• Title/Summary/Keyword: 하구생태계

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Relationship between Population of Wintering Whopper Swan (Cygnus cygnus) and Bridge Spacing in the Lower Nakdong River, Korea (낙동강하류 교량간격에 따른 큰고니(Cygnus cygnus) 월동개체수 차이 연구)

  • Hong, Suk-Hwan
    • Korean Journal of Environment and Ecology
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    • v.34 no.3
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    • pp.191-197
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    • 2020
  • The purpose of this was to examine the differences of large whopper swan (Cygnus cygnus) in wintering habitat preference among bridge sections of the lower Nakdong River of the Nakdong River Estuary, the largest whopper swan's wintering habitat in Korea. This species is designated and protected as Natural Monument in Korea. The survey was conducted in six time-series during the 2018~2019 wintering season, and it found up to 500 whopper swans were wintering in the lower Nakdong River. For the survey, a seven sections were set up based on the bridges across the river. Whopper swans were rarely observed in five narrow sections where the distance between bridges was less than 2 km. The stable population of the whopper swan was observed only in two broader sections where the distance between bridges was is over 4 km. As these sections were relatively little affected by artificial interference, the distance from the mouth of the Nakdong River was not a factor. Securing a stable space is considered as one of the most important factors for wintering of whopper swans, which are an endangered species. The survey results indicate that the distance between bridges should be at least 4 km to secure the whopper swan's stable habitat. These results are expected to be a reference to the development or restoration of the river ecosystems, especially bridge construction.

Determination of Trophic Position Using Nitrogen Isotope Ration of Individual Amino Acid in the Geum Estuary (금강 하구 생태계에서 아미노산의 질소 안정동위원소비를 이용한 섭식생물의 영양단계 파악)

  • Choi, Hyuntae;Choi, Bohyung;Shin, Kyung-Hoon
    • Korean Journal of Ecology and Environment
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    • v.50 no.4
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    • pp.432-440
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    • 2017
  • Compound specific isotope analysis of amino acids (CSIA-AAs) is being highlighted as an alternative approach for overcoming some restrictions in application of stable isotope analysis of bulk tissue (SIA) for trophic position (TP) estimation. However, this approach has rarely been applied in Korea. The present study determines TP of two Polychaeta (Nephtyidae and Glyceridae) and two fish species(Platycephalus indicus and Lophius litulon) collected from the Geum River estuary using nitrogen isotope ratio of amino acid and compared with the TP values estimated by SIA. The Polychaeta species, sampled in two sites, showed similar TP between SIA(2.7 and 3.1) and CSIA-AAs (2.6 and 3.1). However, for both fish species, TP values displayed a large difference between SIA (3.1 and 2.3) and CSIA-AAs (3.8 and 3.7). In this study TP values estimated by CSIA-AAs showed more similar to the previously reported gut content analysis of both fishes compared with the results of SIA. Current study suggests the applicability of nitrogen isotope ratio of amino acid to understand coastal ecosystem structure and trophic ecology.

Tidal current and river plume distribution characteristics before and after the development of the Kwangyang Bay (광양만 개발 전·후 조류 및 하천유출류 변동 특성)

  • Kim, Cha Kyum
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.102-102
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    • 2021
  • 광양만의 해수교환은 주로 여수해만을 통해 이루어지고, 만의 동측에는 노량수로를 통해 진주만으로의 해수교환이 일어나고 있으며, 만의 북측에는 섬진강을 끼고 있다. 광양항 건설 전 만내의 수심은 약 10 m 이내로 얕았으며, 만의 입구인 여수해만과 노량수로에서의 수심은 약 20 m 이상이었다. 광양만은 1982년 광양제철소의 건설을 시점으로 하여 광양항의 확장 개발, 폐기물처리장 건설 등으로 인한 매립이 진행되었다. 특히, 섬진강 하구는 광양만 개발 전에는 넓은 조간대 퇴적층의 발달로 다양한 생태계환경을 유지하고 있었으나, 광양항 건설 및 하구에서 모래 준설 등으로 인해 근래에 와서는 해수의 역류가 심각한 상태이다. 1982년 광양제철소 건설이후 계속적으로 광양만을 개발함으로써 해양환경에 큰 변화가 발생하였다. 따라서, 본 연구에서는 광양만 개발 전·후의 조석 및 해수유동의 변화특성을 해석하기 위해 조석 및 조류에 대한 현장관측과 3차원 해수유동 수치모형실험을 수행한 후 남해도를 둘러싸고 있는 광양만, 진주만 등의 조석 및 조류의 변동특성을 해석하였다. 광양만 개발 전·후의 해수유동의 변동특성을 해석하기 위해 김 등(1999)에 의해 개발된 3차원 layer·level 혼성 해수유동 모델을 광양만, 진주만을 포함하는 남해도 주변해역에 적용하여 30일간의 수치계산결과를 이용하여 해수유동의 변동특성을 해석하였다. 모델에서 격자간격은 동서-남북방향 동일하게 200 m, 시간간격은 20 sec, 계산영역은 동서방향으로 52 km, 남북방향으로 65 km인 260×325 격자체계로 구성 운영하였다. 외해 개방경계에서 조위는 수로국에서 관측한 조위와 본 연구에서 관측한 조위를 보간하여 사용하였다. 광양만 개발전·후의 조류의 변동특성을 수치해석한 결과 여수해만에서는 광만만 개발전이 개발 후보다 유속이 강하게 나타났으나, 노량수로에서는 개발 후가 개발전보다 유속이 훨씬 강하게 나타났다. 이와 같은 현상은 광양만 개발로 광양만으로 유입되는 조량이 감소함으로 인해 여수해만에서는 유속이 감소한 것으로 생각된다. 노량수로에서 개발 후가 개발전보다 유속이 증가한 것은 여수해만을 통해 유입한 해수가 개발 후에는 광양만의 해수면적 감소로 광양만의 서측으로 유입하는 조량이 감소한 반면에 광양만의 북측(섬진강 하구) 또는 동측(노량수로)으로 유입하는 조량이 많기 때문인 것으로 사료된다.

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Characteristics of Fish Compositions and Longitudinal Distribution in Yeongsan River Watershed (영산강 수계의 어류 종 조성 및 분포특성 분석)

  • Choi, Ji-Woong;An, Kwang-Guk
    • Korean Journal of Ecology and Environment
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    • v.41 no.3
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    • pp.301-310
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    • 2008
  • This study was to analyze characteristics of fish compositions and longitudinal distribution, based on trophic and tolerance guild at 22 sampling sites of Yeongsan River watershed during 2003$\sim$2006, and also to compare before and after the estuary dam construction. The collected fishes, based on catch per unit effort (CPUE), were 44 species in the watershed and dominant fishes were Zacco platypus, Acheilognathus macropeterus, Zacco temminckii and Carassius auratus. According to comparative analysis of fish in the non polluted sites (NPS) vs. polluted sites (PS), the number of species and individuals was lower by 70% in the PS than the NPS, indicating ecological degradations by chemical pollutions or/and habitat modifications. The relative abundance of sensitive and insectivore species decreased as the stream order increases, while tolerant and omnivore species increased with the stream order. In this survey, largemouth bass (Micropterus salmoides), which is a top-carnivore and exotic species, may influence trophic guild system throughout active predations on endemic species, resulting in modifications of ecological functions. The construction of estuary dam on Yeongsan River in 1981 resulted in wider lacustrine zone and desalinated through limitation of seawater input. These physical changes have caused increases of lentic dwelling species and limited fish migrations (i.e., eel). Overall, fish fauna and composition analyses showed that the number of species and individuals in this water body may be reduced due to inputs of pollutants from the watershed, habitat modifications, and increases of exotic species (largemouth bass). For these reasons, effective lake management strategies are required for the ecosystem conservation.

Environmental and Ecological Consequences of Submarine Groundwater Discharge in the Coastal Areas of the Korea Peninsula (한반도 연안 해역에서 해저 지하수 유출의 환경 생태학적 중요성)

  • KIM GUEBUEM;HWANG DONG-WOON;RYU JAE-WOONG;LEE YONG-WOO
    • The Sea:JOURNAL OF THE KOREAN SOCIETY OF OCEANOGRAPHY
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    • v.10 no.4
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    • pp.204-212
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    • 2005
  • Recognition has emerged that nutrient inputs from the submarine discharge of fresh, brackish, and marine groundwaters into the coastal ocean are comparable to the inputs via river discharge. The coastal areas of the Korea peninsula and adjacent seas exhibit particular importance in the role of submarine groundwater discharge (SGD), in terms of the magnitude of SGD and associated continental material fluxes. For example, in the southern sea of Korea, SGD transports excess nutrients into the coastal regions and thus appears to influence ecosystem changes such as the outbreak of red tides. Around volcanic island, Jeju, which is composed of high permeability rocks, the amount of SGD is higher by orders of magnitude relative to the eastern coast of North America where extensive SGD studies have been conducted. In particular, nutrient discharge through SGD exerts a significant control on coastal ecosystem changes and results in benthic eutrophication in semi-enclosed Bang-du bay, Jeju. In the entire area of the Yellow Sea, tile submarine discharge of brackish groundwater and associated nutrients are found to rival the river discharges into the Yellow Sea, including those through Yangtze River, Han River, etc. In the eastern coast of the Korea peninsula, SGD is significantly higher during summer than winter due to high hydraulic gradients and due to wide distribution of high permeability sandy zones, faults, and fractures. On the other hand, in the estuarine water, downstream construction of the dam in the Nakdong River, SGD was highest when the river discharge was lowest (but water level of the dam was highest). This suggests that even though there is no visible freshwater discharge into this estuary, the discharge of chemical species is significant through SGD. On the basis of the results obtained from the coastal areas of the Korea peninsula, SGD is considered to be an important pathway of continental contaminants influencing tidal-flat ecosystems, red tides, and coral ecology. Thus, future costal management should pay great attention to the impact of SGD on coastal pollution and eutrophication.

Simulation of Riverbed Change for Runoff at Gumi Weir Downstream (구미보 하류에서의 유역유출량 변화에 따른 하상변동 연계모의)

  • Lee, Jong Mun;Jung, Woo Suk;Ahn, Jungkyu;Kim, Young Do;Kang, Boosik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.48-48
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    • 2018
  • 하천생태계가 호수나 습지생태계와 비교하여 갖는 가장 큰 특징은 '흐름'이 강하게 존재한다는 점이다. 댐과 보 등의 인공물은 하천 내 흐름을 변화시키고, 유량을 조절함으로써 하류에서의 퇴적물 축적, 입자크기, 강의 경사 등의 환경적인 요인이 변화하게 된다. 낙동강 하류는 상류부에 설치되어 있는 안동, 임하, 합천, 밀양 및 남강댐 등 다목적댐과 그 사이에 설치된 보에 의해 지속적으로 하천 유량이 조절되고 있다. 댐/보와 하구둑이 연계된 정체성 조절하천 시스템인 낙동강의 경우, 기후변화와 그에 따른 강우패턴의 변화에 직접적인 영향을 미친다. 특히, 다기능보는 하천을 횡단하는 수공구조물로써 보의 수문운영 방식에 따라 유량이 변화하여 하상변동 및 유사이동 형태의 변화 가능성이 있다. 그러나 기후변화에 따른 유출량 변화와 하상변동을 연계하여 분석한 연구는 매우 드물기 때문에 본 연구가 충분히 가치가 있다고 판단된다. 본 연구에서는 낙동강 유역의 구미보 하류와 칠곡보 구간에서 미래기후시나리오를 예측하여 SWAT 모형에 적용하여 수문모의를 통한 유출량 분석을 수행하였다. 미래 유출량 분석결과를 하상변동 모델인 GSTARS의 입력자료로 적용하여 유출량 변화에 따른 하상변동 양상을 분석하고자 하였다. GSTARS 모델의 수류튜브와 유사량 공식을 적용하여 연구구간에서의 최심하상고 분석과 주요지점에서의 횡단면 사행분석을 수행하여 유출량 변화에 따른 하상의 변화와 그에 따른 수리계수들의 변화를 분석하였다.

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Summer Water Quality Management by Ecological Modelling in Ulsan Bay (생태계 모델을 이용한 울산만의 하계 수질관리)

  • Park, Sung-Eun;Hong, Sok-Jin;Lee, Won-Chan;Jung, Rae-Hong;Cho, Yoon-Sik;Kim, Hyung-Chul;Kim, Dong-Myung
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.16 no.1
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    • pp.1-9
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    • 2010
  • Numerical study on coastal water quality management was conducted to examine the response of summer water quality to the flow into the sea of land based pollution load in Ulsan Bay, Korea The abatement of pollution load. from point sources of land was estimated on the basis of Korean coastal water quality standard using an ecosystem model. The results of the ecological model simulation showed that COD values in the inner part of the bay were greater than 280mg/L, and exceeded the grade III limit of Korean coastal water quality standard 30% of all land based pollution loads or organic and inorganic material loads from point sources should be cut down to keep the COD levels below 2mg/L. As environmental carrying capacity was estimated to be 7,193kgCOD/day to keep the COD levels below 2mg/L in Ulsan Bay, 3,083kgCOD/day of land based organic loads should be reduced. The phytoplankton blooms have occurred in the Teahwa river mouth or estuary repetitively, so it is important to control land based nutrients loads for removal of autochthonous organic loads around Ulsan Bay.

Change of maintenance flow discharge in Seomjin river basin (섬진강유역 하천유지유량 변화)

  • Jung, Jae Sung;Jo, Min Soo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.502-505
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    • 2016
  • 섬진강 유역에서 하천유지유량에 영향을 미치는 주요댐은 다목적댐 2개소, 발전용댐 1개소, 생공용수전용댐 1개소, 농업용댐 2개소로 총 6개소가 있고, 섬진강남해수계의 수어댐은 섬진강 하구 일부구간을 제외하면 하천유지유량 변화에는 영향을 미치지 않는다. 섬진강 유역에서 2005년까지 고시된 하천유지유량은 1979년 섬진강 송정지점 염해방지 필요수량 5.5cms만 있었고, 1990년 공고에서는 섬진강 2개 지점에 대한 평균 및 기준 갈수량을 제시하고 별도의 하천유지유량을 고시하지는 않았다. 익산지방국토관리청(1999)에서 하천유지유량이 하천법 제20조의 법적근거를 가지고 영산강 섬진강 수계 전반에 걸쳐 총 23개 지점에서 산정하였다. 동일한 하천유지유량이 2006년에 고시되어 2016년 현재까지 법적 효력을 가지고 있다. 국토해양부(2011)에서 하천수질과 생태계를 고려한 하천유지유량을 다시 산정하였는데, 이는 1979년과 2006년 고시유량보다 더 큰 값이다.

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Characteristics of Fish Fauna Collected from Near Estuaries Bank and Fish-way on the Bank of Naktong River (낙동강 하구둑 수역의 어류 군집구조와 어도 이용 어류)

  • Kang, Eon-Jong;Yang, Hyeon;Lee, Heung-Hun;Kim, Kwang-Sug;Kim, Chi-Hong
    • Korean Journal of Ichthyology
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    • v.24 no.3
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    • pp.201-219
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    • 2012
  • The estuaries bank of Nakdong River, Korea, was constructed in 1987 and many arguments have been under discussion on the subject of ecological impact on ecosystem during 20 years. In this context, however, it was not focused on the role of fish-way and the way of improvement to promote fish movement to complete its life history. This paper was the result of investigation on fish fauna of upper and lower part of the bank and the analysis of comparison of the fishes with those using fish-way which were installed in each side of bank as ladder type and fish gate. The authors discussed the importance of fish gate and its management base on the result. The number of fishes collected in this study for upper part of estuaries bank was 31 species, among them 71% was the pure freshwater residents indicating the characteristics of the area as a freshwater ecosystem. It was observed that 9 species of coastal fishes were found in this region including Coilia ectens and Neosalanx sp. which is anadromous to spawn. Excluding 6 freshwater fishes, 30 fish species collected in lower part of estuaries bank were coastal fishes indicating that former brackish ecosystem was changed into marine one. The freshwater fishes found in this region were restricted the appearance only in the season of discharging freshwater into the sea. The number of fishes found in fish-way was 39 species, more than that of river and coast. But only 19 species founded in fish ladder was comparable with the result of investigation on fish gate including 32 species. It was considered that the fish gate has more important role as a fish passage from the fact that only it allowed to movement of numerous number of fry of Neosalanx sp. and Engraulis japonicus. These results indicates that two-way movement system is more efficient than downward only one in estuaries bank for fish migration.