• Title/Summary/Keyword: Imha Watershed

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The Characteristics Analysis for Sediment yield in Imha Reservoir Watershed using SWAT Model (SWAT 모형을 이용한 임하댐 유역 토사 유출 성향 분석 연구)

  • Shin, Hyun-Suk;Kang, Du-Kee;Choi, Young-Don;Kal, Byung-Seok
    • Proceedings of the Korea Water Resources Association Conference
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    • 2007.05a
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    • pp.1920-1924
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    • 2007
  • 본 연구에서는 SWAT 모형의 임하댐 유역에 대한 적용을 통하여 토사 유출 모의와 관련된 주요 매개변수들을 보정하고, 보정된 매개변수를 적용하여 유역에 대한 토사 유출을 분석하였다. 모형 구성 자료로는 임하댐 유역 청송, 영양, 부남, 석보, 일월의 1997년부터 2006년까지의 10년간의 강우자료를 사용하였으며 DEM도와 토지이용도, 토양도를 이용하여 유역 모델을 구축하였다. 유출 보정 자료로는 임하댐 일 유입량과 낙동강 오염총량제 지점인 반변과 용전 지점의 일유출량을 이용하였다. 특히, 임하댐에 유입되는 토사량에 대한 토사 유출 성향을 분석하여 유역의 토사 전달율(Soil Delivery Ratio)과 토사 발생지도(Sediment yield map)를 제작하여 각 소유역에 대한 토사 유출 관리를 위한 기초 자료로서 사용하게 될 것이다.

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Simulation of the Best Management Practice Impacts on Nonpoint Source Pollutant Reduction in Agricultural Area using STEPL WEB Model (STEPL WEB 모형을 이용한 농촌지역 비점오염원저감 대책 모의)

  • Park, Youn Shik;Kum, Dong Hyuk;Jung, Young Hun;Cho, Ja Pil;Lim, Kyoung Jae;Kim, Ki Sung
    • Journal of The Korean Society of Agricultural Engineers
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    • v.56 no.5
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    • pp.21-27
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    • 2014
  • Sediment-laden water is problematic in aquatic ecosystem and for hydraulic structures in a watershed, and agriculture area in a watershed is one of source areas of nonpoint source (NPS), since soil surface typically exposures due to agricultural activities. Especially, severe sediment might flow into stream when agricultural area is located near stream like the Imha-dam watershed. Soil erosion is affected by precipitation, therefore there is a need to consider precipitation characteristics in soil erosion and best management practices (BMPs) simulation. The Web-based Spreadsheet Tool for the Estimation of Pollutant Load (STEPL WEB) allows estimating long-term sediment loads and the impact of best management practices to reduce sediment loads. STEPL WEB and predicted precipitation data by MIROC-ESM model was used to estimate sediment loads and its reduction by filter strip and conversion of agricultural area to forest in the future 30 years. The result indicates that approximately 70 % of agricultural area requires filter strip installation or that approximately 50 % of agricultural area needs to be converted to forest, for 41 % of sediment load reduction.

Study on Precipitation of the Minerals in the Soil of Imha Reservoir Watershed (임하호 유역 토양의 광물학적 침전성 연구)

  • Kim, Yeonjeong;You, Samhwan;Jeong, Hyungjin;Baek, Seungcheol;Lee, Sungmin;Seo, Eulwon
    • Journal of the Korean GEO-environmental Society
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    • v.11 no.4
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    • pp.13-18
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    • 2010
  • The present study was undertaken to investigate the characteristic of suspended matter in soils of Imha-Dam area by turbidity. Soil sampling was conducted at 5 points of Yeongyang (Turbid area) and 2 points of Cheongsong (Clean area). Experimental analysis was conducted using those samples. The pH of water in the soils at turbid area was higher than that of clean area. X-ray diffraction analysis showed that every sample consists in mainly quartz, illite and feldspar before precipitation. After precipitation for 3 days, the content of quartz and feldspar was decreased and the content of illite was increased at turbid area. The soil of Sinheung (St. 6) at clean area was analyzed only illite. SEM-EDS analysis showed the much content of $SiO_2$ as to every sample before precipitation, but $K_2O$, MgO, $Al_2O_3$, CaO and $Fe2O_3$ with illite was increased after precipitation for 3 days as to every sample. Experimental results exhibited that the major mineral of turbid water was illite at turbid area and clean area.

The Variation of Water Temperature and Turbidity of Stream Flows entering Imha Reservoir (임하호 유입지천의 수온과 탁도 변화)

  • Kim, Woo-Gu;Jung, Kwan-Soo;Yi, Yong-Kon
    • Korean Journal of Ecology and Environment
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    • v.39 no.1 s.115
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    • pp.13-20
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    • 2006
  • The changing patterns of water temperature and turbidity in streams entering Imha Reservoir were studied. The turbidity variation near the intake tower in Imha Reservoir was investigated in relation with the variation of water temperature and turbidity in streams. Water temperature was estimated using multi-regression method with air temperature and dew point as independent variables. Peak turbidity was also estimated using non-linear regression method with rainfall intensity as an independent variable. Although more independent variables representing watershed characteristics seem to be needed to increase estimation accuracies, the methodology used in this study can be applied to estimate water temperature and peak turbidity in other streams.

Soil Erosion Risk Assessment by Soil Characteristics and Landuse in the Upper Nakdong River Basin (토양 특성 및 토지이용에 따른 낙동강 상류지역 토양침식위험성 평가)

  • Park, Chan-Won;Sonn, Yeon-Kyu;Hyun, Byung-Keun;Song, Kwan-Cheol;Chun, Hyun-Chung;Cho, Hyun-Jun;Moon, Yong Hee;Yun, Sun-Gang
    • Korean Journal of Soil Science and Fertilizer
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    • v.45 no.6
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    • pp.890-896
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    • 2012
  • This study was conducted to evaluate soil erosion risk with a standard unit watershed in the upper Upper Nakdong River Basin according to soil characteristics and landuse using the spatial soil erosion map. The study area is $3,605.6km^2$, which consists of 2 subbasins, 35 standard unit watersheds (Andong basin 18, Imha basin 17). As a evaluation of soil erosion potential using the spatial soil erosion map, total annual soil loss and soil loss per area estimated $2,013{\times}10^3Mg\;yr^{-1}$ (Andong basin 979, Imha basin 1,034) and $6.1Mg\;ha^{-1}yr^{-1}$ (Andong basin 6.0, Imha basin 5.2), respectively. 54.2% of soil loss was originated from Arable land (Andong basin 49.0%, Imha basin 59.0%), and the area of regions, graded as higher "Moderate" for annual soil loss, was $201.7km^2$ (Andong basin 84.9, Imha basin 116.8). Average soil loss per area of unit watersheds by classification according to soil dominant parent material types ranked "Sedimentary rock group" > "Mixed group" > "Metamorphic rock group" > "Igneous rock group". In conclusion, the results of this study inform that the classification of soil parent material type would be effective for soil erosion analysis and interpretation in the Upper Nakdong River Basin.

Spatial Influences of Flood Controls in Dam Operations (댐의 홍수조절에 대한 공간적 영향 분석)

  • Jung, Yong;Kim, Nam Won
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.38 no.3
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    • pp.407-415
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    • 2018
  • This study analyzed the role of dams for the flood control by the observed and simulated hourly flood discharge data. The study area was the Nakdong river basin with Andong and Imha dams. For the analysis 31 flood events from 1997 to 2010 were selected. In the analysis of the flood reduction rate (FRR) of dam itself, the FRR was not decreased with higher size of floods which is not as we expected. In order to see the trend of flood reduction rate depending on the flood size, flood discharge volume presents it better than peak flood discharge. In the comparison of the flood reduction effects of the two dams, Andong dam has 7% larger flood reduction influence at the Sungju gauging station (SGS) located farthest from the selected watershed. Comparing the ratio of the watershed area based on the covered size of the SGS, the FRR of dam is smaller than the area rate. The impact of FRR of dam showed that the FRR fell below 10% when reaching the size of watershed area corresponding to 8.5 times of the size of watershed area of the dam which is larger than Namhan river basin (7 times).

Nonpoint Source Analysis for the Watershed of Imha Reservoir (임하댐 유역에 대한 비점오염원 해석)

  • Han, Kun-Yeun;Park, Kyung-Ok;Yoon, Young-Sam;Kim, Dong-Il
    • Proceedings of the Korea Water Resources Association Conference
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    • 2006.05a
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    • pp.933-936
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    • 2006
  • 비점오염원은 특정한 시설이나 장소를 나타내기 보다는 농지에 살포된 비료 및 농약, 대기오염물질 강하물, 축사에서의 유출물, 도로상에 쌓인 교통오염물질, 하수관거에서 유출되는 하수 등으로 강우시 빗물과 함께 유출되는 오염물질로 정의되며, 비점오염물질을 발생시키는 곳은 비점오염원으로 규정하고 있다. 비점오염원은 경제활동수준이 증가하고 토지이용이 고도화될수록 수질에 미치는 영향이 커지게 되며, 점오염원의 부하가 줄어들수록 비점오염원에 의한 부하비율은 증가하게 된다. 따라서 비점오염에 대한 체계적인 관리 없이 하천이나 호소 수질을 개선하는 데는 그 한계가 있다. 또한 체계적인 관리 이전에 적절한 비점오염원의 해석이 무엇보다도 중요하므로 본 연구에서는 적절한 비점오염원 모형 검토를 선행하였다. 가용 자료의 존재 여부 및 해석 시 사용하는 방정식 등을 고려하여 선정한 모형은 USDA-ARS(US Department of Agriculture-the Agricultural Research Service)에서 개발된 SWAT 모형으로 본 연구에 이용되었다. SWAT 모형에 이용되는 자료는 크게 유역자료, 강우자료, 기상자료, 검정에 이용되는 유량 및 오염물질 농도로 분류될 수 있다. 본 모형에 이용되는 광범위한 자료를 수집하여 해석을 수행하였다. 비점오염원 해석의 검보정을 위해 점오염원의 영향이 크지 않은 소유역 유출지점을 선정하여 해석하여 비교적 합리적인 결과를 도출하였다. 차후 연구에서 보다 합리적인 해석을 위해 데이터베이스의 재검토가 절실한 것으로 판단된다.

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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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A Study to Develop Monthly Cover Management Factor Database for Monthly Soil Loss Estimation (월단위 토양유실가능추정치를 위한 지표피복인자의 산정 방안 연구)

  • Sung, Yun Soo;Jung, Yunghun;Lim, Kyoung Jae;Kim, Jonggun;Kim, Ki-Sung;Park, Seung Ki;Shin, Min Hwan;Kum, Dong Hyuk;Park, Youn Shik
    • Journal of The Korean Society of Agricultural Engineers
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    • v.58 no.6
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    • pp.23-30
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    • 2016
  • Soil loss is an accompanying phenomenon of hydrologic cycle in watersheds. Both rainfall drops and runoff lead to soil particle detachment, the detached soil particles are transported into streams by runoff. Here, a sediment-laden water problem can be issued if soil particles are severely detached and transported into stream in the watershed. There is a need to estimate or simulate soil erosion in watersheds so that an adequate plan to manage soil erosion can be established. Universal Soil Loss Equation (USLE), therefore, was developed and modified by many researchers for their watersheds, moreover the simple model, USLE, has been employed in many hydrologic models for soil erosion simulations. While the USLE has been applied even in South-Korea, the model is often regarded as being limited in applications for the watersheds in South-Korea since monthly conditions against soil erosion on soil surface are not capable to represent. Thus, the monthly USLE factors against soil erosion, soil erodibility and crop management factors, were established for four major watersheds, which are Daecheong-dam, Soyang-dam, Juam-dam, and Imha-dam watersheds. The monthly factors were established by recent fifteen years from 2000 to 2015. Five crops were selected for the monthly crop management factor establishments. Soil loss estimations with the modified factors were compared to conventional approach that is average annual estimations. The differences ranged from 9.3 % (Juam-dam watershed) to 28.1 % (Daecheong-dam watershed), since the conventional approaches were not capable of seasonally and regionally different conditions.

우리나라 인공호의 부영양화 평가 및 예측에 관한 연구

  • 김재윤
    • Journal of Environmental Science International
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    • v.7 no.4
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    • pp.441-450
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    • 1998
  • The purpose of this study is to evaluate and to predict of eutrophication in lakes by using VollenweiderGECD model and total phosphorus concentration and inflow rate which were measurded in 1993-1996. The results of study was as follows. The annual total phosphorus loading from the watershed was calculated to be 181-195tP /yr at lake Soyang, 591-680tP/yr at lake Chungju, 420-466tP/yr at lake Taechong, 229-278tP/yr at lake Andong, 103-106tP/yr at lake Hapchon, 57-59tP/yr at lake Imha, 194-244tP/yr at lake Namgang, 8386tP /yr at lake Chuam, 99-109tP /yr at lake Somjin. These are discharged, for the most parts, from population and ftshfarm facility. TP loading on the surface area at lake Soyang was 3.0lgP/$m^2$/yr, 2.82gP/$m^2$/yr, 2.84gP/$m^2$/yr, 3. 03gP/$m^2$/yr, at lake Chungju 7.91gP/$m^2$/yr, 6.87gP/$m^2$/yr, 7.38gP/$m^2$/yr, 7.l8gP/$m^2$/yr, at lake Taechong 6.7lgP/$m^2$/yr, 7.25gP/$m^2$/yr, 7.24gP/$m^2$/yr, 6.53gP/$m^2$/yr and TP loading on the surface area of Nakdong river basin, that is, lake Andong, Imha, Hapchon and Namgang were 5.39gP/$m^2$/yr, 4.47gP/$m^2$/yr, 4. 56gP/$m^2$/yr, 4.45gP/$m^2$/yr and 2.20gP/$m^2$/yr, 2.23gP/$m^2$/yr, 2.24gP/$m^2$/yr, 2.l7gP/$m^2$/yr and 4.50gP/$m^2$/ yr, 4.50gP/$m^2$/yr, 4.54gP/$m^2$/yr, 4.43gP/$m^2$/yr and 8.25gP/$m^2$/yr, 8.48gP/$m^2$/yr, 8.48gP/$m^2$/yr, 10. 39gP/$m^2$/yr respectively. Also those of lake Chuam was 2.51gP/$m^2$/yr, 2.61gP/$m^2$/yr, 2.52gP/$m^2$/yr, 2. 54gP/$m^2$/yr and TP loading on the surface area at lake Somjin was analysed 4.09gP/$m^2$/yr, 4.l0gP/$m^2$/yr, 3.98gP/$m^2$/yr,3.73gP/$m^2$/yr. The tropic states of nine lakes can be assessed as eutrophy because phosphorus loading exceeds the critical phosphorus loading by Vollenwelder-GECD model.

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