• 제목/요약/키워드: Off-stream Reservoir

검색결과 10건 처리시간 0.023초

천변저류지 홍수저감능력평가를 위한 하도-저류지연계모형의 개발 (Development of River-Reservoir Integrated Model for Flood Reduction Capacity Analysis of Off-Stream Reservoir)

  • 최성열;안태진
    • 한국방재학회 논문집
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    • 제11권3호
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    • pp.165-174
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    • 2011
  • 본 연구의 목적은 하천의 홍수저감을 목적으로 설치하는 하천변 저류지의 홍수저감특성을 분석하기 위한 모형의 개발에 있다. 하천에 홍수가 발생하였을 경우에 하천변 저류지는 하천의 홍수첨두 일부를 분담하는 기능을 갖으며, 이는 제방의 일부를 낮춘 월류제를 통한 범람으로 가능하게 되며, 또한 범람된 물은 저류지 내에서 저류 하게 된다. 이러한 저류지가 갖는 홍수저감특성은 하천 홍수위, 월류제 제원(높이, 위치, 길이 등), 저류지의 수리거동 등에 의해 좌우되게 되므로, 본 연구에서는 이러한 일련의 물의 거동을 재현하기 위해서 1차원 하천부정류 모델, 월류제 상의 월류량 산정 모델 및 제내지 홍수범람 모델을 연계한 통합모형을 개발 하였다. 이상에서 개발된 연계 모형을 가상하도 및 실제하도에 적용하여 월류제가 갖는 기하적 특성이 홍수경감에 미치는 영향에 대해 분석하였으며, 이를 통해 향후 개선하여야 할 시사점에 대해 기술하였다.

RCP 8.5 기후변화 시나리오를 고려한 농업용 저수지군 운영에 따른 미래 하천유량 평가 (Evaluating Future Stream Flow by Operation of Agricultural Reservoir Group considering the RCP 8.5 Climate Change Scenario)

  • 이재남;노재경
    • 한국농공학회논문집
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    • 제57권5호
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    • pp.113-122
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    • 2015
  • This study aims to evaluate future stream flow by the operation of agricultural reservoir group at the upper stream of the Miho River. Four agricultural reservoirs with storage capacities greater than one million cubic meters within the watershed were selected, and the RCP 8.5 climate change scenario was applied to simulate reservoir water storage and stream flow assuming that there are no changes in greenhouse gas reduction. Reservoir operation scenarios were classified into four types depending on the supply of instream flow, and the water supply reliability of each reservoir in terms of water supply under different reservoir operation scenarios was analyzed. In addition, flow duration at the watershed outlet was evaluated. The results showed that the overall run-off ratio of the upper stream watershed of the Miho River will decrease in the future. The future water supply reliability of the reservoirs decreased even when they did not supply instream flow during their operation. It would also be difficult to supply instream flow during non-irrigation periods or throughout the year (January-December); however, operating the reservoir based on the operating rule curve should improve the water supply reliability. In particular, when instream flow was not supplied, high flow increased, and when it was supplied, abundant flow, ordinary flow, and low flow increased. Drought flow increased when instream flow was supplied throughout the year. Therefore, the operation of the agricultural reservoirs in accordance with the operating rule curve is expected to increase stream flow by controlling the water supply to cope with climate change.

농촌 중.소 하천 및 저수지 퇴적물의 오염현황 (A Study on the Degree of Pollution of Stream and Reservoir Sediments in Rural Area)

  • 장병욱;우철웅;김성필
    • 농촌계획
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    • 제9권2호
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    • pp.1-6
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    • 2003
  • This study was performed to investigate the degree of pollution of sediments of stream and reservoir in rural area. A series of field investigations were carried out for Kyongki-do area and chemical analysis were performed for sediment samples. It was found that some samples were heavily polluted with phenol and TPH and gave off a malodor. Soil Pollution Scores(SPSs) was determined for sediment samples. Some samples were classified to Soil Pollution Class(SPC) 2 and 3. For recycling and disposal of dredged sediments from stream and reservoirs, these polluted sediments should be carefully considered. In the environmental improvement operations of rural area, the degree of pollution of sediments of stream and reservoir are carefully investigated and suitable counterplan must be established.

농촌 중.소 하천 및 저수지 퇴적물의 오염현황 (A study on the degree of pollution of stream and reservoir sediments in rural area)

  • 김성필;장병욱;우철웅;차경섭
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2001년도 학술발표회 발표논문집
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    • pp.366-369
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    • 2001
  • This study was performed to investigate the degree of pollution of sediments of stream and reservoir in rural area. A series of site investigations were carried out for Kyongki-do area and chemical analysis were performed for sediment samples. It was found that some samples were heavily polluted with phenol and TPH and gave off a malodor. Soil Pollution Scores(SPSs) was determined for sediment samples. Some samples were classified to Soil Pollution Class(SPC) 2 and 3. For recycling and disposal of dredged sediments from stream and reservoirs, these polluted sediments should be carefully considered. A further study on the criterion of recycling/disposal of sediments and development of new Soil Pollution Index compatible for stream sediments is necessary in future.

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淸州取水源의 窒素 및 燐濃度에 관한 調査硏究 (A Study on Nitrogen and Phosphorus Concentration in Chung Ju Intake Reservoir)

  • Lee, Yeoung Shin;Lee, Hong Keun
    • 한국환경보건학회지
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    • 제12권2호
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    • pp.27-37
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    • 1986
  • This study was carried out to investigate inflow stream of Chungju intake reservoir and in catchment area, run-off loading amount, distribution of Nitrogen and phosphorus, N/P ratio, correlationship between T-N and chlorophyll a, correlationship between T-P and chlorophyll a, and study of trophic state. Field survey was carried out from June to August, 1985, for the purpose of finding out the nitrogen and phosphorus concentration in Chungju intake reservoir.

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대청호 유속에 따른 조류이동 영향 (The Relationship between Algae Transport and Current in the Daecheong Reservoir)

  • 유순주;황종연;채민희;김상용
    • 한국물환경학회지
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    • 제22권5호
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    • pp.887-894
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    • 2006
  • Water quality in the Daecheong reservoir has been deteriorated by algal bloom every year. Algal bloom is propagated from eutrophicated tributary into the main body of the reservoir during the wet season. Nutrients from diffuse sources trigger the propagation of the algal bloom. This study is aimed to analyze relationship between the water current by the simulation and algae transport from the main body in the Daecheong reservoir including tributary where algal bloom has occurred seriously every year. Water quality model CE-QUAL-W2 was applied to analyze water movement in draught season (2001) and flooding season (2003). The result of simulation corresponded with the observed water elevation level, 63~80 m and showed stratification of the Daecheong reservoir. In the draught season, as velocity and direction off low in the reservoir was estimated to affect algae transport including nutrient supply from small tributary, algal blooms occurred in the stagnate zone of middle stream of the reservoir. On the other hand, in the flooding season, it was resulted in nutrient transport from upstream of main reservoir and nutrients were delivered up to downstream by fast water velocity. In result, algal blooms occurred in stagnate zone of reservoir downstream as the current of downstream was retarded according to dam outflow control.

호소 및 하천의 오염 저질토 sampling 방법 및 처리방안 연구

  • 최동호;배우근;최형주
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 총회 및 춘계학술발표회
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    • pp.115-119
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    • 2003
  • Pollutants from industry, mining, agriculture, and other sources have contaminated sediments in many surface water bodies. Sediment contamination poses a severe threat to human health and environment because many toxic contaminants that are barely detectable in the water body can accumulate in sediment at much higher levels, the purpose of this study was to make convenient sampling method and optimal treatment of sediment for water quality improvement in reservoir or stream based on an evaluation of degree of contamination. Results for analysis of S-reservoir sediments were observed that copper concentration of almost areas were higher than the regulation of soil pollution (50 mg/1) for the riverbed. S-stream sediments were observed that copper, arsenic and TPH concentration of almost areas were exceeded soil pollution concerning levels for factorial areas. We used Remscreen(version. 1.0) program which is contaminated soil recovery program to select optimal treatment method of contaminant sediments. The result was shown in the order of Thermal Calcination > Excavation, Retrieval and Off-site Disposal(comparative less then contaminant) > Low Temperature Thermal Desorption + Solidification/Stabilization.

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순환형 농업용수관리를 위한 농업용 저수지의 비관개기 양수저류 추정 (Water Balance Analysis of Pumped-Storage Reservoir during Non-Irrigation Period for Recurrent Irrigation Water Management)

  • 방나경;남원호;신지현;김한중;강구;백승출;이광야
    • 한국농공학회논문집
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    • 제62권4호
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    • pp.1-12
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    • 2020
  • The extreme 2017 spring drought affected a large portion of South Korea in the Southern Gyeonggi-do and Chungcheongnam-do districts. This drought event was one of the climatologically driest spring seasons over the 1961-2016 period of record. It was characterized by exceptionally low reservoir water levels, with the average water level being 36% lower over most of western South Korea. In this study, we consider drought response methods to alleviate the shortage of agricultural water in times of drought. It could be to store water from a stream into a reservoir. There is a cyclical method for reusing water supplied from a reservoir into streams through drainage. We intended to present a decision-making plan for water supply based on the calculation of the quantity of water supply and leakage. We compared the rainfall-runoff equation with the TANK model, which is a long-term run-off model. Estimations of reservoir inflow during non-irrigation seasons applied to the Madun, Daesa, and Pungjeon reservoirs. We applied the run-off flow to the last 30 years of rainfall data to estimate reservoir storage. We calculated the available water in the river during the non-irrigation season. The daily average inflow from 2003 to 2018 was calculated from October to April. Simulation results show that an average of 67,000 tons of water is obtained during the non-irrigation season. The report shows that about 53,000 tons of water are available except during the winter season from December to February. The Madun Reservoir began in early October with a 10 percent storage rate. In the starting ratio, a simulated rate of 4 K, 6 K, and 8 K tons is predicted to be 44%, 50%, and 60%. We can estimate the amount of water needed and the timing of water pump operations during the non-irrigation season that focuses on fresh water reservoirs and improve decision making for efficient water supplies.

이원천 수질에 미치는 삼림식생과 토양환경요인 (A Study on the Forest Vegetation and Soil-environmental Factors Affecting the Water Quality of Iwonch on Stream)

  • 방제용;양금철
    • 환경생물
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    • 제27권2호
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    • pp.183-190
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    • 2009
  • 식생요인, 토양환경요인이 수질에 미치는 영향을 연구하고자 1993~1997년의 자료를 토대로 2003~2007년에 걸쳐 조사를 실시하였다. 조사유역을 11개 소집수역으로 세분하고 하천 유역의 오염원 동태, 식생요인과 하천수질, 토양요인과 하천수질의 상관성을 생태학적 관점에서 규명하고자 조사를 실시하였다. 식생형은 총 10개 type으로 구분되었으며 식생형별 수질과의 상관은 특히, 굴참나무군락에서 용존산소(DO)와 5% 수준(r=0.98)에서, 일본잎갈나무식재림과 T-P는 1% 수준(r=1)에서 유의한 상관을 나타내고 있었다. 또한, 삼림면적과 총인($Y_{T-P}$=-0.0017X+0.2215, r=0.16), COD는 $Y_{COD}$=-0.0395X+8.5051 (r=0.47)는 역의 상관을 BOD는 $Y_{BOD}$=0.0098X+3.0381 (r=0.19)로 거의 상관이 없는 것으로 나타났다. 조사지역의 토양형은 서쪽의 토양은 단순하지만 동쪽은 암쇄토를 비롯하여 적황색토, 퇴적토 등 매우 복잡한 양상을 띠고 있다. pH는 5.4~6.0의 범위로 나타났는데 전국 토양 pH의 평균치인 5.4~6.9와 거의 비슷하였다. 그러나 TS는 75.8~80.2%, VS는 3.80~5.80%의 범위로 전국의 평균치보다 훨씬 높았다. 표토의 깊이와 유출량과는 $Y_{run-off}$=-1.0088X+35.378 (r=0.68)로 부(-)의 상관이 있는데 상류지역에서는 상관이 낮고, 하류 지역으로 갈수록 높은 상관을 나타내고 있다. 이는 상류지역의 경우 평균경사가 높아 표토의 깊이에 관계없이 유출량이 증가하기 때문으로 상류지역보다는 하류지역의 표토 관리를 철저히 해야 유출량이 일정히 유지될 것으로 보인다. 또한, 토양환경요인과 수질항목 간의 유의성은 토양 pH와 하천수질의 pH 간에 유의한 차이가 있는 것으로 확인되었다.

도시 산림습지 내 양서류 서식처 조성방안 연구 (Planning for Amphibians Habitats in Urban Forest Wetlands, Korea)

  • 허명진;한봉호;곽정인
    • 한국환경복원기술학회지
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    • 제20권6호
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    • pp.1-19
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    • 2017
  • This study set out to identify problems with amphibian habitation by the wetland types and improve their habitation environment in urban forest wetlands, thus creating a habitat for amphibians. Study site include forest swamps in Jatjul Park as well as Yeoji neighborhood Park in Guro-gu, and in Choansan neighborhood Park in Dobong-gu. The forest swamp in Jatjul Park gets its water from Mt. Maebong and it is a former escalated farmland-turned wetland. The swamp area is $2,500m^2$, a forest zone and a landscape planting site are 83.27% and 6.70% each. Target species Seoul pond frogs are inseparable from rice fields because they live in a short radius of and lay eggs in or near paddy fields, and Rana nigromaculata have similarities with Rana plancyi chosenica in choosing their habitats. There was need for paths that would lead to other paths so amphibians would spread to other parts of the forest and for measures to secure open water. Modifying a variety of routes for water, human and animals along with building a buffer to keep the core habitation zones were required. The forest swamp in Yeonji neighborhood Park used to be a water reservoir on the foot of Mt. Gunji. The swamp area is $1,980m^2$, a forest zone and farmland account for 80.61% and 4.88% each. Non-point pollutants from upstream along run into the subject forest marsh, bare ground on the around swamp and steep stone embankments obstructed amphibians. Target species was Bufo gargarizans that live in forests and edges of hills and spawn in deep water. The forest swamp in Choansan neighborhood Park gets its water from Mt. Choan and it is close to its water source that it is a mountain stream forest wetland. The basin and the swamp are $35,240m^2$ and $250m^2$ in size respectively. A forest zone accounts for 90.20%, high stone embankments laid in refurbishing the valley obstruct amphibians and there is water shortage in times of droughts. Target species were Rana coreana, Rana dybowskii and Hynobius leechii that live in mountain valleys, streams and wetlands and lay eggs in forest marshes and rocks in valleys. Looking into the three swamps of amphibian habitation, I came to conclusions that those wetlands were suitable for their amphibians but man-made facilities blocked their corridors leading to other corridors and even killed off target species in some parts of those swamps by destroying those parts. Amphibians live in water, on ground and underground at different stages of life. Hence, we should take this fact into consideration when planning their habitats and design core habitation zones, buffers zone and use zones accordingly. Buffer zones ought to be between core habitation zones and surrounding trees. Aiming at protecting core habitation zones, buffers should be in harmony with habitation zones. Use zones should be minimized in size and not in direct contact with core habitation zones.