• 제목/요약/키워드: river channel

검색결과 771건 처리시간 0.024초

경기만 염하수로에서의 한강 유량에 따른 담수 영향범위 수치모델링 (Numerical Modeling for Region of Freshwater Influence by Han River Discharge in the Yeomha Channel, Gyeonggi Bay)

  • 이혜민;송진일;김종욱;최재윤;윤병일;우승범
    • 한국해안·해양공학회논문집
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    • 제33권4호
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    • pp.148-159
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    • 2021
  • 해수의 유동 및 염분 변화에 대한 재현성이 검증된 3차원 수치모델을 활용하여 한강 유량에 따른 경기만 염하수로에서의 담수 영향범위를 모의하였다. 염하수로 상류의 입구를 기준으로, 표층에서 28 psu의 염분이 나타나는 지점까지의 거리를 담수가 확산되는 거리로 정의하였으며, 한강으로부터 유출되는 담수 유량을 총 10가지(200~10,000 m3/s)로 구분하여 실험을 구성하였다. 수치모델 결과를 바탕으로, 비선형 회귀분석을 수행하여 유량과 담수 확산 거리에 대한 관계식을 산정하였다. 경기만 염하수로에서의 담수 영향범위는 한강 유량이 증가함에 따라 최소 강화도 남부 해역부터 최대 영흥도 북부 해역까지 확장된다. 유량과 담수 확산 거리는 비례하는 관계로 산정되었으며, 유량이 증가함에 따라 담수 확산 거리의 증가율은 점차적으로 감소하였다. 본 연구에서 산정한 관계식을 바탕으로 특정시기의 월 평균 한강 유량을 이용하여 염하수로에서의 담수 확산 거리를 추정할 수 있다. 이를 통해, 급격한 담수유출에 의한 수질 및 생태학적인 피해와 관련된 문제에 대응 및 예측할 수 있을 것으로 기대한다.

다중시기 영상자료를 이용한 금강하류의 하중도 퇴적환경 변화 (Sedimentary Environment Change in Mid-channel Bar of the Lower Geum River Using Multi-temporal Satellite Data)

  • 홍기병;장동호
    • 환경영향평가
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    • 제18권3호
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    • pp.171-183
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    • 2009
  • This study aims to analyze the sedimentary environment change in mid-channel bar of the lower Geum river basin after the construction of the estuary barrage using multi-temporal satellite data and GIS. The sedimentary environment changes were observed in mid-channel bar areas. The mid-channel bar F was found to have been newly formed for 10 years(1996-2006), whereas the mid-channel bar B located between mid-channel bar A and C has disappeared by erosion during the same periods. When examined by section, the areas of the mid-channel bar in the upper stream section from the Yipo's reference point generally increased due to the prevailing sedimentary environments, and those of the downstream section decreased where corrosive environments are dominant. In ternms of the centroid movement, the mid-channel bars grew up toward the downstream by switching erosion and accumulation, as sedimentation was prevailing in the downstream area of mid-channel bars and corrosion was dominant in the upper stream. Through grain size analysis, the study areas are divided into three sections according to the average grain size. In Section I, the mid-channel bars were formed as a result of sedimentary process of tides in the past. In Section II, the mid-channel bars were formed partly through the sedimentary process of rivers although the sedimentary process of tides is prevailing. In Section III, the mid-channel bars were formed mainly through the sedimentary process of rivers, even if it showed the sedimentary process of tides in the past.

논산천과 양화천 수계 내 하천 생물서식처의 특성 분석 (An Analysis of Ecological Habitat Characteristics in the Nonsan Stream and Yanghwa Stream)

  • 안태웅;안홍규;전승훈;최준길;하성룡;오종민
    • 환경영향평가
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    • 제19권2호
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    • pp.127-140
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    • 2010
  • This study investigates the relation between the location of a habitat and the ecological connections according to the habitat type in the riparian zone at the Nonsan Stream and Yanghwa Stream. Stream habitat is classified into nine types for the aquatic insects and fish. For vegetation and birds, habitat is classified into two types of medium-scale streams, including both physical and chemical streams are analyzed accordingly. Nowadays, The fundamental goal of the river environment restoration enterprise is the rehabilitation or the restoration of the characteristic the river scenic or environment. For instance, The Channel habitats which has physical nature environment such as flat, speedy rapids, or closed-channel wetland, pool are constructed by artificial, Consequently, make them autogenesis smoothy eco-environment. However, the river environment are controlled not only physical environment, but it also need reasonable the quality of the water to compose smoothly. Finally, understanding what influence are effecting on physical habitat environment which are made by natural factors to water quality are very important factor for the river environment restoration enterprise Therefore, In this research, we are targeting to a basin to investigate the environment of the physical channel habitat and evaluate the changing of the water quality. This results will be a important characteristic that can judge the physical habitat and reciprocality connected to the water quality or adequacy of restoration technology. Therefore in this study, as a step to quantify functions and values of habitats and definite factors to perform habitat, we selected a representative stream of sand-stream, gravel-stream to classify habitat characteristics and quantified the physical, chemical, biological characteristics.

수변(水邊) 복원(復元)의 이해와 외국의 관련 가이드라인의 검토 (A Review and Understanding of Stream Corridor Restoration)

  • 우효섭;김성태
    • 한국환경복원기술학회지
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    • 제3권3호
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    • pp.126-144
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    • 2000
  • The river environment of many streams in Korea has been deteriorated through the rapid industrialization and urbanization since the early 1960s. Deterioration includes single-purpose channel works for flood control and dense riparian land uses such even as the covering of the channel, as well as water pollution. As a result, many streams have lost their precious river environment such as ecological habitat, river friendliness and riparian scenery. In the early 1990s, however, the necessity of restoring those channelized streams was felt among the river engineers as well as environmentalists in Korea. This article describes a summary of the literature review of the stream restoration guidelines and relevant publication including those published in Japan, Europe and USA. A special focus is on the Stream Corridor Restoration, which was recently in the USA in 1998. First, the meaning and background of stream restoration is reviewed. Last, a draft of the contents of the stream restoration guideline, which is being developed by the authors and their colleagues, is briefly introduced.

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錦江 鹽河口에서의 潮流와 浮游堆積物 이동 (Tidal Current and Suspended Sediment Transport in the Keum Estuary,West Coast of Korea)

  • 오임상;나태경
    • 한국해양학회지
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    • 제30권3호
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    • pp.147-162
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    • 1995
  • 큰 潮差 지역인 금강 鹽河口의 潮流과 江水流入에 의한 순환과 이에 따른 부유물질의 이동을 알아보기 위해 1990년부터 1992년까지 세 정점에서 潮流 및 浮游퇴적물질 농도를 관측하였다. 이 염하구의 가장 외해쪽 관측점에서는 漲潮流 와 落潮流의 수직 구조는 거의 대칭형을 나타내고 있다. 또, 남측 수로에서는 漲 潮流가 全水層을 통해서 우세하나 북측 수로에서는 상층과 저층에서는 落潮流가 우세하고 중층에서는 漲潮流가 우세하였다. 남측 수로에서의 최대유속은 漲潮流 시에 중층에서 174 cm/s이었으며, 북측 수로의 최대 유속도 漲潮流시 중층에서 148 cm/s로 기록되었다. 반면에 표층과 저층에서는 최대유속 110.6 cm/s의 강한 유속이 落潮時에, 92.1 cm/s이 漲潮시에 각각 기록되었다. Hansen and Rattray 의 scheme에 의하면 금강 鹽河口는 Type 3로 분류될 수 있다. 즉 이 鹽河口의 수층은 漲潮流에 의해서 成層化하고 高潮後의 落潮流는 수층간의 밀도차를 줄여 서 亂流化한다. 이곳의 저층 흐름은 일반적으로 난류성이다. 한 조석 週期당 부유 물질의 이동량은 潮差와 하천유량에 달려있다고 생각된다. 관측기간중 최대의 부 유물질 이동은 하천유량이 최소였던 1991년 5월중 남측 수로에서의 측정치에서 초당 20.61톤으로 나타났으며, 최소 이동은 최소 潮差 기간인 1992년 7월에 북측 수로에서 초당 0.65톤으로 나타났다. 본 연구해역의 강한 해저전단속도는 창조류 기간 동안에 해저퇴적물을 침식시키며, 상대적으로 긴 落潮 기간은 이들 부유퇴적 물을 외해쪽으로 운반시키고 있다. 정상적인 강수 유입 조건하에서는 대부분의 부유물질이 남측 수로를 통해서 운반되나 강수의 유입이 많아지는 경우에는 오히 려 북측 수로를 통한 부유물질의 이동이 더 크다.

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수공구조물이 하천환경에 미치는 영향에 관한 연구(II) : 수질 및 생태학적특성 (A Study on Effects of Hydraulic Structure on River Environment(II) : Water Quality and Ecological Characteristics)

  • 안승섭;최윤영;이수식
    • 한국환경과학회지
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    • 제11권4호
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    • pp.309-317
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    • 2002
  • In this study, water protection reservoir is selected as the target which is located at the estuary of Taehwa river to analyze and examine the effects of hydraulic structure on river environment. This study examined the water quality variation characteristics among many effects of hydraulic structure on river environment before and after removal of the sediment protection reservoir when low flow is yielded. This study aims at the definition of factors which cause the change of ecological environment of river due to the effects of the sediment protection reservoir, and the proposal of the direction of environmental friendly river space development through the comparison of stream variation conditions(depth, velocity, and etc.) and riverbed variation characteristics with ecological depth condition of Taehwa-river's channel for each representative species of fish and examination those. Firstly, from the examination result of water quality when low flow is yielded before and after removal of the sediment protection reservoir for problems about water quality of river due to flow amount decrease in river, it is found that DO decreases about 0.78~0.86ppm at the lower stream of Myeongchon-gyo, and BOD decreases about 0.06~0.24ppm from right upper stream to the direction of estuary when the sediment protection reservoir is removed. It is known from the above that there is some improvement of water quality from the lower stream of Taehwa-gyo to the estuary in case of removal the sediment protection reservoir. Nextly, it is thought that the effects on ecosystem due to water depth and draw down in channel is not serious on the basis of the examination of water quality analysis result according to removal of sediment protection reservoir and hydraulic depths for reservation of ecosystem, these are 10~40cm for breeding season, 10~50cm for fry period, and 10~100cm for adult period of the representative species of fish in Korea.

수공구조물이 하천환경에 미치는 영향에 관한 연구(I) : 수리학적특성 (A Study on Effects of Hydraulic Structure on River Environment(I) : Hydraulic Characteristics)

  • 안승섭;최윤영;이수식
    • 한국환경과학회지
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    • 제11권3호
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    • pp.191-199
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    • 2002
  • In this study, water protection reservoir is selected as the target which is located at the estuary of Taehwa river to analyze and examine the effects of hydraulic structure on river environment. This study aims at the definition of factors which cause the change of ecological environment of river due to the effects of the sediment protection reservoir, and the proposal of the direction of environmental friendly river space development through the analysis and examination of stream variation conditions and riverbed variation characteristics among many effects of hydraulic structure on river environment before and after removal of the sediment protection reservoir when design flow is yielded. Firstly, in case of removal the existing sediment protection reservoir, the hydraulic variation characteristics like depth drop due to removal of the sediment protection reservoir are thought of little because it is examined that depths drop with about 0.01m and 0.01~0.56m when low flow is yielded and design flood yielded, respectively. Nextly, as the examination result of the variation characteristics of flow velocity in case of removal the existing sediment protection reservoir, it is thought that the concern about riverbed erosion is not serious according to the analyzed result as the mean velocity of the channel section where the velocity varies in case of removal the sediment protection reservoir is about 0.07~1.36m/s when low flow is yielded, and is about 1.02~2.41m/s when design flood is yielded despite riverbed erosion is concerned as it is examined that flow velocity is getting increase as about 0.01m/s when low flow is yielded and about 0.01~0.44m/s when design flood is yielded. Lastly, from the prediction result of riverbed variation for each flow amount condition before and after removal the sediment protection reservoir, it is known that the variation range of riverbed is nearly constant when flow amount of the channel exceeds a specific limit as it is analyzed that the more flow amount, the more erosion and sediment in the channel section of down stream part of the sediment protection reservoir and the sediment protection reservoir~Samho-gyo, and the variation ranges according to flow amount between flood condition and design flood condition have little difference in the channel section of the upstream of Samho-gyo.

양곤강 퇴적물 이동 및 장기 하상변화율 측정 (Estimation of Sediment Transport and Long-term Prediction of Riverbed Elevation Changes in Yangon River)

  • 살라잉샤인텟;장연식
    • 한국해안·해양공학회논문집
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    • 제31권6호
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    • pp.450-457
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    • 2019
  • 항구 주변 하천의 퇴적현상은 하천에 위치한 항구들이 공통적으로 직면하고 있는 문제이나, 그 심각성은 퇴적 속도, 수로 모양 및 크기, 강의 유체 역학적 거동 및 항구의 중요성에 따라 달라진다. 미얀마의 가장 큰 항구인 양곤항이 위치한 양곤강의 높은 퇴적율은 경제적인 측면에서 해결이 절실한 심각한 문제이다. 높은 퇴적물 침강 속도의 결과로 나타나는 양곤강, 파젠달 크릭 및 바고강이 합류하는 지역의 얕은 수심은 양곤항으로 향하는 항로를 막을 뿐만 아니라 양곤항으로 향하는 선박의 크기도 제한한다. 미얀마의 경제발전은 양곤항을 통한 교역에 크게 의존하기 때문에 양곤강의 퇴적물 수송 문제를 해결하기 위해 이 지역의 퇴적현상을 이해하는 연구가 필요하다. 본 논문은 Bagnold(1966) 이론을 적용하여 퇴적물 수송량을 계산하고 양곤 강의 강바닥 고도 변화를 예측하는 것을 목표로 한다. 양곤 강의 우기와 건기 사이의 상하수 운송에서 큰 차이가 발견 되며, 따라서 운송 된 퇴적물이 감소하는 건기에는 침강 문제가 더 심해진다. 건기에 계산한 퇴적율에 따르면 문제가 되는 양곤항 인근 하상 상승률은 연간 약 0.063 m로, 이 지역 연간 준설량을 고려할 때 향 후 50년간 하상이 약 3.15 m 상승할 것으로 예상되며 정확한 예측을 위해 보다 정밀한 관측과 수치모델 등을 사용한 심화연구과 필요하다.

하천의 공간적 특성을 고려한 탁수평가 GIS DB 분석 (The Analysis of GIS DB for the Evaluation of Turbid Water Considering Spatial Characteristics of River Channel)

  • 박진혁;이근상
    • 한국측량학회지
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    • 제24권1호
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    • pp.19-26
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    • 2006
  • 안동호와 임하호는 서로 인접되어 있지만, 강우에 따른 탁수발생에는 큰 차이를 보이고 있다. 이러한 임하호 탁수발생의 주요원인으로는 유역내 지질암 및 하천주변의 농경지 분포특성이 지적되고 있다. 본 연구에서는 농업 과학기술원에서 구축한 정밀토양도를 이용하여 탁수에 가장 큰 영향을 주는 표토층의 퇴적암의 분포특성을 분석한 결과 임하호 유역의 퇴적암 분포가 안동호 유역에 비해 1.87배 높게 나타남을 알 수 있었다. 또한 하천의 완충구역을 고려한 퇴적암의 분포특성에서는 하천으로부터 1,600m 이내에서 임하호가 안동호에 비해 탁수발생에 취약한 특성을 보였다. 그리고 토지피복 분석에서는 하천구역 1,600m 내에서 임하호의 농경지 분포가 안동호에 비해 높게 나타났으며, 이러한 농경지 분포특성으로 식생피복인자도 임하호가 안동호에 비해 높게 평가되었다.

낙동강 하구지역의 식물플랑크톤 극대역 변동에 관한 수직시뮬레이션 -II. 식물플랑크톤 극대역 변동의 수치시뮬레이션- (The numerical simulation on variation of phytoplankton maximum region in the estuary of Nakdong river -II. The numerical simulation on variation of phytoplankton maximum region-)

  • 이대인
    • 한국환경과학회지
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    • 제9권5호
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    • pp.375-384
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    • 2000
  • It is very important to interprete and simulate the variation of phytoplankton maximum region for the prediction and control of red tide. This study was composed of two parts first the hydrodynamic simulation such as residual current and salinity diffusion and second the ecological simulation such as phytoplankton distribution according to freshwater discharge and pollutant loads. Without the Nakdong river discharge residual current was stagnated in inner side of this estuary and surface distribution of salinity was over 25psu. On the contrary with summer mean discharge freshwater stretched very far outward and some waters flowed into Chinhae Bay through the Kadok channel and low salinity extended over coastal sea and salinity front occurred. From the result of contributed physical process to phytioplankton biomass the accumulation was occurred at the west part of this estuary and the Kadok channel with the Nakdong river discharge. When more increased input discharge the accumulation band was transported to outer side of this estuary. The frequently outbreak of red tide in this area is caused by accumulation of physical processes. The phytoplankton maximum region located inner side of this estuary without the Nakdong river discharge and with mean discharge of winter but it was moved to outer side when mean discharge of the Nakdong river was increased. The variation of input concentration from the land loads was not largely influenced on phytoplankton biomass and location of maximum region. When discharge was increased phytoplankton maximum region was transferred to inner side of the Kadok channel. ON the other hand when discharge was decreased phytoplankton maximum region was transferred to inner side of this estuary and chlorophyll a contents increased to over 20$\mu\textrm{g}$/L Therefore if any other conditions are favorable for growth of phytoplankton. decreas of discharge causes to increase of possibility of red tide outbreak.

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