides are triggered by earthquake is also growing in Korea. Previously, the landslide is known to be induced by large magnitude earthquake, whose magnitude is larger than 6.0. However, the landslide can be induced by only small magnitude earthquake, especially in the fully saturated soil. Therefore, the susceptibility of landslide caused by small magnitude earthquake in fully saturated soil is analyzed in this study. For that, the topographical and geological characteristics of the site were obtained and managed by GIS software. In the procedure of the study, slope angle, cohesion, friction angle, unit weight of soil were obtained and constructed as a spatial database layer. Combining these data sets in a dynamic model based on Newmark's displacement analysis, the landslide displacements were estimated in each grid cell. In order to check out the possibility of the earthquake induced landslides, the level of the groundwater table is varied from dry to 80% saturated soil. In addition, in order to analyze the effect of the magnitude of earthquake and distance to epicenter, four different earthquakes epicenters were considered in the study area.

Landslide Vulnerability Mapping considering GCI(Geospatial Correlative Integration) and Rainfall Probability In Inje (GCI(Geospatial Correlative Integration) 및 확률강우량을 고려한 인제지역 산사태 취약성도 작성)

  • Lee, Moung-Jin;Lee, Sa-Ro;Jeon, Seong-Woo;Kim, Geun-Han
    • Journal of Environmental Policy
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    • v.12 no.3
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    • pp.21-47
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    • 2013
  • The aim is to analysis landslide vulnerability in Inje, Korea, using GCI(Geospatial Correlative Integration) and probability rainfalls based on geographic information system (GIS). In order to achieve this goal, identified indicators influencing landslides based on literature review. We include indicators of exposure to climate(rainfall probability), sensitivity(slope, aspect, curvature, geology, topography, soil drainage, soil material, soil thickness and soil texture) and adaptive capacity(timber diameter, timber type, timber density and timber age). All data were collected, processed, and compiled in a spatial database using GIS. Karisan-ri that had experienced 470 landslides by Typhoon Ewinia in 2006 was selected for analysis and verification. The 50% of landslide data were randomly selected to use as training data, while the other 50% being used for verification. The probability of landslides for target years (1 year, 3 years, 10 years, 50 years, and 100 years) was calculated assuming that landslides are triggered by 3-day cumulative rainfalls of 449 mm. Results show that number of slope has comparatively strong influence on landslide damage. And inclination of $25{\sim}30^{\circ}C$, the highest correlation landslide. Improved previous landslide vulnerability methodology by adopting GCI. Also, vulnerability map provides meaningful information for decision makers regarding priority areas for implementing landslide mitigation policies.

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A Statistical Mobilization Criterion for Debris-flow (통계 분석을 통한 산사태 토석류 전이규준 모델)

  • Yoon, Seok;Lee, Seung-Rae;Kang, Sin-Hang;Park, Do-Won
    • Journal of the Korean Geotechnical Society
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    • v.31 no.6
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    • pp.59-69
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    • 2015
  • Recently, landslide and debris-flow disasters caused by severe rain storms have frequently occurred. Many researches related to landslide susceptibility analysis and debris-flow hazard analysis have been conducted, but there are not many researches related to mobilization analysis for landslides transforming into debris-flow in slope areas. In this study, statistical analyses such as discriminant analysis and logistic regression analysis were conducted to develop a mobilization criterion using geomorphological and geological factors. Ten parameters of geomorphological and geological factors were used as independent variables, and 466 cases (228 non-mobilization cases and 238 mobilization cases) were investigated for the statistical analyses. First of all, Fisher's discriminant function was used for the mobilization criterion. It showed 91.6 percent in the accuracy of actual mobilization cases, but homogeneity condition of variance and covariance between non-mobilization and mobilization groups was not satisfied, and independent variables did not follow normal distribution, either. Second, binomial logistic analysis was conducted for the mobilization criterion. The result showed 92.3 percent in the accuracy of actual mobilization cases, and all assumptions for the logistic analysis were satisfied. Therefore, it can be concluded that the mobilization criterion for debris-flow using binomial logistic regression analysis can be effectively applied for the prediction of debris-flow hazard analysis.

Physically Based Landslide Susceptibility Analysis Using a Fuzzy Monte Carlo Simulation in Sangju Area, Gyeongsangbuk-Do (Fuzzy Monte Carlo simulation을 이용한 물리 사면 모델 기반의 상주지역 산사태 취약성 분석)

  • Jang, Jung Yoon;Park, Hyuck Jin
    • Economic and Environmental Geology
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    • v.50 no.3
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    • pp.239-250
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    • 2017
  • Physically based landslide susceptibility analysis has been recognized as an effective analysis method because it can consider the mechanism of landslide occurrence. The physically based analysis used the slope geometry and geotechnical properties of slope materials as input. However, when the physically based approach is adopted in regional scale area, the uncertainties were involved in the analysis procedure due to spatial variation and complex geological conditions, which causes inaccurate analysis results. Therefore, probabilistic method have been used to quantify these uncertainties. However, the uncertainties caused by lack of information are not dealt with the probabilistic analysis. Therefore, fuzzy set theory was adopted in this study because the fuzzy set theory is more effective to deal with uncertainties caused by lack of information. In addition, the vertex method and Monte Carlo simulation are coupled with the fuzzy approach. The proposed approach was used to evaluate the landslide susceptibility for a regional study area. In order to compare the analysis results of the proposed approach, Monte Carlo simulation as the probabilistic analysis and the deterministic analysis are used to analyze the landslide susceptibility for same study area. We found that Fuzzy Monte Carlo simulation showed the better prediction accuracy than the probabilistic analysis and the deterministic analysis.

Deconstructing the Dichotomy between Ecology and Art in Contemporary Landscape Architecture (현대 조경설계에서 생태-예술 이원론의 해체)

  • Pae, Jeong-Hann
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.6 no.2
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    • pp.48-56
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    • 2003
  • 20세기 후반을 거치며 환경 관련 이슈는 조경 이론과 설계에서도 중심 주제로 자리잡아 왔다. 환경에 대한 고려를 중심에 둔 이른바 생태적 조경계획 설계는 조경의 패러다임에 일대 전환을 가져오고 조경의 대사회적 역할을 교정했다는 평가를 받고 있다. 그러나 이러한 흐름은 동시대 조경 이론과 설계의 가장 첨예한 쟁점 중의 하나인 생태학과 예술 사이의 이분법을 심화시켰다는 비판에 직면하고 있는 것 또한 사실이다. 즉 생태적 조경은 환경적 가치 대형태 구축, 부지의 생태적 분석 대 창조적 표현이라는 이원론적 갈등 관계를 형성해 온 것이다. 이 논문은 이러한 양상의 생태-예술 이원론을 해체하고 대안적 조경의 지평을 구축하는 일이 현대 조경설계가 풀어야 할 최우선의 과제라고 파악한다. 이 논문은 특히 최근의 조경설계에서 실험되고 있는 경험의 구축, 변화와 프로세스의 고려, 일시성과 불확정성을 존중하는 태도 등을 통해 생태-예술 이원론을 해체할 수 있는 실천적 전략을 모색한다. 뿐만 아니라 그러한 전략에서 드러나는 대안적 조경미학이 최근의 환경미학과 공유하고 있는 이론적 지형을 검토함으로써 생태학과 예술의 접점을 가로지르는 조경설계의 새로운 좌표를 탐색한다.

Analysis of the debris flow occurrence according to soil moisture conetnt in eaach soil layer based on predicted rainfall (예측 강우 기반의 토층별 토양수분 함량에 따른 토석류 발생 예측 분석)

  • Kim, Namgyun;Lee, Se On;Kim, Man-il
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.278-278
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    • 2022
  • 2020년 집중호우로 인하여 우리나라 전국에 걸쳐 약 2,000여 곳의 산사태, 토석류가 발생하였고 약 1,217ha의 피해 면적이 발생하였다. 피해지역의 특히 생활권 중심의 사면과 계류의 관리 필요성이 높아지고 있다. 산림청 산사태정보시스템에서는 토양함수지수가 80% 도달 시 주의보, 100% 도달 시 경보를 발령하는 대국민 서비스를 제공하고 있다. 본 연구에서는 토층의 깊이에 따른 함수비 분포에 따라 토석류의 발생 가능성에 대한 분석을 수행하고자 하였으며, 토양함수는 기상 수치모델에 의한 예측 강우 자료를 활용하였다. 예측 강우 모델은 토석류가 주로 발생하는 여름철 집중호우 시기인 남서풍을 고려하여 도메인을 구성하였고 산림의 증발산 및 토양수분 모의 정확도 향상을 위해 임상도와 토지피복도를 사용하여 보정하였다. 토층내 토양수분의 함량은 토질에 따라 그 특성이 다르기 때문에 토질과 관련한 주제를 이용하여 토양정보를 활용하였다. 내부마찰각, 점착력, 단위중량, 밀도, 지질도, 지형경사, 표고, 유효토심에 대한 정보를 구축하여, 예측강우에 따라 토층의 수분 함량을 추정하여 붕괴 발생 가능성을 분석하였다. 2006년 평창지역에서 발생한 토석류에 대하여 수행하였으며 토층의 심도는 0.5~1m 범위의 분포에 대하여 체적함수에 따른 실제 토석류 발생에 대한 검증을 수행하였다.

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A Study on River Management for the Restoration of Aquatic Ecosystem Connectivity (수생태계 연결성 회복을 위한 하천관리방안)

  • Jong-Yoon Park;Ji-Wan Lee
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.492-492
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    • 2023
  • 담수 생물종 시식역의 보전을 위해 하천 연결성 유지와 회복이 중요하지만, 하천관리에 있어 이를 고려하기 위한 기초자료나 관련 연구가 부족한 실정이다. 특히 인공장벽(artificial barrier) 영향에 대한 대부분의 연구는 어류이동에 초점을 두고 있거나, 그 공간적 범위를 제한하는 경향이 있다. 본 연구는 강과 하천을 연속체 개념으로 접근하여 생태학적 과정을 방해할 수 있는 모든 인위적 구조물을 인공장벽으로 간주하고, 댐과 저수지, 보와 같이 하천의 종적 연결성을 저해하는 3개 유형의 인공 구조물에 대해 공간자료를 구축하였다. 수치지형도로부터 하천중심선과 수리시설물(보), 호소 및 저수지 경계를 교차(intersection) 분석하여 유형별 구조물의 위치 정보를 추출하고, 기존 자료와의 비교·검증을 통해 자료의 신뢰성을 도모하였다. 인공장벽에 대한 공간자료는 구조물의 유형에 따라 국가하천과 지방하천, 소하천으로 구분하고 낙동강 대권역 내 총 195개 표준유역에 대해 밀도(barrier density)를 계산하였는데, 여기서의 밀도는 하천 연장에 대한 총 인공장벽의 수로 정의(barriers/km)된다. 본 연구의 주요 결과는 낙동강 유역 내 인공 장벽의 밀도와 유형, 하천별 공간분포에 대한 정량적 평가를 포함하고 있으며, 이를 기반으로 수생태계 연결성 회복을 위한 하천관리방안을 모색하고자 하였다. 분석 방법과 결과 등 자세한 내용은 발표를 통해 제시될 예정이다.

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Oceanography in the Waters Adjacent to Kamchatka and Kurile Islands in the Northwestern Pacific - I (북서태평양 명태 어장의 해황 - 1 . 해저지형과 해수유동 -)

  • Yang, Jae-Mock;chang, Sun-Duck
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.13 no.1
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    • pp.11-15
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    • 1977
  • The circulation of the sea water in relation to the submarine topography is discussed using the oceanographic, current measurement and echo-sounding data obtained by R/V Odaesan in the waters adjacent to Kamchatka and Kurile Islands. The continental shelf which is approximately seventy-five kilometers wide at the east of Kamchata Peninsula becomes narrower at the Kurile Islands, and is cut, at the sea floor approximately twenty miles east of Onekotan Island, by a narrow, shallow sea channel extending from the depression in the Onekotan Strait, forming an elevation similar to a guyot. The measured current speed of approximately one knot in the Oyashio Current region east of Kurile Island is faster than that (0.5-0.7 knot) deduced by the dynamic computation of ocean current.

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Airspeed Estimation Through Integration of ADS-B, Wind, and Topology Data (ADS-B, 기상, 지형 데이터의 통합을 통한 대기속도 추정)

  • Kim, Hyo-Jung;Park, Bae-Seon;Ryoo, Chang-Kyung;Lee, Hak-Tae
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.50 no.1
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    • pp.67-74
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    • 2022
  • To analyze the motion of aircraft through computing the dynamics equations, true airspeed is essential for obtaining aerodynamic loads. Although the airspeed is measured by on-board instruments such as pitot tubes, measurement data are difficult to obtain for commercial flights because they include sensitive data about the airline operations. One of the commonly available trajectory data, Automatic Dependent Surveillance-Broadcast data, provide aircraft's speed in the form of ground speed. The ground speed is a vector sum of the local wind velocity and the true airspeed. This paper present a method to estimate true airspeed by combining the trajectory, meteorological, and topology data available to the public. To integrate each data, we first matched the coordinate system and then unified the altitude reference to the mean sea level. We calculated the wind vector for all trajectory points by interpolating from the lower resolution grid of the meteorological data. Finally, we calculate the true airspeed from the ground speed and the wind vector. These processes were applied to several sample trajectories with corresponding meteorological data and the topology data, and the estimated true airspeeds are presented.

Analysis of the Spatial Distribution for Forest Fire Areas using GSIS (GSIS에 의한 산불 피해 지점의 공간 분포 분석)

  • Yang, In-Tae;Yeu, Young-Geol;Choi, Seung-Pil;Kim, Eung-Nam
    • Journal of Korean Society for Geospatial Information Science
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    • v.7 no.2 s.14
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    • pp.93-100
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    • 1999
  • Forest fires have been threats to natural resources, endangered species, properties and even to human lives. Efficient management of forest fires requires a complete understanding of the environmental and human related activities, as well as complicate spatial relationships among them. A geo-spatial information system(GSIS) is an appropriate method of being able to mapping and to analyze the spatial data for forest fires. Therefore, this study is to provide and classify the terrain, vegetation, life environment soil and geology factors, and to analyze spatial distribution for forest fire areas by applying the GSIS and the Remote Sensing technology. On the other hands, causes of increasing numbers of forest fires being occurred after In were assessed by comparing the normalized difference vegetation index((NDVI).

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