• Title/Summary/Keyword: 토석류 유형

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A Study on the Risk Impact Map Development of Considering the Debris flow Hazard and Impact Level (토석류 발생가능성 및 시설안전성을 고려한 토석류 위험지도작성에 관한 연구)

  • Nam, Dong Ho;Lee, Suk Ho;Kim, Byung Sik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2019.05a
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    • pp.296-296
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    • 2019
  • 전 세계적으로 기후변화로 인한 국지성 집중호우 및 태풍으로 인한 피해가 지속적으로 발생하고 있으며, 그에 따른 2차 피해인 산사태 및 토석류 피해 또한 증가하고 있는 추세이다. 최근 국내의 산사태 및 토석류에 대한 선행연구는 지속적으로 수행되고 있으나, 산사태 및 토석류 위험성이 높은 구간, 즉, 발생기작을 판단할 수 있도록 지표화 해놓은 것이며, 현재 피해예측지도 및 피해 하류부의 시설물을 고려한 연구는 미비한 실정이다. 따라서 본 연구에서는 강우-유출모형인 S-RAT모형 및 토석류 수치해석 프로그램 RAMMS 모형을 이용하여 산사태 및 토석류 피해를 극대화 시키는 인자인 토석유동심(H), 토석유속(V)을 이용하여 토석류피해예측지도를 작성하였으며, 피해 하류부의 시설물을 건물 유형별 시설물의 중요도로 구분하였다. 또한 작성된 피해예측지도 및 시설물 중요도를 중첩하여 위험성 지도를 제시하였다.

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Analysis of Topographical Change using Monitoring of damaged areas of Debris flow (토석류 피해지역 모니터링을 이용한 지형변화 분석)

  • Tak, Won Jun;Jun, Kye Won
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.227-227
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    • 2020
  • 최근 국내에서는 이상기온으로 인한 국지성 폭우와 여름철 태풍과 집중호우로 인해 다양한 재해 유형 중 산악지역을 중심으로 산지재해의 피해가 증가하는 추세이다. 본 논문에서는 토석류 피해지역 중 토석류가 발생한 메인계류와 해당 하류지역을 대상으로 연간지형변화 및 침·퇴적분석에 대해 기술하였다. 대상지역은 2012년 루사로 인해 토석류 피해가 발생한 인제군(설악산 국립공원)지역으로 거주하는 인원이 없어 민가나 생활시설에 미치는 영향은 크지 않지만 하류지역에 교량 및 도로가 위치하고 있어 토석류가 재발생시 위험한 지역으로 분류할 수 있다. 이에 2012 ~ 2020년까지 LiDAR 촬영을 이용한 현장모니터링을 실시하고 있다. 모니터링 데이터를 종합하여 년도별 지형자료를 구축하였으며 인명피해 위험성이 적어 복구가 늦어지거나 계획이 없는 자연사면지역에서의 지형변화를 살펴보았다. 또한 토석류 계류지역과 하류부를 중심으로 침·퇴적 분석을 실시하였다. 계류지역에서는 횡 넓이, 유동심, 크게는 방향, 식생 등에 대한 변화를 분석하였으며 하류부에 위치한 교량 및 도로 등 구조물, 시설물들에 미치는 영향을 분석하였다.

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Case Study on Embankment Slope Failure by Heavy Rainfall (집중호우에 의한 성토사면 붕괴사례)

  • Park, Jong-Ho;Chang, Buhm-Soo
    • Proceedings of the Korean Geotechical Society Conference
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    • 2006.10a
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    • pp.626-631
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    • 2006
  • 본 연구는 2006년 7월 집중호우에 의해 많은 인적.물적 피해가 발생한 강원도 지역의 피해 현장을 조사하였으며, 그 중 성토사면붕괴를 붕괴유형별로 구분하고 발생원인과 특성을 분석하여 그에 따른 적절한 대책방안을 제시하였다. 집중호우에 의한 성토사면의 붕괴유형 중 토석류에 의한 도로횡단 배수구조물의 기능상실로 유수가 노면으로 침출되고 수압이 발생하여 도로가 유실된 유형과 하천선형 불량으로 만곡수충부(물이 직접 부딪히는 부분)에서 유속이 빨라져 세굴에 의한 붕괴가 전체성토붕괴사면의 83%를 차지하였다. 이에 대한 대책방안으로는 토석류를 계곡상부에서 부터 예방할 수 있는 방법으로 사방댐 및 그물망 공법 등이 좋은 대책방안이 될 수 있으며, 토석류에 의한 유송잡물을 모두 통과할 수 있도록 충분히 큰 배수시설을 설치하는 방법도 좋은 대책방안이 될 수 있다. 무엇보다 열대성 국지 폭우를 이제 일상의 한반도 기후현상으로 받아들여 주먹구구식의 일회성 대책방안을 지양하고 바뀐 강우특성과 빈도를 고려하여 계획 홍수위를 재산정하고 그에 따라 하천정비계획을 재검토해야 할 것이다.

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Case Study on Debris flows during Heavy Rain in Inje, Yangyang and Pyeongchang Areas during $15{\sim}17$, July, 2006 (2006 강원 인제, 양양, 평창지역 토석류발생사례분석)

  • You, Byung-Ok;Song, Pyung-Hyun;Jung, Chan-Gyu
    • Proceedings of the Korean Geotechical Society Conference
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    • 2006.10a
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    • pp.615-625
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    • 2006
  • 2006년 7월 15일${\sim}$17일 사이의 집중적인 호우는 강원도 지역에 많은 피해를 주었는데, 특히 강원도 인제, 양양, 평창지역에서의 피해로 수십명의 인명피해와 재산피해를 발생시켰다. 최근 들어 발생되는 집중호우로 인한 피해 중 토석류에 의한 피해가 많은 이유 중에는 지구온난화로 인한 100mm에 가까운 시간당 강우량을 보이고 있어 국내 산악지가 형성된 구간에서는 어느 지역이나 토석류가 발생될 가능성을 가지고 있다고 할 수 있다. 그러므로 본 논문은 2006년 7월에 발생된 강원도 인제, 양양지역을 중심으로 토석류 피해에 대하여 자료를 수집, 분석하였으며 토석류 발생기구 및 유형에 따른 피해정도와 저감방안에 대한 고찰을 실시하였다. 앞으로 빈번해지는 토석류에 대한 관리체계의 확립 및 보완대책과 토목공사시에 반영될 수 있는 방안 등을 모색해야 할 것이다.

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A Case Study on Disaster and Characteristics of Debris Flows by Heavy Localized Rainfall of Gangwon Areas in July, 2006 (2006년 강원지역 토석류의 특성과 피해현황분석)

  • Song, Pyung-Hyun;You, Byung-Ok;Jung, Chan-Gyu;Ahn, Kwang-kuk;Lee, Cheo-kun
    • 기술발표회
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    • s.2006
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    • pp.146-155
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    • 2006
  • A study for damage degree and reduction programs of disaster was performed after collecting and analyzing the damage data by the type of flood damage resulting from the localized rainfall Gangwon area has been damaged by heavy localized rainfall between July 15 and 17 in 2006 Specially, a number of people was killed and much properties were lost in Inje, Yangyang and Pyeongchang area Recently, the damages by debris flow has been increased more than any other disaster causes, because heavy rainfall closed to about 100mm/hr by global warming in short time has been developed frequently. In other words, an area forming a highland has a potential debris flow Therefore, in this study, the damages data by debris flow in the area of Inje and Yangyang were collected and analyzed to consider the type of flood damage In future, it must be tried to find a complementary solution and establishing management system for debris flow when the civil construction begins

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Analysis of Debris Flow Type in Gangwon Province by Database Construction (DB구축을 통한 강원지역 토석류 유형 분석)

  • Jun, Kyoung-Jea;Kim, Gi-hong;Yune, Chan-Young
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.33 no.1
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    • pp.171-179
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    • 2013
  • In recent years in Korea, Typhoon Rusa (2002), Typhoon Maemi (2003), and the localized extreme rainfall followed by Typhoon Ewiniar in 2006 devastated residential areas, roads, and agricultural lands in Gangwon province where 90% of the area is in mountainous regions. Most of the economic losses and casualties were concentrated in the area near the mountain valleys and creeks due to the floods and debris flows. In this study, DATABASE, which includes a total 180 debris flow events in the Gangwon area, was created by collecting the hazard records and field investigations of existing debris flow sites. Analysis results showed that the most of the debris flows in Gangwon province initiated from the small slope failure with relatively steep slope of $18.1^{\circ}$. And they flowed short distances about 420 m in gentle slope with the average angle of $18.1^{\circ}$. In addition, rainfall condition was important for the triggering of debris flow not only at the day of debris flow but also extended period of rainfall before debris flow.

Simulation of the Debris Flow Using FLO-2D According to Curve-shape Changes in Bed Slopes (FLO-2D를 활용한 경사지 형상에 따른 토석류 흐름양상에 대한 수치모의)

  • Jung, Hyo Jun;Yoo, Hyung Ju;Lee, Seung Oh
    • Journal of Korean Society of Disaster and Security
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    • v.13 no.3
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    • pp.45-58
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    • 2020
  • Due to a high portion of mountainous terrains in Korea, debris flow and its disasters have been increased. In addition, recently localized flash-floods caused by climate change should add frequencies and potential risks. Grasping and understanding the behaviors of debris flow would allow us to prevent the consequent disasters caused by its occurrence. In this study, we developed a number of cases by changing the bottom slopes and their curvatures and investigated their effects on potential damage caused by the debris flow using FLO-2D. As simulating each bed slopes we analyzed for velocity, depth, impact, reach distance, and reach shape. As a result the lower the average slope, the greater the influence of its curvature and the numerical results were analyzed with showed a well-marked difference in impact stress and flow velocity. The result from this study could be referred for protecting from the debris flows when design countermeasure structures in mountainous regions.

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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Characteristic Analysis of Dredging and Sedimentation Debris Control Facilities in Inje, Gangwon (강원 인제지역 토석류 사방시설의 준설 및 퇴적 특성)

  • Park, Byungsoo;Jun, Sanghyun;Um, Jaekyung;Cho, Kwangjun;Yoo, Namjae
    • Journal of the Korean GEO-environmental Society
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    • v.14 no.1
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    • pp.15-22
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    • 2013
  • 5 each permeable and impermeable debris dams were selected to analyze the characteristics of dredging and sedimentation according to facility type in Inje, Gangwon. Field tests for the ground water table and sedimentation characteristics of the selected dams were performed. Furthermore, data of the dredging amount, storage capacity, and drainage area were analyzed for the 51 more debris control facilities. From the results of field tests, it was found that the storage capacity of impermeable debris dam could be not enough when the large debris flow is produced since sediments are accumulated even if large debris flow was not occurred. Drainage can be a problem since the ground water table of impermeable debris dam was reached to the surface of ground. However, it was found that the ground saturation should not occur at heavy rain since ground water table of permeable debris dam was located in lower part of buttress. Furthermore, from the analysis results of relation among the dredging amount, basin area, and capacity of debris control facility, it was found that size of debris control facility was not reflected by the basin area. Effective planning and construction should be accomplished for the future since the real sedimentation amount was not significant even though large debris dams were constructed.

Ring-shear Apparatus for Estimating the Mobility of Debris Flow and Its Application (토석류 유동성 평가를 위한 링 전단시험장치 개발 및 활용)

  • Jeong, Sueng-Won;Fukuoka, Hiroshi;Song, Young-Suk
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.33 no.1
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    • pp.181-194
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    • 2013
  • Landslides are known as gravitational mass movements that can carry the flow materials ranging in size from clay to boulders. The various types of landslides are differentiated by rate and depositional features. Indeed, flow characteristics are observed from very slow-moving landslides (e.g., mud slide and mud flow) to very fast-moving landslides (e.g., debris avalanches and debris flows). From a geomechanical point of view, shear-rate-dependent shear strength should be examined in landslides. This paper presents the design of advanced ring-shear apparatus to measure the undrained shear strength of debris flow materials in Korea. As updated from conventional ring-shear apparatus, this apparatus can evaluate the shear strength under different conditions of saturation, drainage and consolidation. We also briefly discussed on the ring shear apparatus for enforcing sealing and rotation control. For the materials with sands and gravels, an undrained ring-shear test was carried out simulating the undrained loading process that takes place in the pre-existing slip surface. We have observed typical evolution of shear strength that found in the literature. This paper presents the research background and expected results from the ring-shear apparatus. At high shear speed, a temporary liquefaction and grain-crushing occurred in the sliding zone may take an important role in the long-runout landslide motion. Strength in rheology can be also determined in post-failure dynamics using ring-shear apparatus and be utilized in debris flow mobility.