• 제목/요약/키워드: Sediment management

검색결과 519건 처리시간 0.023초

저수지의 효율적 관리를 위한 퇴적량 산출 시스템 개발 (Development of Calculation System of the Sediment for Efficient Management of the Reservoir)

  • 박준규;강준묵
    • 한국측량학회지
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    • 제26권3호
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    • pp.285-292
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    • 2008
  • 국가의 저수지를 효율적으로 운영할 수 있는 체계를 확립하고 각종 신기술의 적용을 통한 다양한 관리 방안을 모색하는 것은 향후 대국민 서비스의 질 향상 및 관련 기술들의 활용도 증대를 위해 매우 중요하다. 본 연구에서는 저수지에 장기간 축적되어 수질악화 및 저수용량의 감소를 야기하는 퇴적물 정보를 GPS, 음향측심기, 음파탐사기의 조합을 통해 신속 정확하게 구축하고 이러한 자료들을 2차원 및 3차원 공간정보 처리 기술의 적용을 통하여 객관적이고 효율적으로 퇴적량 산출을 수행할 수 있는 시스템을 설계하였다. 이를 토대로 저수지의 퇴적물 관리를 위해 필요한 여러 기능을 수행할 수 있는 퇴적량 산출 시스템을 개발하였으며 이의 적용을 통하여 건설된 지 오래된 저수지들에 대한 관리 기반 자료를 제시하고자 하였다.

Application of AGNPS Water Quality Computer Simulation Model to a Cattle Grazing Pasture

  • Jeon, Woo-Jeong;Parajuli, P.;Yoo, K.-H.
    • 한국농공학회지
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    • 제45권7호
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    • pp.83-93
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    • 2003
  • This research compared the observed and model predicted results that include; runoff, sediment yield, and nutrient losses from a 2.71 ha cattle grazing pasture field in North Alabama. Application of water quality computer simulation models can inexpensively and quickly assess the impact of pasture management practices on water quality. AGNPS single storm based model was applied to the three pasture species; Bermudagrass, fescue, and Ryegrass. While comparing model predicted results with observed data, it showed that model can reasonably predict the runoff, sediment yield and nutrient losses from the watershed. Over-prediction and under-prediction by the model occurred during very high and low rainfall events, respectively. The study concluded that AGNPS model can be reasonably applied to assess the impacts of pasture management practices and chicken litter application on water quality.

SHIHMEN SEDIMENT PREVENTION DIVERSION TUNNEL PLANNING AND DESIGN

  • Ho-Shong Hou;Ming-Shun Lee;Percy Hou
    • 국제학술발표논문집
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    • The 3th International Conference on Construction Engineering and Project Management
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    • pp.168-172
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    • 2009
  • Shihmen reservoir was started in May 1963. The main purposes of Shihmen reservoir are for agriculture, power supply, flood control and tourism. Shihme Asn dam is an earth dam. Its crown height is 133m above mean sea level, with length 360 m, watershed 763.4 km2, and maximum volume 309 million cms. Turbidity in Shihmen dam was severely affected by typhoons Aere (2004) and Masa (2005). Increased deposition after Aere was 28 million cms. Turbidity at Shihmen Canal Inlet is 3000 NTU (Nephelometry Turbidity Unit). Sediment sluicing strategies for downstream channel are demanded. Therefore, diversionary sediment preventing channel is planned in the upstream of Shihmen reservoir. Finally, turbid flow in tunnel channel is bypassed and diverted its flow down to downstream.

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Behavior of sediment from the dam FERGOUG in road construction

  • Benaissa, Assia;Aloui, Zehour;Ghembaza, Moulay S.;Levacher, Daniel;Sebaibi, Yahia
    • Advances in concrete construction
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    • 제4권1호
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    • pp.15-26
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    • 2016
  • In Algeria, wastes are often stored in such conditions that do not meet standards. Today and more than ever, we really must implement an environmentally management of wastes. Recovery of waste in Algeria has a considerable delay due to the absence of a policy favorable to the development of waste management. But many researchers have shown the possibility to reuse dredged sediments in road construction. Through Europe, recent research works have been already performed on dam sediments. Present study fits into the context of the valorization of dredged sediments from Fergoug dam. They are found in considerable quantities and mainly composed of mineral phases, organic matters and water. The reservoir sedimentation poses problems for the environment and water storage, dredging becomes necessary. Civil engineering is a common way of recycling for such materials. Dredged sediments have not the required mechanical characteristics recommended by the standards as GTR guide (LCPC-SETRA 1992). So as to obtain mechanical performance, dredged sediment can be treated with cement, lime, or replaced materials like quarry sand. An experimental study has been conducted to determine physical and mechanical characteristics of sediments dredged from dam. Then different mixtures of sediment and/or quarry sand with hydraulic binders are proposed for improving the grain size distribution of the mixes. Finally, according these mixtures, different formulations have been tested as alternative materials with dredged sediments.

Model Development for Specific Degradation Using Data Mining and Geospatial Analysis of Erosion and Sedimentation Features

  • Kang, Woochul;Kang, Joongu;Jang, Eunkyung;Julien, Piere Y.
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2020년도 학술발표회
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    • pp.85-85
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    • 2020
  • South Korea experiences few large scale erosion and sedimentation problems, however, there are numerous local sedimentation problems. A reliable and consistent approach to modelling and management for sediment processes are desirable in the country. In this study, field measurements of sediment concentration from 34 alluvial river basins in South Korea were used with the Modified Einstein Procedure (MEP) to determine the total sediment load at the sampling locations. And then the Flow Duration-Sediment Rating Curve (FD-SRC) method was used to estimate the specific degradation for all gauging stations. The specific degradation of most rivers were found to be typically 50-300 tons/㎢·yr. A model tree data mining technique was applied to develop a model for the specific degradation based on various watershed characteristics of each watershed from GIS analysis. The meaningful parameters are: 1) elevation at the middle relative area of the hypsometric curve [m], 2) percentage of wetland and water [%], 3) percentage of urbanized area [%], and 4) Main stream length [km]. The Root Mean Square Error (RMSE) of existing models is in excess of 1,250 tons/㎢·yr and the RMSE of the proposed model with 6 additional validations decreased to 65 tons/㎢·yr. Erosion loss maps from the Revised Universal Soil Loss Equation (RUSLE), satellite images, and aerial photographs were used to delineate the geospatial features affecting erosion and sedimentation. The results of the geospatial analysis clearly shows that the high risk erosion area (hill slopes and construction sites at urbanized area) and sedimentation features (wetlands and agricultural reservoirs). The result of physiographical analysis also indicates that the watershed morphometric characteristic well explain the sediment transport. Sustainable management with the data mining methodologies and geospatial analysis could be helpful to solve various erosion and sedimentation problems under different conditions.

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대청댐 저수지 퇴적물의 용출특성과 수질에 미치는 영향에 관한 연구 (A Study on Release Characteristics of Sediment and its Impacts on Water Quality in Daecheong Dam Reservoir)

  • 이요상;이경식
    • 환경영향평가
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    • 제9권2호
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    • pp.99-107
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    • 2000
  • In order to solve water quality problem of domestic dam reservoir, many projects have been performed in a point of view to restoration of water quality. This study was carried out to evaluate the effect of release from sediment on water quality and release characteristics. Daecheong dam reservoir was investigated for two years, from 1998 to 1999. The nutrient release rates of Daecheong reservoir is less than foreign eutrophic reservoir at anoxic condition. For the evaluation of the effect of nutrient release on water quality, internal and external loading was calculated at Daecheong reservoir. As total phosphorus loading from sediment is calculated 9.3 ton/yr and inflow loading from Daecheong reservoir watershed 118 ton/yr, internal loading shows the portion of 7.88% to external loading. At this study, because sampling point was choosed at the point where much sediment is accumulated, experimental result is more than average release rates. Because Daecheong reservoir shows complete thermal stratification and anoxic condition below 30m from water surface in summer seasons, released phosphorus from sediment can not transfer to epilimnion and eventually resettles. Therefore sediment has insignificant impacts on water quality on Daecheong dam reservoir.

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WEPP 모형을 이용한 밭포장과 밭유역의 토양 유실량 추정 (Applications of WEPP Model to a Plot and a Small Upland Watershed)

  • 강민구;박승우;손정호;강문성
    • 한국농공학회논문집
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    • 제46권1호
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    • pp.87-97
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    • 2004
  • The paper presents the results from the applications of the Water Erosion Prediction Project (WEPP) model to a single plot, and also a small watershed in the Mid Korean Peninsula which is comprised of hillslopes and channels along the water courses. Field monitoring was carried out to obtain total runoff, peak runoff and sediment yield data from research sites. For the plot of 0.63 ha in size, cultivated with com, the relative error of the simulated total runoff, peak runoff rates, and sediment yields using WEPP ranged from -16.6 to 22%, from -15.6 to 6.0%, and from 23.9 to 356.4% compared to the observed data, respectively. The relative errors for the upland watershed of 5.1 ha ranged from -0.7 to 11.1 % for the total runoff, from -6.6 to 35.0 % for the sediment yields. The simulation results seem to justify that WEPP is applicable to the Korean dry croplands if the parameters are correctly defined. The results from WEPP applications showed that the major source areas contributing sediment yield most are downstream parts of the watershed where runoff concentrated. It was suggested that cultural practice be managed in such a way that the soil surface could be fully covered by crop during rainy season to minimize sediment yield. And also, best management practices were recommended based on WEPP simulations.

임하호유역 유사유달공식 개발 (Developing Suspended Sediment Delivery Ratio in the Lake Imha Watershed)

  • 전지홍;최동혁;김재권;김태동
    • 한국물환경학회지
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    • 제33권6호
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    • pp.744-753
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    • 2017
  • The sediment delivery ratio (SDR) is widely used to estimate sediment loads by multiplying soil loss through the Revised Universal Equation (RUSLE). In this study, the SDR equation was developed for the Lake Imha watershed using soil loss calculated by RUSLE and sediment loads by the calibrated Hydrological Simulation. Program Fortran (HSPF). The ratio of watershed relief and channel length ($R_f/L_{ch}$), the ratio of watershed relief and watershed length ($R_f/L_b$), curve number (CN), area (A), and channel slope ($SLP_{ch}$) demonstrated strong correlations with SDR. SDR equations were developed by a combination of subwatershed parameters by referring to the correlation analysis. The area based power functional SDR developed in this study showed significant errors at the point right after entering major tributaries, because SDR was unrealistically reduced when the watershed area increased significantly. The $SLP_{ch}$-based power functional SDR also showed extraordinary values when the channel slope was gradual. The SDR equation that showed the highest value of the coefficient of determination also presented unrealistic changes in the sediment loads within a relatively short river distance. The SDR equation $SDR=0.0003A^{0.198}R_f/L{_w}^{1.167}$ was recommended for application to the Lake Imha watershed. Using this equation, sediment loads at the outlet of the Lake Imha watershed were calculated, and the HSPF parameters related to sediment in the uncalibrated subwatersheds were determined by referring to the sediment loads calculated with the SDR equation.

지반특성을 고려한 토사재해 예측 기법별 위험지 분석 (Analysis of Hazard Areas by Sediment Disaster Prediction Techniques Based on Ground Characteristics)

  • 최원일;최은화;백승철
    • 한국지반환경공학회 논문집
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    • 제18권12호
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    • pp.47-57
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    • 2017
  • 본 연구에서는 도심지 토사재해 예비중점관리 대상지역 중 총 6개 연구지역(춘천, 성남, 세종, 대전, 미량, 부산)을 선정하여 토사재해 위험지 예측 분석을 실시하였다. 분석에 사용된 모델은 현재 토사재해 위험지 예측에 보편적으로 사용되고 있는 기존 모델(SINMAP, TRIGRS)과 본 연구를 통해 개발된 프로그램(LSMAP)을 활용하였으며, 결과 비교분석을 통해 개발모델의 적용성을 검토하였다. 토사재해 위험지 예측에 사용되는 매개변수는 크게 지형특성, 토질특성, 임상특성, 강우특성으로 분류하였으며, 각 모델에 따른 토사재해 위험지 예측 분석 결과 LSMAP 및 TRIGRS에 비해 SINMAP을 이용한 분석은 대체로 위험지를 광범위하게 예측하였다. 이러한 결과는 모델별 적용되는 분석 매개변수의 차이에 의한 것으로 판단된다. 또한 임상특성을 고려한 LSMAP은 TRIGRS 결과와 비교하였을 때 예측 위험지 기준 -0.04~2.72%의 범위 내로 유사한 경향을 보이는 것으로 분석되었다. 이는 산지에 분포하는 임상 정보가 비탈면 안정에 다양한 영향을 미치는 것이라 할 수 있으며, 토사재해 위험지 예측에 중요한 매개변수임을 알 수 있다.

개발사업장에서의 강우시 토사 유출원단위 산정 (Sediment Unit Loads from Developing Areas during Storms)

  • 김철민;이은주;이소영;김영철;김이형
    • 한국습지학회지
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    • 제10권1호
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    • pp.59-68
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    • 2008
  • 각종 개발사업은 사업 전, 사업 중 및 사업 후에 다양한 환경적, 수리학적 및 생태계적 변화를 초래한다. 그 동안의 국내 환경정책은 개발 사업 완료 이후 발생하는 각종 환경적 위해성에 대하여 관리를 하여왔으나, 수질오염총량관리제의 시행과 더불어 개정된 수질 및 수생태계 보전법률에서는 개발 과정 중의 환경적 위해성을 최소화하기 위하여 개발 사업에서의 토사유출 관리를 권고하고 있다. 하지만 현재 국내에는 각종 개발사업장별 토사유출에 대한 기초적인 자료의 해석과 토사유출 원단위 산정의 미흡으로 토사관리에 애로사항을 보이고 있다. 따라서 본 연구에서는 우리나라의 기후학적, 토양학적, 지형적인 특성으로 인해 발생되는 토사유출량에 대하여 환경영향평가대상사업을 중심으로 분석하여 개발사업 면적당 토사유출량에 대한 원단위를 산정하고자 한다. 이러한 연구를 위하여 2000년에서 2005년까지 총 1,036개의 협의된 환경영향평가사업에 대하여 환경영향평가서와 관련 부처(환경부, 농림부, 산림청, 건교부 등)의 자료를 분석하였다. 또한 고랭지 밭의 토사유출량은 고령지 농업에 따른 오염물질 배출 특성조사 최종보고서와 환경부의 소양호 비점오염원 관리지역 관리대책자료를 이용하였다. 이러한 연구를 통한 결과, 각 개발 사업으로 인한 토사유출량에 관한 자료로부터 우선적으로 관리되어야 할 것은 개발 전에는 산지개발, 개발 중에는 체육시설, 개발 후에는 산지개발로 분석되었다.

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