• Title/Summary/Keyword: 금강 하구

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A Study on Settling Properties of Fine-Cohesive Sediments in Keum Estuary (금강 하구역 미세-점착성 퇴적물의 침강특성에 관한 연구)

  • Ryu Hong-Ryul;Chun Min-Chul;Hwang Kyu-Nam
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.18 no.3
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    • pp.251-261
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    • 2006
  • The purpose of this study is to quantitatively estimate the settling property for fine-cohesive sediments in Keum Estuary and to evaluate the spatial variation by analyzing and comparing the local and seasonal variation of the settling properties in Keum Estuary with that of the settling properties in the other sites. After the spatial variation of physico-chemical properties such grain size distribution, the percentage of organic contents, mineralogical composition etc is investigated through experiments and analyses, interrelation between the physico-chemical properties and settling velocities and effect that the physico-chemical properties have on the quantitative variation of settling velocities were also analyzed in this study. Experimental results of settling tests shows that settling velocities of Keum Estuary mud vary in the range of two orders of magnitude (from 0.01 to 1mm/sec) over the corresponding concentration range of 0.1 to 80 g/L, and a feature of settling velocity profile is quite different in quantity as compared to those of previous studies with mud of other regions: Saemankuem, Tampa Bay, Sevem Estuary and lake Okeechobee. However, their local and seasonal variabilities within Keum Estuary appear to be insignificant.

Characteristics of Water Quality and factor Analysis on the Variations of Water Quality in Coastal Sea around the Keum River Estuary in Summer (하계 금강하구 주변해역의 수질특성과 수질변동 요인분석)

  • Kwon Jung-No;Kim Jong-Gu;You Sun-Jae
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.3 no.4
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    • pp.3-22
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    • 2000
  • To know characteristics of water quality in coastal sea around the Keum river estuary in summer, we studied the water quality of surface, middle and bottom level during Jun e~september, 1998. The mean concentrations of COD, DIN, DIP & chlorophyll-a were 1.36mg/L, 28.60㎍-at/L, 0.48㎍-at/L and 4.14㎍/L, respectively, which were over eutrophication criteria in sea water. After the Keum river dyke was constructed, seasonal freshwater discharge was largely changed. About 80% of total annual freshwater discharge was concentrated in summer as rainy season from July to September. The correlation coefficient of DIN versus salinity was shown to be high, and thus the concentration of DIN was closely related to freshwater discharge. Maximum Chlorophyll-a concentration was occurred in September, due to increased DIP concentration, high water temperature and low salinity after heavy rainfall in August. The results of Principal Component Analysis showed that the first factor represented a series of eutrophication factors, the second factor w3s a valiance of seasonal fluctuation, and the third was a variance of progress of mass change.

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The Behaviour of Dissolved Iron and its Variability in the Keum estuary, a Macrotidal System on the Western Coast of Korea (금강 하구에서의 용존 철 행동과 그 변화에 대한 연구)

  • LEE, CHANG-BOK
    • 한국해양학회지
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    • v.27 no.2
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    • pp.101-111
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    • 1992
  • 용존 철의 행동과 시간적 변화에 대한 연구가 온대 대조차 환경인 금강 하구에서 이루어 졌다. 이지역에서 가장 중요한 환경변수인 하천배수량과 조차의 차이로 야기되 는 변화를 파악할 수 있도록 4번의 현장조사를 각각 다른 배수량과 조차의 시기에 실 시하였으며, 아울러 실험실 내에서 혼합실험도 행해졌다. 혼합실험의 결과 하천에 의 해 운반되는 용존 철의 90% 이상이 5$\textperthousand$ 이하의 저염분역에서 제거되는 현상이 확인되 었다. 그러나 현장조사에서 이러한 초기 혼합시의 용존 철 제거가 뚜렷이 나타난 것은 갈수기.소조기 3번의 다른 환경조건 하에서는 용존 철 농도의 심한 변화가 관측되었 다. 하천배수량과 조차의 변화에 따라 보여진 용존 철의 변화는 하구순환이나 퇴적물 재부유 및 응집체 해체 등의 물리적 현상과 관련시켜 해석되었다.

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Tidal Propagation in the Keum River (금강 感趙구간의 조석전파)

  • 최병호;안원식
    • Water for future
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    • v.18 no.1
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    • pp.67-73
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    • 1985
  • Tidal propagation in the Keum River has been routinely handled by numerical integration of the long fravity wave equation by Dronkers. The dynamic equations include non-linear terms thereby reproducing the shallow water tides. The model was used to compute tidal distribution of the Kum River for aveage spring, mean, neap tidal conditions and further utilised to investigate the waterlevel response within tidal reaches by combined tide and flood discharge effects. The objective of this initial study is to investigate the tidal dynamics of the lower reaches of the Keum River under the condition of before-cross-channel barrage construction.

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Water Depth Change Caused by Artificial Structures in Geum River Estuary: Spatio-Temporal Evaluation Based on GIS (금강하구에서 인공 구조물에 의한 수심 변화 : GIS 기반의 시.공간 평가)

  • Lee, Hyun-Hee;Um, Jung-Sup
    • Journal of the Korean Geographical Society
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    • v.42 no.1 s.118
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    • pp.121-132
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    • 2007
  • This paper examines the spatial and temporal variability in the water depth caused by artificial structures in Geum Estuary of South Korea. Water depth data set extracted from marine maps of 1979, 1990, 1996 and 2004 were used in a GIS to derive volumetric estimates of gains and losses of sedimentary material. Artificial structures caused above 2m in water depth to be shallow between 1979 and 2002 in the estuary system, particularly through disturbance of a natural transport in suspended sediment concentrations. The mutt significant change in suspended sediment transport were observed in area affected by embankment for fresh water, inducing the water depth shallower than before in almost 80% of the area. This was probably because of an continuous abundant mud supply from coastal river oven after blocking the fresh water. The spatial analysis made it possible to identify area wide patterns of water depth change subject to many different type of artificial structures, which tanner be acquired by traditional field sampling. It is anticipated thai this research could be used as a valuable reference to confirm the outputs from past field researches for sedimental process in more visual and quantitative manner.

Spatial Distribution and Temporal Variation of Estuarine Wetlands by Estuary Type (하구유형에 따른 권역별 하구습지의 분포특성과 시계열 변동추이 분석)

  • Rho, Paikho;Lee, Chang-Hee
    • Journal of the Korean Geographical Society
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    • v.49 no.3
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    • pp.321-338
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    • 2014
  • This study aims to identify spatial distribution of estuarine wetlands in Korea, and to assess temporal variation of the wetlands in the last few decades. Widely known in environmental and coastal management, watershed-based regions which composed with Han-river(western and eastern parts), Keum-river, Yeoungsan-river, Seomjin-river, Nakdong-river, and Jeju, are analyzed to evaluate temporal change of estuarine wetlands in the 1980s, 1990s, and 2000s, through the land-cover map. Results show that estuarine wetlands dramatically decreased in Han-river(western part), Keum-river, Yeoungsan-river that estuarine circulation have been interrupted with man-made structures such as dyke and drainage. But, estuarine wetlands surrounded by forests and grasslands has been relatively less damaged. Habitat diversity providing healthy estuary ecosystem is lower in interrupted estuaries than circulated estuaries, which are composed of tidal-flat, open water, salt marsh, rocky coasts and sandy shoreline. This study indicates that spatial distribution and temporal variation of estuarine wetlands are different with estuary type and region, so estuary type with seven regions can be applied to provides a framework for estuary management strategies and to establish estuary restoration plans.

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Estimating the non-use values of Gum river estuary using contingent valuation method - by Turnbull nonparametric estimation method (조건부가치측정법을 이용한 금강 하구의 비사용가치 추정 - Turnbull 비모수적 추정 방법을 적용하여)

  • Shin, Youngchul
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.18 no.11
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    • pp.479-485
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    • 2017
  • This study estimated the non-use values of the Gum river estuary which are not related to the direct or indirect use of the Gum river estuary using the contingent valuation method (CVM). The non-use values of the Gum river estuary were explained and asked to be evaluated in the CVM questionnaire and estimates of the WTPs(willingness-to-pay) were elicited using the Turnbull nonparametric estimation methods on the dichotomous choice CV data. Results found the Turnbull lower bounded mean WTP per year for non-use value of the Gum river estuary was estimated at 5,822 won (95% C.I. 5,295 ~ 6,349 won) from single dichotomous CV data, and 6,205 won (95% C.I. 5,701 ~ 6,710 won) from double dichotomous CV data. The mean of two WTP estimates, 6,014 won (95% C.I. 5,498 ~ 6,529 won), was used to calculate the annual total non-use value of the Gum river estuary. Therefore, the non-use value of the Gum river estuary was estimated at 220.3 billion won (95% C.I. 201.4 - 239.2 billion won) annually. This non-use value of the Gum river estuary was composed of the bequest value totaling 68.3 billion won (95% C.I. 62.5 - 74.2 billion won), the existence value of 58.0 billion won (95% C.I. 53.0 - 63.0 billion won), the option value of 57.7 billion won (95% C.I. 52.7 - 62.6 billion won), and the vicarious consumption value totaling 36.3 billion won (95% C.I. 33.1 - 39.4 billion won).

Changed Aquatic Environment Due to An Estuary Dam: Similarities and Differences Between Upstream and Downstream (금강하구언 조성으로 인한 환경변화: 호수측과 하구측 비교)

  • Yang, Jae Sam
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.17 no.1
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    • pp.52-62
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    • 2014
  • As a case study of the changed aquatic environment due to an estuary dam, the Geum River Estuary Dam System (GREDS) has been investigated for the last two decades. We sought the similarities and differences in the disrupted aquatic environment between the estuarine and lacustrine sides of the GREDS. Both sides of the GREDS shared similar aquatic disruptions, such as elongated hydraulic residence times, deteriorated water quality, highly accumulated organic-rich sediments, and considerable siltation of river-transported materials prior to reaching coastal waters. The disruptions of water quality such as high nutrients concentration and frequent bloom of blue-green algal are much more noticeable in the reservoir than in the estuary. However serious siltation problem has been reported from the estuary, which will possibly threaten the proper functioning of the natural Kunsan Estuarine System.