• Title/Summary/Keyword: 토사유실

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The Comparative Estimation of Soil Erosion for Andong and Imha Basins using GIS Spatial Analysis (GIS 공간분석을 이용한 안동·임하호 유역의 토사유실 비교 평가)

  • Lee, Geun Sang
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.26 no.2D
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    • pp.341-347
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    • 2006
  • Geographically Imha basin is adjacent to Andong basin, but the occurrence of turbid water in each reservoir by storm events shows big differences. Hence, it is very important to identify the reason for these large differences. This study compared and analyzed soil erosion using the semi-empirical soil erosion model, RUSLE for both Imha and Andong basin, especially with emphasis on high-density turbid water. The agricultural district, which is the most vulnerable to soil erosion, was intensively analyzed based on land cover map produced by Ministry of Environment. As a result, the portion of the agricultural area is 11.88% for Andong basin, while it is 14.95% for Imha basin. Also all RUSLE factors excepts practice factor turned out to be higher for Imha basin. This means that the basin characteristics such as soil texture, terrain, and land cover for Imha basin is more vulnerable to soil erosion. Estimation of soil erosion by RUSLE for Andong and Imha basin is 1,275,806 ton and 1,501,608 ton, respectively, showing higher soil erosion by 225,802 ton for Imha basin.

The Analysis of Soil Erosion in Water-pollutant Buffering Zone of Imha reservoir using Geo-Spatial Data (지형공간정보를 이용한 임하호 수변구역 토사유실 분석)

  • Lee, Geun-Sang;Hwang, Eui-Ho;Park, Jin-Hyeog;Chae, Hyo-Sok
    • Proceedings of the Korea Water Resources Association Conference
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    • 2006.05a
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    • pp.908-912
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    • 2006
  • Geology and terrain of Imha basin has a very weak characteristics to soil erosion, so much soil particles flow into Imha reservoir and bring about high density turbid water when it rains a lot. Especially, since the agricultural area of Imha basin is mainly located in river boundary, Imha reservoir has suffered from turbid water by soil erosion. Therefore, it is important to estimate the influence of soil erosion to establish efficient management of water-pollutant buffering zone for the reduction of turbid water. By applying GIS-based RUSLE model, this study can acquire 12.23% that is the ratio of soil erosion in water-pollutant buffering zone and is higher than area-ratio (9.95%) of water-pollutant buffering zone. This is why the area-ratio of agricultural district (27.24%) in water-pollutant buffering zone is higher than the area-ratio of agricultural district (14.96%) in Imha basin. Also as the result of soil erosion in sub-basin, Daegok basin shows highest soil erosion in water-pollutant buffering zone, second is Banbyeon_10 basin and last is Seosi basin.

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The Influence Analysis of GIS-based Soil Erosion in Water-pollutant Buffering Zone (GIS기반 수변구역의 토사유실 영향 분석)

  • Lee, Geun Sang;Hwang, Eui Ho
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.26 no.2D
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    • pp.335-340
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    • 2006
  • Geology and terrain of Imha basin has a very weak characteristics to soil erosion, so much soil particles flow into Imha reservoir and bring about high density turbid water when it rains a lot. Especially, since the agricultural area of Imha basin is mainly located in river boundary, Imha reservoir has suffered from turbid water by soil erosion. Therefore, it is important to estimate the influence of soil erosion to establish efficient management of water-pollutant buffering zone for the reduction of turbid water. By applying GIS-based RUSLE model, this study can acquire 12.23% that is the ratio of soil erosion in water-pollutant buffering zone and is higher than area-ratio (9.95%) of water-pollutant buffering zone. This is why the area-ratio of agricultural district (27.24%) in water-pollutant buffering zone is higher than the area-ratio of agricultural district (14.96%) in Imha basin. Also as the result of soil erosion in sub-basin, Daegok basin shows highest soil erosion in water-pollutant buffering zone, second is Banbyeon_10 basin and last is Seosi basin.

Causual Analysis on Soil Loss of Safety Class Oryun Tunnel Area in Landslide Hazard Map (산사태 위험지도에서 안전등급지역인 오륜터널 일대의 토사유실 원인분석)

  • Kim, Tae Woo;Kang, In Joon;Choi, Hyun;Lee, Byung Gul
    • Journal of Korean Society for Geospatial Information Science
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    • v.24 no.1
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    • pp.17-24
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    • 2016
  • At present, summer cloudburst and local torrential rainfalls have increased in this country, because of climatic change. Therefore, studies on prevention of soil loss have been actively proceeded, and Korea Forest Service has offered landslide hazard map. Landslide hazard map divides risks into 5 classes, by giving weight with 9 kinds of elements. In August 25 2014, soil loss occurred in the whole Oryun Tunnel, Geumjeong-gu, Busan, because of local torrential heavy rain. As a result of comparing with landslide hazard map, the area where soil loss occurred in reality is a safety zone on hazard map. Rainfall, soil map, geological map, forest type map, gradient, drainage network, watershed, basin shape, and efflux of the whole Oryun Tunnel where soil loss occurred were analyzed. As a result of an analysis, it is judged that soil, forest type, much efflux and peak discharge, degree of water network and basin shape of a place where landslide occurred are causes of soil loss. It is judged that efflux, peak discharge, and basin shape by the localized rainfall that is not considered in landslide hazard map of them are the biggest causes of soil loss. It is judged that efflux, peak discharge, degree of water network and basin shape by the rainfall are important through a study on a causual analysis on soil loss in the whole Oryun Tunnel where is one of occurrence area where a lot of propertywere lost by the record local torrential rainfalls. A localized torrential downpour should be prepared by considering these elements on judgement of a landslide hazard area.

Application and Comparative Analysis of SWAT and HSPF for Developing Turbidity Management in Imha-Andong Watershed (임하.안동 유역에서 탁수 관리를 위한 SWAT 및 모형 적용 및 비교 분석)

  • Son, Kyong-Ho;Lee, Hyi-Suk;Kim, Jeong-Kon;Kim, Ik-Jae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.183-187
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    • 2007
  • 유역에서 토사유실로 인한 고농도 탁수의 발생은 현장조사와 수치모형 해석으로 평가될 수 있다. 하지만 현장조사로는 토사유실을 정량화하기에는 제한적이므로 수치모형의 적용이 요구된다. 토사유사예측을 위한 모형 적용 시, 시공간 분석을 위해서 물리적 기반 분포형 혹은 준 분포형 모형이 선호된다. 본 연구에서는 임하 안동 유역의 유출 및 토사유실 분석을 위하여 SWAT 모형 및 HSPF 모형을 적용하였다. 두 모델의 유량 검 보정은 유역 내에 수위 관측 자료(1999년${\sim}$2006년)를 이용하였으며 유사농도는 2006년 하절기 현장 조사를 통해 보정되었다. SWAT 모형의 일별 유출량 변화에 대한 Nash-Sutcliffe 효율계수는 $0.43{\sim}0.76$의 범위로 전반적으로 측정 유량을 잘 모의 하는 것으로 나타났다. HSPF 모형은 SWAT 모형과 마찬가지로 높은 효율의 일별 유출량 예측성을 보였다. 그러나 두 모델은 첨두 유량을 과소산정 하였다. 두 모형의 그래픽 분석결과 측정 유사 농도를 잘 모의하였고, 특히 HSPF 모형은 강우사상에 따른 시간별 실측값의 경향을 잘 예측하였다. 두 모형의 예측성 비교 시, 유출량은 SWAT 모형이 HSPF 모형이 비해 더 잘 모의하였으며 유사 농도는 HSPF 모형이 더 높은 정확성을 보였다. 본 연구의 결과는 향후 각 소유역별로 탁수를 유발하는 토사 유실량 평가, 유역의 토사유실 저감대책 효과분석 및 저수지 모형과의 연계를 통한 유입된 탁수의 효율적인 관리대책 수립에 이용될 것으로 사료된다.

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GIS-based strategic approach for the estimation of soil erosion (토사유실평가를 위한 GIS기반의 전략적 접근 방법)

  • Lee, Geun-Sang;Koh, Deuk-Koo;Je, Seong-Jin
    • Proceedings of the Korea Contents Association Conference
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    • 2006.11a
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    • pp.413-416
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    • 2006
  • This paper presents a strategic approach to effective soil conservation planning and management. To do this, the soil loss model, Revised Universal Soil Loss Equation (RUSLE) was used to quantify soil erosion in two basins (Andong and Imha basin), which are distinct in terms of sedimentation in the reservoir of each basin. Areas with high soil erosion potential were analyzed on the basis of land surface characteristics handled by geographic information system (GIS), especially dividing the basin into several sub-basins and then examination was emphasized near the river channel (water-pollutant buffering zone), along which human activities are large. Modeling results show the approach suggested herein provides a basis and guideline for choosing prior erosion risk areas to be examined for soil conservation planning and management. Also, this approach is relatively simple and has wide practical applicability.

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Application of RUSLE and MUSLE for Prediction of Soil Loss in Small Mountainous Basin (산지소유역의 토사유실량 예측을 위한 RUSLE와 MUSLE 모형의 적용성 평가)

  • Jung, Yu-Gyeong;Lee, Sang-Won;Lee, Ki-Hwan;Park, Ki-Young;Lee, Heon-Ho
    • Journal of Korean Society of Forest Science
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    • v.103 no.1
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    • pp.98-104
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    • 2014
  • This study aims to predict the amount of soil loss from Mt. Palgong's small basin, by using influence factors derived from related models, including RUSLE and MUSLE models, and verify the validity of the model through a comparative analysis of the predicted values and measured values, and the results are as follows: The amount of soil loss were greatly affected by LS factor. In comparison with the measured value of the amount of total soil loss, the predicted values by the two models (RUSLE and MUSLE), appeared to be higher than those of the measured soil loss. Predicted values by RUSLE were closer to values of measured soil loss than those of MUSLE. However, coefficient of variation of MUSLE were lower, but two model's coefficient of variation in similar partial patterns in the prediction of soil loss. RUSLE and MUSLE, prediction soil loss models, proved to be appropriate for use in small mountainous basin. To improve accuracy of prediction of soil loss models, more effort should be directed to collect more data on rainfall-runoff interaction and continuous studies to find more detailed influence factors to be used in soil loss model such as RUSLE and MUSLE.

Spatial-Temporal Analysis of Flow and Suspended Sediment Characteristics in the Soyang River Basin using SWAT (SWAT 모형을 이용한 소양강 유역의 유출 및 부유사량 시공간 분석)

  • Kim, Jeong-Kon;Son, Kyong-Ho;Kim, Ik-Jae;Park, Bong-Jin
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.435-438
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    • 2008
  • 본 연구에서는 최근 집중호우로 인해 탁수문제가 심각한 소양강 유역의 효과적인 탁수 관리를 위한 SWAT 모형 구축 및 유역의 시공간 토사유실 분석을 실시하였다. 검보정된 SWAT 모형을 이용하여 소유역별 부유사 발생량을 분석한 결과 조항천, 영실천/북천 상류, 인북천 상류 유역(서쪽) 등에서 연간 10톤/ha이 상의 부유사가 발생하여 소양강댐 유역에서의 탁수유발에 직접적인 영향을 미치는 것으로 나타났으며, 어론천, 자운천 등은 연간 6톤/ha이상의 부유사 발생이 예측되었다. 특히 내린천의 최상류 두 유역인 조항천과 주운천 유역에서 발생하는 부유사는 소양강 전체 유역에서 발생하는 부유사의 13.6%를 차지하는 것으로 나타나 이 유역들에 대한 토사유실 저감대책이 필요하다고 판단된다. 한편 유역에서 발생하는 부유사량의 시간별 특성을 알아보기 위하여 댐 유입부에 유입되는 부유사량의 분포를 분석한 결과, 최근 6년간 발생한 부유사량을 연도별로 살펴보면 2003년에 최고 약 1,200,000톤이 댐으로 유입되는 것으로 나타났으며, 2005년도에 최저 40,000톤이 유입된 것으로 분석되었다. 본 연구결과는 향후 각 소유역별로 탁수를 유발하는 토사 유실량 평가, 유역의 토사유실 저감대책 효과분석 및 저수지 모형과의 연계를 통한 유입된 탁수의 효율적인 관리 대책 수립에 이용될 것이다.

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The estimation of GIS-based soil erosion considering up- and down-stream topographic characteristics (상하류 지형특성을 고려한 기반 GIS 토사유실 평가)

  • Lee, Geun-Sang;Park, Jin-Hyeog;Hwang, Eui-Ho;Koh, Deuk-Koo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2006.05a
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    • pp.333-337
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    • 2006
  • The purpose of this paper is to present a strategic approach to selecting prior areas of soil erosion to be examined for effective soil conservation planning and management, in conjunction with remote sensing data and GIS skill for surface characteristics. To do this, two basins are selected: Andong and Imha basin. Geographically one is in the vicinity of the other but turbidity in the main reservoir of each basin is quite different. it is important to clarify general behavior of soil erosion driven by rainfall event for both basins for further understanding and effective soil conservation planning and management. Also, Both basins are divided into several sub-basins and the severity of soil loss is intensively investigated to identify areas with high erosion potential for each sub-basin so that the efficiency of soil conservation program may increase. Especially, this study analyzed soil erodibility factor(K), topographic factor(LS), cover management factor(C) and soil erosion; 3 sub-basins for Andong basin (up-, mid-, downstream) and 6 sub-basins for Imha basin (up-, mid-, and downstream for two tributaries) because Imha basin consists of two tributaries (Banyeon and Yongjeon river). The approach suggested herein will provide a guideline for choosing prior areas to be examined and managed for soil conservation planning.

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Estimation of Soil Loss into Sap-Gyo Reservoir Watershed using GIS and RUSLE (GIS와 RUSLE 기법을 이용한 삽교호유역의 토사 유실량 산정)

  • Kim, Man-Sik;Jung, Seung-Kwon
    • Journal of the Korean GEO-environmental Society
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    • v.3 no.4
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    • pp.19-27
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    • 2002
  • Prediction of exact soil loss yield has as important engineering meaning as prediction of exact flow measurement in a stream. The quantity of soil loss in a stream should be considered in planning and management of water resources and water quality such as design and maintenace of hydraulic structures : dams, weirs and seawalls, channel improvement, channel stabilization, flood control, design and operation of reservoirs and design of harbors. In this study, the soil loss of Sap-gyo reservoir watershed is simulated and estimated by RUSLE model which is generally used in the estimation of soil loss. The parameters of RUSLE model are selected and estimated using slope map, landuse map and soil map by GIS. These parameters are applied to RUSLE's estimating program. And soil loss under probability rainfall in different frequencies are estimated by recent 30 years of rainfall data of Sap-gyo reservoir watershed.

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