• Title/Summary/Keyword: Estuarine reservoir

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River Flow Forecasting Model for the Youngsan Estuary Reservoir Operations(I) -Estimation Runof Hydrographs at Naju Station (영산호 운영을 위한 홍수예보모형의 개발(I) -나주지점의 홍수유출 추정-)

  • 박창언;박승우
    • Magazine of the Korean Society of Agricultural Engineers
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    • v.36 no.4
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    • pp.95-102
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    • 1994
  • The series of the papers consist of three parts to describe the development, calibration, and applications of the flood forecasting models for the Youngsan Estuarine Dam located at the mouth of the Youngsan river. And this paper discusses the hydrologic model for inflow simulation at Naju station, which constitutes 64 percent of the drainage basin of 3521 .6km$^2$ in area. A simplified TANK model was formulated to simulate hourly runoff from rainfall And the model parameters were optirnized using historical storm data, and validated with the records. The results of this paper were summarized as follows. 1. The simplified TANK model was formulated to conceptualize the hourly rainfall-run-off relationships at a watershed with four tanks in series having five runoff outlets. The runoff from each outlet was assumed to be proportional to the storage exceeding a threshold value. And each tank was linked with a drainage hole from the upper one. 2. Fifteen storm events from four year records from 1984 to 1987 were selected for this study. They varied from 81 to 289rn'm The watershed averaged, hourly rainfall data were determined from those at fifteen raingaging stations using a Thiessen method. Some missing and unrealistic records at a few stations were estimated or replaced with the values determined using a reciprocal distance square method from abjacent ones. 3. An univariate scheme was adopted to calibrate the model parameters using historical records. Some of the calibrated parameters were statistically related to antecedent precipitation. And the model simulated the streamflow close to the observed, with the mean coefficient of determination of 0.94 for all storm events. 4. The simulated streamflow were in good agreement with the historical records for ungaged condition simulation runs. The mean coefficient of determination for the runs was 0.93, nearly the same as calibration runs. This may indicates that the model performs very well in flood forecasting situations for the watershed.

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Water Quality Modeling by the WASP4 Model (WASP4 모형에 의한 수질모델링)

  • 조홍연;전경수;이길성
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.5 no.3
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    • pp.221-231
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    • 1993
  • WASP4. an estuarine or lake water quality model, wat applied to simulate future water qualities at alternative withdrawal sites for capital areas. Simulated water quality constituents were Chlorophyll a, nitrogen cycles, Phosphorus, BOD End DO. A Water budget analysis Using the monthly records of reservoir inflows and outflows between 1986 and 1990 was made to determine seasonally-averaged flowrates at model boundaries. Estimated flowrates were used. together with the seasonal water quality inputs simulated by the QUAL2E model, for the simulation of future water qualities. Sensitivities to the future pollutant inputs and possible future withdrawal alternatives were also analyzed. From simulations or future water qualities it is found that among the candidate withdrawal sites. the one located at the downstream end of the North Han River has the best future water quality in all quality constituents and the one at the downstream end of the South Han River has the worst Possible future withdrawal from the North Han River brings a slight increase or pollutant concentrations at existing withdrawal sites. but the aggravation of water quality is not significant.

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Future changes in runoff characteristics of an estuarine reservoir watershed using CMIP6 multi-GCMs (CMIP6 다중 GCMs을 적용한 담수호 유역의 미래 유출특성 변화)

  • Sinae Kim;Seokhyeon Kim;Hyunji Lee;Jihye Kwak;Jihye Kim;Moon-Seong Kang
    • Proceedings of the Korea Water Resources Association Conference
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    • 2023.05a
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    • pp.419-419
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    • 2023
  • 하천의 최종 유출부와 해양이 만나는 지점을 하구라고 하며, 우리나라는 주로 서해안 지역에 하구 방조제 건설에 따른 담수호가 조성되어 다양한 목적으로 수자원이 활용되고 있다. 이러한 하구 담수호는 바다로 유입되기 직전의 물을 저류시켜 수자원 확보에 긍정적이나, 일반적으로 유역의 최하류에 위치해 있어 오염물질 유입, 부영양화, 염분 침출로 인한 오염물질 용출 등에 취약하다. 따라서 담수호의 회복탄력성 향상과 지속가능한 수자원 관리를 위해서는 미래 기후변화에 따른 영향 분석이 필수적이다. 특히 기후변화는 거대규모의 홍수과 같은 자연재난, 농업가뭄 및 식생가뭄 등의 증가로 이어질 수 있으므로, 이에 효과적으로 대비하기 위해서는 미래 기후조건에 따른 하천의 미래 유출량 변화 예측이 수행되어야 한다. 본 연구에서는 불확실한 미래 수문변화를 예측하기 위해 CMIP6(Coupled Model Intercomparison Project Phase 6) GCMs(Global Climate Models)의 SSP(Shared Socioeconomic Pathways) 시나리오를 유역 유출모델에 적용하여 기후변화에 따른 미래 유출특성의 변화를 예측하였다. 충청남도 서산시에 위치한 간월호 유역을 대상유역으로 선정하고, HSPF(Hydrological Simulation Program-FORTRAN) 모형을 적용하여 상류유역의 과거 및 미래 장기유출량 모의를 수행하였다. 모의된 시나리오별 유출량을 기반으로 최빈유량곡선법을 적용하여 미래의 기준유량 발생시점 및 지속기간의 변화를 분석하였으며, CVDs(Center-of-volume dates)의 변화를 통해 기후변화에 따른 홍수기의 시기적 변화 양상을 파악하고자 하였다. 본 연구의 결과는 미래 유역 환경변화를 고려한 담수호의 수자원 보전관리계획 수립에 있어 기초자료로 활용될 수 있을 것으로 기대된다.

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Evaluation of Water Quality Management of Estuarine Reservoir Based on Resilience Analysis Framework (회복탄력성 프레임워크 기반 담수호 수질 개선 방안 평가)

  • Hwang, Soonho;Jun, Sang Min;Kim, Seok Hyeon;Lee, Hyunji;Kwak, Jihye;Kang, Moon Seong
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.348-348
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    • 2020
  • 우리나라 하구에 조성된 담수호의 수자원은 다양한 용수 목적에 맞게 활용하고 있으며, 수질 기준에 부합하는 용수를 공급하고 담수호 및 간척지의 친환경적 가치를 높이기 위해서는 담수호의 상류 유역 및 유입 오염물질, 그리고 담수호 수체 특성에 대한 종합적인 이해를 기반으로 수질 오염 관리 대책을 수립하는 것이 중요하다. 일반적으로 담수호 개선을 위한 방안의 선정 방식은 연평균 수질 농도를 기준으로 목표하고자 하는 수질 기준의 만족 여부에 대한 평가와 경제적 평가를 함께 고려하여 최적의사결정 기반으로 주로 이루어져 왔다. 그러나 기존의 평가 방법에서는 목표 수질의 만족 여부가 중요하다는 점에서 담수호 수자원의 시기별 활용성에 대한 고려를 간과하기 쉽다. 또한 담수호 수자원 시스템의 수질 악화에 대한 회복탄력성을 높이는 일은 단순히 유역관리대책의 적용에 따른 수질 개선 문제와는 별도로 담수호 수자원 시스템의 지속 가능성과 연관된다는 점에서 기존의 평가 방식을 보완하기 위한 수단이 필요하다고 할 수 있다. 따라서 본 연구에서는 담수호 수자원 관리 방안을 평가하는 데 있어서 회복탄력성의 개념을 활용하였으며, 각 방안에 대한 시간적 변화에 따른 담수호의 회복탄력성 특징을 고려하기 위하여 동적 회복탄력성 개념 및 평가 방법을 도입하였다. 본 연구에서는 우선 기존의 수질 평가 방법에 따라 간월호를 대상으로 수질 개선 방안별 수질 변화를 SWAT-EFDC 연계모형을 통해 모의하고, 연평균 수질 농도와 총인 삭감량에 대해 분석하였다. 분석 결과, 간월호의 지형학적 특성에 따라 간월호 상류 구간의 수질 농도가 다른 구간에 비해 높게 나타났으며, 상류 구역의 경우 준설 시나리오만으로는 목표 수질을 달성하기 어려운 것으로 나타났다. 따라서, 상류 구역의 수질 목표 달성을 위해서는 준설 시나리오만으로는 한계가 있으므로 상류 유역 출구부에 위치한 하수처리시설의 총인 배출부하량을 삭감과 추가적인 유역 수질 관리 대책이 필요하다.

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Change in Fish Species Composition in the Saemangeum Reservoir after the Construction of Dike in 2006-2007 (새만금 방조제 물막이 완공 후인 2006-2007년 새만금호 어류 종조성의 변화)

  • Lee, Tae-Won;Hwang, Hak-Bin;Hwang, Sun-Wan
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.12 no.3
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    • pp.191-199
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    • 2007
  • Seasonal variation in species composition of fish in the Saemangeum Reservoir was determined using seasonal samples collected by an otter trawl from April 2006 to February 2007 after the dike construction, and compared with the data obtained during the dike construction in 2001-2002. A total of 35 species, 8,960 individuals and 53,084.4 g of fish were collected during the study. Of the fish collected, brackish and coastal fishes such as Konosirus punctatus, Synechogobius hasta and Repomucenus lunatus, and migrant fishes such as Engraulis japonicus and Scomberomorus niphonius predominated in abundance accounting for 95% in the total number of individuals. Fish species composition and abundance showed a similar seasonal trend to those in the other western coastal waters of Korea. The resident species were mainly collected in spring and in autumn. The number of species and biomass were high in summer by the large amount of catch of migrating species. Catch was low in winter and only 2 species were collected. A brackish and coastal fish, K. punctatus and two migrant fishes, E. japonicus and S. niphonius were abundantly collected after the dike construction. However, the dominant fishes during the dike construction such as Leiognathus nuchalis, Neosalanx jordani and Chaeturichthys stigmatias were rarely collected. Fish density was $1,149\;inds./10,000m^2\;and\;12,644g/10,000m^2$ during the dike construction, and increased 6 times in the number of individuals ($7,467\;inds./10,000m^2$) and 3 times in biomass ($44,237g/10,000m^2$) after the dike construction. Annual species richness (R) and species diversity (H') decreased from R=0.0160 and H'=2.47 during the dike construction in 2001-2002 to R=0.0038 and H'=1.11 after dike construction in 2006-2006, respectively. These changes seemed to be related to the reduction of the saline area and degradation of water quality in Semangeum Reservoir after the dike construction.

Comparison of Algal Growth Potentials in the Large Reservoirs and River Mainstream of Naktong River Watershed (낙동강 수계 대형 인공호 및 하천본류의 조류성장 잠재력 비교)

  • You, Kyung-A;Shin, Jae-Ki;Hwang, Soon-Jin
    • Korean Journal of Ecology and Environment
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    • v.39 no.1 s.115
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    • pp.138-144
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    • 2006
  • Algal growth potential test (AGPT) has been used as a tool for assessing biological productivity potential in the aquatic ecosystems. This study was conducted to compare the productivity potentials of large reservoirs (Lakes Andong, Hapchon and Jinyang, and Naktong estuarine dam) and river sites (Sangju, Koryung, and Samlangjin) located in the Naktong River watershed. AGPT was conducted in both non-monsoon and mosoon season (February, April, July and September) of 2003, using Microcystis aeruginosa as a test alga. The AGPs in the reservoirs were relatively much lower than those of river sites. The river AGPs increased towards upstream close to the influent streams, while it generally decreased towards downstream. Immediately after the abrupt increase in influent discharge in summer, the AGP became similar between midstream and downstream sites. The water quality of river and reservoirs deteriorated during the drought period in accordance with AGP: it was the highest during this period. The AGPs showed the closest correlation with the P concentration, leading to the conclusion that bioavailable P is highly influential to the algal growth in both lentic and lotic ecosystems in the Naktong River watershed. Based on the AGPs, the water quality of tested sites was likely eutrophic. Our results suggest that AGPT be a useful tool in evaluating the productivity potential and trophic state of the water body as well as determining the nutrients that limit the growth of algae.

The Effect of Plant Coverage on the Constructed Wetlands Performance and Development and Management of Macrophyte Communities (식생피도가 인공습지의 질소 및 인 처리효율에 미치는 영향과 습지식물의 조성 및 관리)

  • Ham, Jong-Hwa;Kim, Hyung-Chul;Koo, Won-Seok;Shin, Hyun-Bhum;Yun, Chun-Gyeong
    • Korean Journal of Ecology and Environment
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    • v.38 no.3 s.113
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    • pp.393-402
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    • 2005
  • The field scale experiment was performed to examine the effect of plant coverage on the constructed wetland performance and recommend the optimum development and management of macrophyte communities. Four sets (each set of 0.88 ha) of wetland (0.8 ha) and pond (0.08 ha) systems were used. Water flowing into the Seokmoon estuarine reservoir from the Dangjin stream was pumped into wetland system. Water depth was maintained at 0.3 ${\sim}$ 0.5 m and hydraulic retention time was managed to about 2 ${\sim}$ 5 days; emergent plants were allowed to grow in the wetlands. After three growing seasons of the construction of wetlands, plant coverage was about 90%, even with no plantation, from bare soil surfaces at the initial stage. During the start up period of constructed wetlands, lower water levels should be maintained to avoid flooding newly plants, if wetland plants are to be started from germinating seeds. Effluent T-N concentration in low plant coverage wetland was higher in winter than high plant coverage wetland, whereas no T-P effluent concentration and removal efficiency difference was observed within 15% plant coverage. Dead vegetation affected nitrogen removal during winter because it is a source of organic carbon which is an essential parameter in denitrification. Biomass harvesting is not a realistic management option for most constructed wetland systems because it could only slightly increase the removal rate and provide a minor nitrogen removal pathway due to lack of organic carbon.

Seasonal Performance of Constructed Wetland for Nonpoint Source Pollution Control (비점오염원 제어를 위한 인공습지의 계절변화에 따른 처리효율 평가)

  • Ham, Jong-Hwa;Han, Jung-Yoon;Kim, Hyung-Chul;Yoon, Chun-Gyeong
    • Korean Journal of Ecology and Environment
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    • v.39 no.4 s.118
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    • pp.471-480
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    • 2006
  • The field scale experiment was performed to examine the performance of the constructed wetland for nonpoint source (NPS) pollution loading reduction. Four sets (each set of 0.88 ha) of wetland (0.8 ha) and pond (0.08 ha) systems were used. Water flowing into the Seokmoon estuarine reservoir from the Dangjin stream was pumped into wetland systems. Water depth was maintained at 0.3-0.5 m and hydraulic retention time was managed to about 2-5 days; emergent plants were allowed to grow in the wetland. The wetland effluent concentrations of $BOD_5$, TSS, and T-N were higher in winter than in the growing season excepting the T-P, and effluent $BOD_5$ concentration was higher than influents in winter. Mass retention of T-N and T-P was stable throughout the year, whereas mass retention of $BOD_5$ and TSS was decreased in winter. $BOD_5$, TSS, T-N, and T-P performance of the experi-mental system was compared with the existing database (North American Treatment Wetland Database), and was within the range of general system performance. From the first-order analysis, T-P was virtually not temperature dependent, and $BOD_5$ and TSS were more temperature dependent than T-N. Overall, the wetland system was found to be an adequate alternative for treating polluted stream water with stable removal efficiency and recommended as a NPS control measures.