• 제목/요약/키워드: Sediment control

검색결과 365건 처리시간 0.04초

사방댐 설계방법의 문제점과 그 대책 (The Points of Issue and Countermeasure for Sediment Control Dam Designs)

  • 김운형;송병웅;김범석;김주한;이경희
    • 한국지반공학회:학술대회논문집
    • /
    • 한국지반공학회 2009년도 세계 도시지반공학 심포지엄
    • /
    • pp.1057-1064
    • /
    • 2009
  • Since the global warming causes debris flow damage has increased in Kangwon Area, Sediment control dam have increasingly founded to protect the damage. In spite of the realities design methods are well not established to determine type of the dam, design parameters and maintenance. Through comparison for design methods to sediment control dam in Korea, it raised some points to improve to correspond with realities. In addition, it pointed that some issues for the sediment control dams in Kangwon Area. Those are shown that unclear positions of the dams, unremoval of sediment, occurrence of seepage under the dams and uninstallation of roads to remove sediment. In addition, the countermeasure for the issues are proposed.

  • PDF

소유역의 효과적인 침식조절을 위한 유사평가 툴(SATEEC)의 개발 (Development of Sediment Assessment Tool for Effective Erosion Control (SATEEC) in Small Scale Watershed)

  • Kyoung-Jae Lim;Joong-Dae Choi;Ki-Sung Kim;Myung Sagong;Bernard A. Engel
    • 한국농공학회지
    • /
    • 제45권5호
    • /
    • pp.85-96
    • /
    • 2003
  • The Revised Universal Soil Loss Equation (RUSLE) has been used in over 100 countries to estimate potential long-term soil erosion from the field. However, the RUSLE estimated soil erosion cannot be used to estimate the sediment delivered to the stream networks. For an effective erosion control, it is necessary to compute sediment delivery ratio (SDR) for watershed and sediment yield at watershed outlet. Thus, the Sediment Assessment Tool for Effective Erosion Control (SATEEC) was developed in this study to compute the sediment yield at any point in the watershed. To compute spatially distributed sediment yield map, the RUSLE was first integrated with the ArcView GIS and three area based sediment delivery ratio methods were incorporated in the SATEEC. The SATEEC was applied to the Bangdong watershed, Chuncheon, Gangwon Province to demonstrate how it can be used to estimate soil loss and sediment yield for a watershed. The sediment yield using USDA SDR method is 8,544 ton/year and 4,949 ton/year with the method by Boyce. Thus, use of watershed specific SDR is highly recommended when comparing the estimated sediment yield with the measured sediment data. The SATEEC was applied with hypothetical cropping scenario and it was found that the SATEEC can be used to assess the impacts of different management on the sediment delivered to the stream networks and to find the sediment source areas for a reach of interest. The SATEEC is an efficient tool to find the best erosion control practices with its easy-to-use interface.

초생대를 이용한 산지유역 토사유출 저감에 관한 연구 (Study on Sediment Runoff Reduction using Vegetative Filter Strips in a Mountainous Watershed)

  • 손광익;김형준;임경재;정영훈
    • 한국물환경학회지
    • /
    • 제31권4호
    • /
    • pp.407-417
    • /
    • 2015
  • Soil loss is one of the significant disasters which have threatened human community and ecosystem. Particularly, Korea has high vulnerability of soil loss because rainfall is concentrated during summer and mountainous regions take more than 70% of total land resources. Accordingly, the sediment control management plan are required to prevent the loss of soil resources and to improve water quality in the receiving waterbodies. In this regard, the objectives of this study are 1) to quantify the effect of the Vegetative Filter Strip (VFS) on sediment runoff reduction and 2) to analyze the relationship of rainfall intensity and sediment runoff. For this, SATEEC and VFSMOD were used to estimate sediment runoff according to rainfall intensity and to quantify the effect of VFS on sediment runoff reduction, respectively. In this study, the VFS has higher impact on sediment reduction for lower maximum rainfall intensity, which means that the maximum rainfall intensity is one of significant factors to control sediment runoff. Also, the sediment with VFS considered was highly correlated with maximum rainfall intensity. For these results, this study will contribute to extend the applicability of VFS in establishing eco-friendly sediment control plans.

침사구를 이용한 고랭지 유사방지 대책 (Use of Sediment Trap to Control Sediment from Alpine Fields)

  • 최중대;최예환;심혁호
    • 한국농공학회:학술대회논문집
    • /
    • 한국농공학회 2003년도 학술발표논문집
    • /
    • pp.571-574
    • /
    • 2003
  • Three sediment traps were placed at the toe of sloping fields in the alpine belt of Korea and sediment removal efficiency was estimated. Soil texture of the site was sandy soil and 5 runoff and sediment events were observed during 2002. Sediment was largely affected by both the amount and intensity of rainfall. Especially, rainfall intensity seemed to have profound effect on sediment yield from sloping sandy fields. Sediment removal of the sediments ranged widely from 266 kg/ha to 16,974 kg/ha depending on tillage method, slope and slope length, and amount and intensity of rainfall. Sediment removal efficiency was estimated to be more than 98.8%. It was suggested that rational combination of sediment trap and drainage channel might well contribute to control sediment discharge from alpine sloping fields.

  • PDF

산림의 토사유출 방지기능에 관한 연구 (Study on Quantifying Erosion Control Function of Forest)

  • 윤호중;이창우;정용호
    • 한국환경복원기술학회지
    • /
    • 제10권1호
    • /
    • pp.36-43
    • /
    • 2007
  • This study was carried out to know how erosion control function of forests varies as forests develop in watersheds. The erosion control function among the forest welfare functions can be estimated by comparing sediment yield in stocked with non-stocked area. Sediment yield of reservoirs in stocked area were collected from farmland improvement associations. The sediment yields in non-stocked area were using USLE (Universal Soil Loss Equation) in the same reservoirs. Forests' erosion control function estimated by differences of the sediment yield between stocked and non-stocked area was static model because of no consideration on forest aging. Dynamic model was developed to consider a forest stand age. The model comprises the relationship between average forest age in watershed and sediment yield. The amount of sediment yield was different depending mother rocks. It decreased exponentially according to the forest's grow up. In case of igneous rock, the volume of sediment yield $Y_{ig}=1.4431e\;^{0.023x}$(x=average forest age), metamorphic rock $Y_{me}=4.7115e\;^{0.0694x}$, and sedimentary rock $Y_{se}=1.2808e\;^{0.028x}$.

Application of GeoWEPP to determine the annual average sediment yield of erosion control dams in Korea

  • Rhee, Hakjun;Seo, Junpyo
    • 농업과학연구
    • /
    • 제47권4호
    • /
    • pp.803-814
    • /
    • 2020
  • Managing erosion control dams requires the annual average sediment yield to determine their storage capacity and time to full sediment-fill and dredging. The GeoWEPP (Geo-spatial interface for Water Erosion Prediction Project) model can predict the annual average sediment yield from various land uses and vegetation covers at a watershed scale. This study assessed the GeoWEPP to determine the annual average sediment yield for managing erosion control dams by applying it to five erosion control dams and comparing the results with field observations using ground-based LiDAR (light detection and ranging). The modeling results showed some differences with the observed sediment yields. Therefore, GeoWEPP is not recommended to determine the annual average sediment yield for erosion control dams. Moreover, when using the GeoWEPP, the following is recommended :1) use the US WEPP climate files with similar latitude, elevation and precipitation modified with monthly average climate data in Korea and 2) use soil files based on forest soil maps in Korea. These methods resulted in GeoWEPP predictions and field observations of 0 and 63.3 Mg·yr-1 for the Gangneung, 142.3 and 331.2 Mg·yr-1 for the Bonghwa landslide, 102.0 and 107.8 Mg·yr-1 for the Bonghwa control, 294.7 and 115.0 Mg·yr-1 for the Chilgok forest fire, and 0 and 15.0 Mg·yr-1 for the Chilgok control watersheds. Application of the GeoWEPP in Korea requires 1) building a climate database fit for the WEPP using the meteorological data from Korea and 2) performing further studies on soil and streamside erosion to determine accurate parameter values for Korea.

산림유역의 만사 사방댐에 의한 토사유출 조절 효과 추정 (Estimation of Sediment Discharge Controlled by Sediment-filled Check-dam in a Forested Catchment)

  • 서정일;전근우;송동근
    • 한국산림과학회지
    • /
    • 제105권3호
    • /
    • pp.321-329
    • /
    • 2016
  • 이 연구에서는 2006년 집중호우 시 산사태 및 토석류가 발생한 강원도 인제군의 기룡산 유역을 대상으로 사면붕괴 및 계상변동을 추정하여 만사 상태에 도달한 불투과형 사방댐이 토사유출 조절에 미치는 영향을 정량적으로 해석하고, 이를 토대로 사방댐의 설계 및 준설기준을 고도화하는 데에 필요한 새로운 인자를 제안하였다. 일반적으로 사방댐은 계획평형기울기 구간과 계획홍수기울기 구간에서 각각 토사유출의 억제와 조절 기능을 발휘하고 있다. 연구대상유역에 시공된 불투과형 사방댐은 계획억제토사량에 해당하는 저사량이 $2,111m^3$로 설계되었지만, 2006년 집중호우로 인한 산지교란 발생 시에는 해당 사방댐 직상부로부터 250 m의 계류구간에 걸쳐 $3,996m^3$의 유출토사를 조절한 것으로 관측되었다. 결과적으로 해당 사방댐은 유출토사 억제를 위한 계획억제토사량보다 큰 규모의 계획조절토사량을 나타내어 만사된 이후에도 유출토사의 조절이라는 사방댐의 기능을 발휘하고 있었다. 이와 같이 사방댐의 토사유출 조절기능은 토사유출 억제기능과 구분하여 평가하여야 하지만, 현재 우리나라에서는 현지에서 유역 특성을 실측한 자료를 기반으로 한 계획억제토사량 또는 계획조절토사량을 사방댐의 설계 및 준설기준 인자로서 고려하고 있지 않다. 따라서 합리적인 사방댐의 설계 및 유지관리 기준을 마련하기 위해서는 사방댐의 토사유출 억제기능과 조절기능을 정량적으로 해석한 현장자료가 축적되어야 하며, 이는 우리의 사방기술이 보다 객관적이고도 체계적인 면모를 갖춘 과학적 기술로 발전할 수 있는 방안일 것이다.

SATEEC 시스템을 이용한 면적/경사도에 의한 유달률 산정 방법에 따른 유사량 분석 (Analysis of Sediment Yields at Watershed Scale using Area/Slope-Based Sediment Delivery Ratio in SATEEC)

  • 박윤식;김종건;김남원;김기성;최중대;임경재
    • 한국물환경학회지
    • /
    • 제23권5호
    • /
    • pp.650-658
    • /
    • 2007
  • The Universal Soil Loss Equation (USLE) has been used in over 100 countries to estimate potential long-term soil erosion from the field. However, the USLE estimated soil erosion cannot be used to estimate the sediment delivered to the stream networks. For an effective erosion control, it is necessary to compute sediment delivery ratio (SDR) for watershed and sediment yield at watershed outlet. Thus, the Sediment Assessment Tool for Effective Erosion Control (SATEEC) was developed to compute the sediment yield at any point in watershed. In this study, the SATEEC was applied to the Sudong watershed, Chuncheon Gangwon to compare the sediment yield using area-based sediment delivery ratio (SDRA) and slope-based sediment delivery ratio (SDRS) at watershed outlet. The sediment yield using the SDRA by Vanoni, SYA and the sediment yield using the SDRS by Willams and Berndt, SYS were compared for the same sized watersheds. The 19 subwatersheds was 2.19 ha in size, the soil loss and sediment yield were estimated for each subwatershed. Average slope of main stream was about 0.86~3.17%. Soil loss and sediment yield using SDRA and SDRS were distinguished depending on topography, especially in steep and flat areas. The SDRA for all subwatersheds was 0.762, however the SDRS were estimated in the range of 0.553~0.999. The difference between SYA and SYS was -79.74~27.45%. Thus site specific slope-based SDR is more effective in sediment yield estimation than area-based SDR. However it is recommended that watershed characteristic need to be considered in estimating yield behaviors.

Nutrient dynamics study of overlying water affected by peroxide-treated sediment

  • Haque, Niamul;Kwon, Sung-Hyun
    • Journal of Ecology and Environment
    • /
    • 제41권9호
    • /
    • pp.235-245
    • /
    • 2017
  • Background: Loading of excess nutrient via bioremediation of polluted sediment to overlying water could trigger anoxia and eutrophication in coastal area. The aim of this research was to understand the changes of overlying water features such as dissolved oxygen (DO); pH; oxidation reduction potential (ORP); $chlorophyll-{\alpha}$ ($Chl-{\alpha}$); and nitrogen nutrients ammonia ($N-NH_4{^+}$), nitrate ($N-NO_3{^-}$), and nitrite ($N-NO_2^-$) when the sediment was not treated (control) and treated by calcium peroxide for 5 weeks. Methods: The water samples were analyzed for measuring physical and chemical properties along with the sediment analyzed by polymerase chain reaction (PCR) including denaturing gradient gel electrophoresis (DGGE) for identifying the phylogenetic affiliation of microbial communities. Results: Results showed that due to the addition of calcium peroxide in sediment, the overlying water exposed the rise of dissolve oxygen, pH, and ORP than control. Among the nitrogen nutrients, ammonia inhibition was higher in calcium peroxide treatment than control but in case of nitrate inhibition, it was reversed than control. $Chlorophyll-{\alpha}$ was declined in treatment column water by 30% where it was 20% in control column water. Actibacter and Salegentibacter group were detectable in the calcium-peroxide-treated sediment; in contrary, no detectable community ware found in control sediment. Both phylogenetic groups are closely related to marine microflora. Conclusions: This study emphasizes the importance of calcium peroxide as an oxygen release material. Interaction with peroxide proved to be enhancing the formation of microbial community that are beneficial for biodegradation and spontaneity of nutrient attenuation into overlying water.

효과적인 토양유실 방지대책 수립을 위한 유사평가툴 (Enhanced Sediment Assessment Tool for Effective Erosion Control)

  • 임경재;;최예환;최중대;김기성;신용철;허성구;류창원
    • 한국농공학회:학술대회논문집
    • /
    • 한국농공학회 2005년도 학술발표논문집
    • /
    • pp.632-636
    • /
    • 2005
  • Accelerated soil erosion is a worldwide problem because of its economic and environmental impacts. To effectively estimate soil erosion and to establish soil erosion management plans, many computer models have been developed and used. The Revised Universal Soil Loss Equation (RUSLE) has been used in many countries, and input parameter data for RUSLE have been well established over the years. However, the RUSLE cannot be used to estimate the sediment yield for a watershed. Thus, the GIS-based Sediment Assessment Tool for Effective Erosion Control (SATEEC) was developed to estimate soil loss and sediment yield for any location within a watershed using the RUSLE and a spatially distributed sediment delivery ratio. SATEEC was enhanced in this study by developing new modules to:1) simulate the effects of sediment retention basins on the receiving water bodies, 2) prepare input parameters for the Web-based sediment decision support system using a GIS interface. This easy-to-operate SATEEC system can be used to identify areas vulnerable to soil loss and to develop efficient soil erosion management plans.

  • PDF