• 제목/요약/키워드: Keum River Estuary

검색결과 69건 처리시간 0.018초

다변량 해석기법에 의한 금강 하구역의 수질평가 (Evaluation of Water Quality in the Keum River Estuary by Multivariate Analysis)

  • 김종구
    • 한국환경과학회지
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    • 제7권5호
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    • pp.591-598
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    • 1998
  • This study was conducted to evaluate water quality in the Keum River estuary using principal component analysis. The results was summarized as follow; Water quality in the Keum River estuary could be explained up to 70.40% by three factors which were included in the inffluent loading by the Keum River and Kyungpo cheon(38.99%), seasonal variation and organic matter pollution(19.05%), sediment resuspension and internal metabolism(12.35%). For spatial variation of factor score, artificial pollutant loading is highest at st.1, below Keum River barrage, and decreases toward the outer sea. For annual variation of factor score, factor 1 was highly related to artificial pollutant leading, and it was gently increased in 1994. Also, organic matter pollution, sediment resuspension and internal metabolism were increased to every year. It is necessary to control the nutrient leading by Keum river and Kyongpo cheon for Water quality management of estuary.

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금강하구언 건설후 금강하류의 홍수흐름특성변화 (Change of Flood Characteristics in the Down Stream of Keum River after the Ken River Estuary Dam Construction)

  • 박승기;문종필;민진우;김태철;안병기
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 1998년도 학술발표회 발표논문집
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    • pp.41-46
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    • 1998
  • The purpose of the study was changed of Flood Characteristics in Down stream of Keum River by the Keum River Estuary Dam Construction. The water surface slope of Kuem river after the Keum River Estuary Dam construction was steeper then before. The flood control capacity increase after construction. But, Increasing sediment in Kuem river will be decreased flesh reservoir volume for yield irrigation.

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금강하구둑 축조 전.후의 지형 및 흐름특성에 관한 연구 (A Study on the Topography and Current Characteristic of the Before and After Construction at Geum River Estuary Dike)

  • 신문섭;배기성;강신중;김재형
    • 한국해양공학회지
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    • 제20권3호
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    • pp.61-66
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    • 2006
  • The estuary has a very complex coastline and bottom topography. Before the close of floodgate, the Keum river estuary was deposited with sediment from the Keum river, created bythe construction of the Keum river estuary dike. So, a periodical dredging is necessary to assure water depth for boat entry and departure to Kunsan port. Theof this study is to find the change of tidal current of M2tide and the topography before and after construction at the Geum River estuary dike. The change of water depth is investigated by digitizing the sea map (No.305) of Kunsan port, which was edited by National Oceanographic Research Institute. The calculated co-range and co-tidal charts of M2tide before the dike construction are similar to the observed ones. Therefore, the amplitude and phase after construction at Geum River estuary dike increases compared to before construction at Geum River estuary dike. The scour occurred in the A-A' section.

하구언 갑문폐쇄 후 금강하구의 물리, 퇴적학적 특성변화 (Physical and Sedimentological Changes in the Keum Estuary after the Gate-Close of Keum River Weir)

  • 최진용;최현용
    • 한국해양학회지
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    • 제30권4호
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    • pp.262-270
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    • 1995
  • 금강 하구언 갑문의 폐쇄에 따른 금강하구의 물리, 퇴적학적 특성변화를 살펴 보 았다. 갑문쇄 이후 최대조류 유속은 갑문개방 시기에 비하여 약 30-40% 감소하였다. 또한 금강하구의 수괴유동이 둔화되어, 염분 및 수괴투명도의 수직적 성충(vertical stratification)이 형성되었다. 이에 따라 금강하구는 갑문개방기의 완전혼합형 (wellmixed type) 하구로부터 갑문쇄 이후에는 부분혼합형(partially-mixed type) 또 는 염쇄기형(salt-wedge type)하구로 변이하였다. 갑문이후 부유물함량은 표층에서 1 0∼100 mg/l의 범위로 측정되어, 갑문개방기에 비하여 약 1/4∼1/3의 수준으로 뚜렷하 게 감소하였다. 이와 같은 부유물함량의 감소경향은 첫째 조류유속이 감소하여 해저퇴 적물의 저층재부유 현상이 감소하였고, 둘째 수괴의 수직적성층이 형성되어 저층 혼탁 수의 상부확산이 둔화되었기 때문으로 변이하였고, 세립질 부유퇴적물의 퇴적작용이 보다 활발하게 나타날 것으로 예상된다.

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금강하구 표층퇴적물의 지화학적 특성에 관한 연구 (Geochemical Characteristics of Surface Sediments in the Keum River Estuary Adjacent to Coastal Area)

  • 서만석;박영석
    • 수산해양교육연구
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    • 제19권1호
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    • pp.1-7
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    • 2007
  • The purpose of this study was to investigate geochemical characteristics of surface sediments in the Keum river estuary adjacent to coastal area. For this study we collected the 21 surface sediments samples. Mean size of surface samples was $3.24{\sim}6.65{\phi}$ on inner estuary and was $2.15{\sim}3.42{\phi}$ on outside estuary. Surface samples were composed of silt on inner estuary and were composed of sand which was more larger than $4{\phi}$ on outside estuary. Most major elements except CaO, $Na_2O$ showed good relationships between variation of contents and grain size. Contents of $Al_2O_3$, $Fe_2O_3$, MgO, $K_2O$, $TiO_2$, $P_2O_5$ and $M_nO$ were increased predominately owing to the variation of mean size of surface samples. Contents of Co, Cr, Cu, Li, Sr, Zn, La, Ce, Pb, Rb, Nd have a good relationships with grain size but Ba, Th, Sm have not. All of major and minor elements contents except $K_2O$ and Ba were less than world mean contents of shallow surface sediments but apprehend a high pollution possibility on silt sediments in the estuaries.

장기관측자료에 의한 금강하구둑 수문조작에 따른 수질 변화 평가 (The Estimation of Water Quality Changes in the Keum River Estuary by the Dyke Gate Operation Using Long-Term Data)

  • 권정노;김종구;고태승
    • 한국수산과학회지
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    • 제34권4호
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    • pp.348-354
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    • 2001
  • This study was conducted to estimation of change characteristics for water quality by the dyke gate operation in the Keum River estuary. The estimation data made use of surveyed data in Keum River estuary by NERDI (National Fisheries Research and Development Institute) during $1990\~1999$. Shown to compare water quality changes at st. A and st. D in Figure 1, the concentrations of TSS, COD and nutrients at st. A were as high as about $2\~4$ times than those at st. D due to affection of fresh water discharge in the Keum River. The percentages of water quality change at surface water by dyke gate operation in the Keum River estuary were shown that TSS (Total Suspended Solid) was decrease to $56\%,\;47\%$ at st. A and D, and COD (Chemical Oxygen Demand) was increase to $68\%,\;71\%$ at st. A and D, respectively. The changes percentage of DIN (Dissolved Inorganic Nitrogen) by dyke gate operation in the Keum River estuary were increase high to $95\%$ at surface water and $7\sim30\%$ at bottom water, but those of DIP (Dissolved Inorganic Phosphorus) were increase to $2.8\sim8.6\%$ at surface water and $28\%$ at bottom water. The range of fluctuation for water quality at each station by dyke gate operation has shown that salinity and TSS are little better than before dyke gate operation, but COD show highly fluctuation. Also we studied estimation of characteristics of water quality change by the season, COD was increased except the summer, TSS was decreased to all season. DIN was increased to about $61\sim172.1\%$ for all season, but DIP was increased to the spring and decreased to the autumn, DIN enrichment in the estuary by dyke gate operation are interpreted to improvement of organic matter decomposition and nitrification by increasing the residence time and to increase nutrient flux in sediments due to decreasing dissolved oxygen and increasing a deposit matter.

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금강하구둑 건설후의 수질변화 (Variations of Water Quality after Construction of Keum River Estuary Barrage)

  • 김종구;유선재;권정노
    • 한국수산과학회지
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    • 제31권5호
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    • pp.685-694
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    • 1998
  • To evaluate the water quality characteristic after construction of Keum river estuary barrage, water quality analysis were conducted on August October in 1995 and January, May in 1996 respectively. The results were summarized as follows. The concentrations of COD were in the range of 1.01~5.10 (mean 2.50)mg/$\ell$ for surface water and 0.51$\~$6.68 (1.88)mg/$\ell$ for bottom water. The concentrations of dissolved inorganic nitrogen (DIN) were in the range of 1.26$\~$105.91 (29.66)$\mu$g-at/$\ell$ for surface water and 1.42$\~$68.38 (19.12)$\mu$g-at/$\ell$ for bottom water. The concentrations of phosphate phosphorus were in the range of ND$\~$0.99 (0.34)$\mu$g-at/$\ell$ for surface water and 0.17$\~$1.04 (0.49)$\mu$g-at/$\ell$ for bottom water. The nitrogen ratio to the phosphorus were as high as 3.5$\~$849.5 (146.5). Therefore, Phosphate phosphorus was playing an important role in phytoplankton growth as limiting factor in Keum river estuary. The correlation coefficient of salinity and DIN according to COD was shown to -0.757 and -0.874 respectivity. Mean values of eutrophicaton indies were calculated to 9.7, 7.2 for surface and bottom water, these values were exceeding 1, the value of eutrophication criteria. Especially station 1$\~$3 were shown over 10 as eutrophication indices. Therefore, Keum river estuary could be evaluate to possibility area for breakout of red tides.

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금강하구의 물질수지: 1. 영양염의 계절적 분포 (Chemical Mass Balance of Materials in the Keum River Estuary: 1. Seasonal Distribution of Nutrients)

  • 양재삼;정주영;허진영;이상호;최진용
    • 한국해양학회지:바다
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    • 제4권1호
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    • pp.71-79
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    • 1999
  • 금강에서 외해역으로 전달되는 물질의 수지를 이해하기 위한 연구의 일환으로 금강하구의 영양염의 계절적인 분포를 조사하였다. 1997년에서 1998년간 금강하구의 6개 정점에서 13~24시간동안 연속관측을 통하여 영양염, 부유현탁물질(SPM; Suspended Particulate Matter), 엽록소와 염분을 분석하였으며, 조석자료, 기상자료와 금강 하구언의 담수 방출량 자료도 보조자료로서 사용하였다. 이 연구를 통하여 하구내 영양염의 계절적인 분포의 차이와 이런 현상을 주도하는 요인을 밝히는데 주목적이 있고, 부차적으로 금강하구언 조성 이전과 이후 영양염 분포의 차이를 조사하였다. 금강 배출수내 영양염들의 농도는 계절에 따라 확연히 구별된다. 인산염과 암모니움염은 갈수기에 농도가 높게 나타나는 반면, 풍수기에는 규산염이 높게 나타났고 이때 SPM의 농도도 높게 출현하였다. 그러나 질산염은 연중 일정한 농도를 유지하였다. 이러한 계절적인 차이를 결정하는 주원인은 일차적으로 담수의 유입량이다. 강우에 의한 담수의 희석효과가 이러한 영양염과 SPM의 계절적인 변화를 야기하는 것으로 생각된다. 이러한 과정을 통하여 증가하는 SPM의 농도가 2차적으로 영양염의 분포에 영향을 주는 것으로 생각된다. 조사된 모든 영양염의 주 공급원은 금강에서 유입하는 담수이며 조사된 영양염의 기본적인 분포는 이들이 보존적임을 보인다. 조사를 총괄하여 보면 질산염, 아질산염 그리고 규산염은 계절에 상관없이 거의 보존적인 성격을 나타냈다. 그러나 다른 영양염(인산염, 암모니움염)과 SPM은 계절에 따른 차이가 나타났다. 인산염과 암모니움염은 6월과 10월의 갈수기동안에는 거의 보존적인 성향을 보인 반면, 풍수기와 5월의 조사에서 첨가현상을 보였다. 이러한 첨가현상에 영향을 주는 주 요인은 봄철 대량 번식된 담수성 플랑크톤이 해수와 접촉함에 따라 사멸하고, 이와 동시에 유입된 유기물의 분해와 SPM에 흡착되어잇던 인산염이 용출되는 것으로 생각되며, 저층 플럭스(benthic flux)도 기여하는 것으로 보인다. 하구언 조성 이전과의 비교에서 SPM의 농도가 감소함에 따라 SPM이 하구내 영양염의 재생과정에 미치는 중요성은 현저히 약화되었다. 또한 하구내 영양염의 분포를 결정하는 염분의 분포가 갈수기에는 하구언에서 1~2 km 정도로 근접한 곳에서 염분의 구성이 5~15 psu로 나타나 영양염의 첨가현상등 화학적 변화가 이곳에 집중되고, 풍수기 동안에는 하구 전역에서 이러한 염분분포가 나타난다. 따라서 하구언 조성 이후에 갈수기 동안 하구언에 근접한 일부만이 진정한 하구의 역할을 하고 나머지는 만과 같은 특성을 보이고 있다. 하구언 갑문 폐쇄 이전과 이후의 비교 결과 조석의 차단으로 인한 조류속도의 감소로 인하여 부유현탁물질의 농도가 감소하였으며 영양염류의 농도가 증가하였고, 따라서 식물플랑크톤의 대량번식이 발생할 가능성이 있다.

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통계분석 기법을 이용한 錦江水系의 水質評價 (Evaluation of Water Quality in the Keum River using Statistics Analysis)

  • 김종구
    • 한국환경과학회지
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    • 제11권12호
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    • pp.1281-1289
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    • 2002
  • This study was conducted to evaluate water quality in the Keum River using multivariate analysis. The analysis data in Keum river made use of surveyed data by the ministry of environment from January 1994 to December 2001. Thirteen water quality parameter were determined on each sample. The results was summarized as follow; Water quality in the Keum River could be explained up to 71.39% by four factors which were included in loading of organic matter and nutrients by the tributaries (32.88%), seasonal variation (16.09%), loading of pathogenic bacteria by domestic sewage of Gapcheon (13.39%) and internal metabolism in estuary as lakes(9.03%). For spatial variation of factor score, four group was classified by each factor characterization. Station 1 and 2 was influenced by Daechung dam, station 3 was affected by domestic sewage of Gapcheon, station 10~12 was affected by estuary dyke and the rest station. The result of cluster analysis by station was classified into four group that has different water quality characteristics. In monthly cluster analysis, three group was classified according to seasonal characteristic. Also, in yearly cluster analysis, three group was classified. It is necessary to control the pollutant loadings by Gapcheon inflow domestic sewage in Daejeon city for the sake of water quality management of Keum river.

금강하구 갯벌내 질소화합물질의 연직적인 플럭스 평가 (Estimation of verticle fluxes of nitrogen compounds in tidal flats of the Keum river estuary)

  • 김도희;양재삼
    • 한국해양환경ㆍ에너지학회지
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    • 제3권2호
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    • pp.3-10
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    • 2000
  • 1999년 4월, 8월과 11월에 금강 하구역 갯벌 세 지점에서 채니된 퇴적물 표층 5 cm을 입도 조성 분석한 결과 모래와 자갈 성분이 1.18 %, 모래 성분이 29.34 %, 점토 성분이 69.49 %였다. 퇴적물의 IL은 6.7 %, ORP는 -12 mV으로 약간의 환원상태를 보이고 있었다. 퇴적물 중 H₂S 농도는 평균 0.25 mg/gㆍdry으로 측정되었다 금강 하구 갯벌 퇴적물에서의 탈질산화는 4월에 0.186 m mole N₂/m²ㆍday, 8월에 0.192 m mole N₂/m²ㆍday, 11월에 91.3 m mol N₂/m²ㆍday으로 3회 평균 30.6 m mole N²/m²ㆍday였다. 퇴적물과 수층간의 NH₄/sup +/-N의 플럭스는 4월에 -0.37 m mole N/m²ㆍday, 8월에 34.0 m mole N/m²ㆍday, 11월에 0.10 m mole N/m²ㆍday으로 평가되어 평균적으로 11.2 m mole N/m²ㆍday였다. 한편, 퇴적물과 수층간의 NO²/sup -/-N+ NO₃/sup -/-N의 플럭스는 4월에 0.314 m mole N/m²ㆍday, 8월에 0.524 m mole N/m²ㆍday, 11월에 -4.12 m mole N/m²ㆍday으로 측정되어 평균 -1.09 m mole N/m²ㆍday으로 측정되어졌다. 암모니아질소와 아질산질소 및 질산질소의 플럭스로부터 계산한 용존무기질소 (DIN)의 플럭스는 10.2 m mole N/m²ㆍday으로 평가되었다. 이와 같은 금강하구역 갯벌에서의 용존성무기질소의 플럭스와 탈질산화는 이 해역의 질소수지와 1차 생산에 중요한 영향을 끼칠 것으로 추정되었다.

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