• Title/Summary/Keyword: debris-flow

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Development of Hazard Prediction Map S/W for Mountain River Road (산지하천도로 재해지도 작성을 위한 SW 개발)

  • Jang, Dae Won;Yang, Dong Min;Kim, Ki Hong
    • Journal of Korean Society of societal Security
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    • v.2 no.1
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    • pp.75-80
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    • 2009
  • The objectives of this research are to develop hazard prediction map S/W for mountain river road. This mountain river road disaster happens by debris flow, landslide, debris accumulation and this cause are locally rainfall and heavy rainfall. System is constructed to GIS base. This research app lied to Kangwondo. We developed protocol to analyze calamity danger in mountain district area and examined propriety system. Furthermore examined the DB required and expression plan for hazard map creation SW construction by mountain rivers road.

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Development of a Logistic Regression Model for Probabilistic Prediction of Debris Flow (토석류 산사태 예측을 위한 로지스틱 회귀모형 개발)

  • 채병곤;김원영;조용찬;김경수;이춘오;최영섭
    • The Journal of Engineering Geology
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    • v.14 no.2
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    • pp.211-222
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    • 2004
  • In this study, a probabilistic prediction model for debris flow occurrence was developed using a logistic regression analysis. The model can be applicable to metamorphic rocks and granite area. order to develop the prediction model, detailed field survey and laboratory soil tests were conducted both in the northern and the southern Gyeonggi province and in Sangju, Gyeongbuk province, Korea. The seven landslide triggering factors were selected by a logistic regression analysis as well as several basic statistical analyses. The seven factors consist of two topographic factors and five geological and geotechnical factors. The model assigns a weight value to each selected factor. The verification results reveal that the model has 90.74% of prediction accuracy. Therefore, it is possible to predict landslide occurrence in a probabilistic and quantitative manner.

Landslide Analysis Using the Wetting-Drying Process-Based Soil-Water Characteristic Curve and Field Monitoring Data (현장 함수비 모니터링과 습윤-건조 함수특성곡선을 이용한 산사태 취약성 분석)

  • Lee, Seong-Cheol;Hong, Moon-Hyun;Jeong, Sang-Seom
    • Journal of the Korean Geotechnical Society
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    • v.39 no.5
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    • pp.13-26
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    • 2023
  • This study examined the soil-water characteristic curve (SWCC), considering the volume change, using wetting curves on the field monitoring data of a wireless sensor network. Special attention was given to evaluating the landslide vulnerability by deriving a matric suction suitable for the actual site during the wetting process. Laboratory drying SWCC and shrinkage laboratory tests were used to perform the combined analysis of landslide and debris flow. The results showed that the safety factor of the wetting curve, considering the volume change of soil, was lower than that of the drying curve. As a result of numerical analyses of the debris flow simulation, more debris flow occurred in the wetting curve than in the drying curve. It was also found that the landslide analysis with the drying curve tends to overestimate the actual safety factor with the in situ wetting curve. Finally, it is confirmed that calculating the matric suction through SWCC considering the volume change is more appropriate and reasonable for the field landslide analysis.

Experiments on Sedimentation of Particles in a Water Pool with Gas Inflow

  • Kim, Eunho;Jung, Woo Hyun;Park, Jin Ho;Park, Hyun Sun;Moriyama, Kiyofumi
    • Nuclear Engineering and Technology
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    • v.48 no.2
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    • pp.457-469
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    • 2016
  • During the late phase of severe accidents of light water reactors, a porous debris bed is expected to develop on the bottom of the flooded reactor cavity after breakup of the melt in water. The geometrical configuration, i.e., internal and external characteristics, of the debris bed is significant for the adequate assessment of the coolability of the relocated corium. The internal structure of a debris bed was investigated experimentally using the DAVINCI (Debris bed research Apparatus for Validation of the bubble-Induced Natural Convection effect Issue) test facility. Particle sedimentation under the influence of a two-phase natural convection flow due to the decay heat in the debris bed was simulated by dropping various sizes of particles into a water vessel with air bubble injection from the bottom. Settled particles were collected and sieved to obtain the particle mass, size distribution in the radial and axial positions, and the bed porosity and permeability. The experimental results showed that the center part of the particle bed tended to have larger particles than the peripheral area. For the axial distribution, the lower layer had a higher fraction of larger particles. As the sedimentation progressed, the size distribution in the upper layers can shift to larger sizes because of the higher vapor generation rate and stronger flow intensity.

A Study on Debris Flow Landslide Disasters and Restoration at Inje of Kangwon Province, Korea (2006년 강원도 인제지역의 토석류 산사태 수해 및 복구에 관한 연구)

  • Lee, Cheol-Ju;Yoo, Nam-Jae
    • Journal of the Korean Society of Hazard Mitigation
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    • v.9 no.1
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    • pp.99-105
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    • 2009
  • The main purpose of this work is to analyse damages caused by debris flows during the heavy rainfalls at Inje of Kangwon Province, Korea. A series of site investigations have been carried out to survey the characteristics of debris flows occurred during the summer season of 2006. It has been found that major losses in human life and property are caused by discharge of soil and rock fragments from landslides. During the rainfall high precipitation rate of 113.5 mm/hour and 355 mm/day was recorded, which could happen at 80-500 year period. Comparing the rainfall record with the time of landslides being occurred, occurrence of the landslides is directly related to heavy rainfalls. At present, several debris barriers have been built at the valleys and natural slopes have been protected by the seed spray method. It is intended to propose an alternative of restoration of landslide damages and maintenance based on findings from the current study.

A Study on Exploring Accumulation Zone and Composition Investigation of Floating Debris in Nakdong River Basin (낙동강 유역 부유쓰레기의 집적 구간 탐색 및 성상 조사 연구)

  • JANG, Seon-Woong;KIM, Dae-Hyun;CHUNG, Yong-Hyun;YOON, Hong-Joo
    • Journal of the Korean Association of Geographic Information Studies
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    • v.18 no.2
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    • pp.45-58
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    • 2015
  • The aim of this study is to find out major accumulation zones through field survey and moving route tracking trials on floating debris of Nakdong River. It also identified composition and accumulated amount of the floating debris by sample survey for accumulation zones. As a result, total 5 accumulation zones were selected from the midstream and downstream of the Nakdong River. There was a large amount of floating debris, including vegetation debris, in the accumulation zones. And two accumulation zones located in the downstream region, it is much more likely to flow into the ocean along river. From the sample survey on the major accumulation zones, more than $40{\ell}$ of floating debris were collected including vegetation and artificial debris. As a result of composition analysis for artificial debris, plastic(49%) and styrofoam(36%) were the majority in number. The present study is expected to help to plan an efficient pre-collecting activity and to reduce floating debris flowing into the ocean from the Nakdong River.

Development of the Damage Investigation Item to Debris Flow using the Delphi Method (델파이 기법을 활용한 토석류 피해조사 항목 개발)

  • Byun, Yo Seph;Kim, Min Gi;Park, Kyung Han;Oh, Tae Keun;Seong, Joo Hyun
    • Journal of the Korean Society of Safety
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    • v.31 no.2
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    • pp.41-48
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    • 2016
  • Recently, the frequency and intensity of localized heavy rain and typhoon due to the abnormal climate has increased, and especially the damage by an avalanche of earth and rocks similar to the landslide of Umyeon Mountain has become a social issue. However, the standardized damage investigation method doesn't yet exist, so the systematic analysis of the data has not been carried out. In this regard, this study developed assessment items to conduct standardized damage investigation of debris flow. To achieve this, preliminary assessment items were derived from analysis of literature review and the Delphi technique of 12 experts who are engaged in research facility, academia and industry was conducted. As a result, 29 assessment items which can be classified into 6 groups were determined. Surveying the relevant hand-on workers, details assessment items in each group were determined by exploratory factor analysis and reliability analysis.

The Application of Geosynthetic Reinforced Soil Method in the Failed Slopes (붕괴사면 복구를 위한 보강토 공법의 적용)

  • Cho, Yong-Seong;Kim, You-Seong;Park, Inn-Joon
    • Proceedings of the Korean Geotechical Society Conference
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    • 2005.03a
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    • pp.171-178
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    • 2005
  • It is unavoidable to be formed slopes under special circumstance of Korea where 70% of the whole area are composed of mountains when civil engineering projects such as roads, site developments are increased with industrial development and horizontal expansions of urban area. Moreover, stability of the slopes become one of quite important issues under special meteorological characteristics that over two-thirds of annual average rainfall are concentrated in summer season and the localized torrential downpour are getting more frequent recently. Resulting in these circumstances, partial slope failures by debris flow of the high water content soils are occurred frequently in cutting soil slopes. In this case of debris flow slope failure, slope declination method are selected for their stable recovery because it is impossible to recover entirely by existing recovery methods. Seeding or special grass planting methods are followed separately without exception. The method by which entire recover with bigger stability ratio would be possible and grass planting work would be done simultaneously is developed. In this study, the results of the tests including a real construction history in a failed slope using developed method are described

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Design of Road Drainage for Debris Flow (토석류 고려 도로배수시설 설계 방안)

  • Lee, Yong-Soo;Choi, Chang-Ho;Chung, Ha-Ikn;Koh, Jeung-Hyun
    • 한국방재학회:학술대회논문집
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    • 2008.02a
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    • pp.521-524
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    • 2008
  • In addition the typhoon 'Lusa' of year 2002 has resulted 5,400 billion won of property damage and the damages for roads and railroads were approximated to be 2,860 billion won at 12,377 locations holding 53% damage of total. It was reported that the property damage due to the 2003 typhoon, 'Maemi' was 4,200 billion won. The recent typhoon, 'Aewinia', caused the 1,400 billion-won property damage including sweeping and flooding of 127 roads and 65 rivers, respectively. Therefore, this paper presented to estimate drainage size for debris flow

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A Study for the Water Rising Effect on Flood Water Level by Debris (유송잡물에 의한 홍수위 상승 영향분석 - 삽교천의 선우대교를 중심으로 -)

  • Cho, Yong-Ho;Jeong, Sang-Man;Han, Kyu-Ha;Shin, Kwang-Seob
    • Journal of the Korean Society of Hazard Mitigation
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    • v.7 no.5
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    • pp.179-186
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    • 2007
  • This paper has investigated a rise of water level in upstream and downstream of bridge, which is caused by accumulation of debris in a bridge. The debris has been classified into several types in terms of size. The rise of water level which has been caused by installation and removal of sheet pile that is used to block water in a bridge has been analyzed using HEC-RAS model. According to the analysis, it has turned out that the debris has no influence on the rise of water level in ordinary water flow. In addition, sheet pile has little impact on the rise of water as well. Even though the impact of sheet file has turned out trivial in flood flow just like the ordinary water flow, it's been simulated that the maximum water level difference between upstream and downstream of bridge turned out more than 1.0meter because of debris in 80-year or more flood frequency. When the rise of water level in upstream from the cross section of the bridge was investigated based on 100-year flood frequency, besides, it has turned out that it had an influence up to 17.84km distance because of the effect of debris.