• Title/Summary/Keyword: rivers sediment

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Distribution and Characteristics on Water Level Change and Salix subfragilis Community Formation in Namgang-dam (남강댐의 운영수위 변경에 따른 선버들 군락의 분포현황 및 특성)

  • Jung, Hea Reyn;Kim, Ki Heung;Park, Jae Hyeon;Lee, Suk Bae
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.16 no.6
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    • pp.1-15
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    • 2013
  • The present Namgang Dam had been completed in 2000, Salix subfragilis communities began to form in 2003 and their distribution area have been rapidly extended into nine times in 2010. In order to deduce correlation between water level and distribution of Salix subfragilis communities under this background in Namgang-dam reservoir, distribution characteristics and widening direction of Salix subfragilis communities have been analyzed by aerial photographs and water levels has been reviewed, also heights and ages of Salix subfragilis have been surveyed in field. The water levels of Namgang-dam related germination of Salix subfragilis have been analyzed in May and June from 2000 to 2010, mean water level, minimum water level and maximum water level were 37.87m, 36.99m and 38.82m, respectively. The oldest ages were 9-13 years, average diameters of breast height, average heights, average numbers and average crown area were respectively 3.9-8.8cm, 3.8-7.5m, $0.53/m^2$ and $0.98m^2/m^2$ in sites. Therefore, this results showed that the first recruitment of Salix subfragilis was in May 2002 when water levels have been maintained as 38.76-41.31m and the widening of Salix subfragilis communities was in May 2004 and 2005 when mean minimum water levels have been maintained as 38.76-41.31m. Salix subfragilis communities formed climax forest in Namgang-dam shore, this phenomena were different from the succession processes of Salix in rivers appeared landforming by deposition of sediment.

The Study of the Beach Change into Structures (인공 구조물에 의한 해빈변형 연구)

  • Kim, Hyo Seob;Jung, Byung Soon;Oh, Byung Cheol
    • Proceedings of the Korea Water Resources Association Conference
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    • 2004.05b
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    • pp.1445-1449
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    • 2004
  • Even though there can be a relative long-term or short-term change of their size in natural beaches due to various changes of sea condition such as the location, weather condition (wind and rain) and sea water flow, the budget of deposits in a specific area is generally regarded to be in a condition of equilibrium in terms of technology. However, as coasts are developed by many different kinds of ways (such as construction of sea walls and estuarine, dredging for gathering the aggregate and shore protection construction for establishing a structure) and sources of silt and gravel from rivers are decreased in balanced beaches, the beaches are in a serious danger of lack of sand and sand sources which are one of the maul elements to consist of them. Many swimming beaches in East Sea are directly exposed by waves generated and transmitted from outer seas. On the other hand, the Song-Do sandy beach which is this study's target area has a great condition for beach development because it locates the deepest place that is relatively shallow in Young-Il Man and there is big energy decrease given to waves from outer seas while the waves are reaching the Song-Do beach. Nevertheless, it is considered that artificial condition changes such as dredging for site extension by POSCO, getting straight of Hyoung-San Gang river flow and extension of Po-Hang harbor caused the sand loss of the beach. Therefore, some recovery plans of Song-Do sandy beach will be presented in this study and they will be compared and examined each other by numerical modeling experiment. After that, the best plan will be recommended.

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Two-Dimensional Hydrodynamic and Water Quality Simulations for a Coinjunctive System of Daecheong Reservoir and Its Downstream (대청호와 하류하천 연속시스템의 2차원 수리·모의)

  • Jung, Yong Rak;Chung, Se Woong;Ryu, In Gu;Choi, Jung Kyu
    • Journal of Korean Society on Water Environment
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    • v.24 no.5
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    • pp.581-591
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    • 2008
  • Most of our rivers are fragmented by the presence of at least one large dam. Dams are often the most substantial controller of the flow regimes and aquatic environments of natural river system. The quality of downstream water released from a stratified reservoir is highly dependent on upstream reservoir water quality. Thus, an integrated modeling approach is more efficient, compared to fragmented modeling approach, and necessary to better interpret the impact of dam operation on the down stream water quality. The objectives of this study were to develop an integrated reservoir-river modeling system for Daecheong Reservoir and its downstream using a two-dimensional laterally averaged hydrodynamic and water quality model, and evaluate the model's performance against field measurement data. The integrated model was calibrated and verified using filed data obtained in 2004 and 2006. The model showed satisfactory performance in predicting temporal variations of water stage, temperature, and suspended solid concentration. In addition, the reservoir-river model showed efficient computation time as it took only 3 hours for one year simulation using personal computer (1.88 Ghz, 1.00 GB RAM). The suggested modeling system can be effectively used for assisting integrated management of reservoir and river water quality.

A study on comparison and analysis of chlorophyll sensor with aceton extraction for chlorophyll measurement in the Nakdong River (낙동강에서 클로로필(Chlorophyll) 측정을 위한 클로로필 센서와 아세톤 추출법의 비교분석에 관한 연구)

  • Park, Joo-Hyun;Lee, Kyoung-Jin;Cho, Jae-Won;Jeon, Sook-Lye;Kang, Seon-Hong
    • Journal of Korean Society of Water and Wastewater
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    • v.29 no.3
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    • pp.325-335
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    • 2015
  • Concerns about water quality in the Nakdong River have been raised because the Nakdong River will change from a lotic environment to a lentic environmental due to the installation of eight weirs to be constructed as part of the Four Major Rivers Restoration Project. The rapid urbanization and industrialization of the middle and the lower reaches of Nakdong River causes the indiscreet discharge of uncleanly living sewage and industrial wastewater. And the water quality of lower reaches of Nakdong River is getting seriously worse. Owing to the water shortage of Nakdong River and the closing of reaches because of the estuary dyke in the dry season, the velocity of a moving fluid is almost accumulated under 0.03m/sec. Then a pollutant is piled up on the bottom of the river. Polluted sediment is formed and nutrition level of water is increased more and more. The eutrophication state propagated to dark brown or green from eutrophication often comes out. Therefore in this study, we measured Chl. a of chlorophyll sensor (YSI6600V2) and aceton extraction through field observation in the Nakdong River and Samrangjin. And we evaluated the reliability of chlorophyll sensor. In correlation analysis between chlorophyll sensor and aceton extraction, it shows high relation in general. And it also shows high relation among the chlorophyll sensor and aceton extraction of the dominant diatom (Skeletonema costatum), Dinophyta (Prorocentrum minimum) in the Nakdong River estuary by laboratory analysis results.

Prediction of River-bed Change Using River Channel Characteristics and A Numerical Model (하도특성량과 수치모형에 의한 하상변동 예측)

  • Yoon, Yeo Seung;Ahn, Kyeong Soo
    • Journal of Wetlands Research
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    • v.9 no.3
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    • pp.51-61
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    • 2007
  • In natural river, river-bed change is greatly influenced by the various factors such as river improvement, change of watershed land use, construction of dam and reservoir, gravel mining, and so on. The knowledge about river-bed change in the river is essential in the river modification, wetlands plan, and maintaining stable alluvial rivers. In this study, river-bed change in the future was predicted by investigating river channel characteristics which play dominant role in the formation of channel and based on the numerical model through river survey and the grain size analysis. The Proposed investigation and model was applied to the Geum river and the Miho stream which have been experienced river degradation due to river aggregate dredging and now seams to be stable. The result of potential river-bed change which was estimated by investigating channel characteristic including slope of channel, friction velocity, and so on is similar to that which was estimated based on the numerical model. It was found that the Geum river and the Miho stream will be stable. In the future, if considering the characteristics of river channel which is estimated by the river-bed scour, sediment, and so on, it is possible that river improvement and wetland restoration plan are established stably and naturally.

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Simulation Model of Dual-Species Biofilm Growth in Hydrodynamic Flow (유체 흐름 안에서 두 종의 생물막 성장 시뮬레이션 모델)

  • Jeon, Won-Ju;Lee, Sang-Hee
    • Journal of the Korea Society for Simulation
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    • v.20 no.1
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    • pp.97-105
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    • 2011
  • In rivers and streams, biofilms are thin layers of greenish-brown slime attached to rocks, plants, and other surfaces. Biofilms play key roles in primary production and cycling of nutrients, water quality remediation, suspended sediment removal, and energy flow to higher trophic levels. In the present study, we developed a two-dimensional cellular automata model to simulate mixed biofilms of toxin-sensitive and toxin-producing species in hydrodynamic flow. The flow was generated by a stochastic process for uniform flow and by using the Navier-Stokes equation for non-uniform flow. Minimized local rules governing reproduction and mortality of the species were executed in the self-organizing processes to elucidate interactions between toxin-producing and toxin-sensitive species in competition over nutrients. We briefly discuss the morphology of the simulated biofilm under different flow conditions.

Use of a Drone for Mapping and Time Series Image Acquisition of Tidal Zones (드론을 활용한 갯벌 지형 및 시계열 정보의 획득)

  • Oh, Jaehong;Kim, Duk-jin;Lee, Hyoseong
    • Journal of the Korean Institute of Intelligent Systems
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    • v.27 no.2
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    • pp.119-125
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    • 2017
  • The mud flat in Korea is the geographical feature generated from the sediment of rivers of Korea and China and it is the important topography for pollution purification and fishing industry. The mud flat is difficult to access such that it requires the aerial survey for the high-resolution spatial information of the area. In this study we used drones instead of the conventional aerial and remote sensing approaches which have shortcomings of costs and revisit times. We carried out GPS-based control point survey, temporal image acquisition using drones, bundle adjustment, stereo image processing for DSM and ortho photo generation, followed by co-registration between the spatio-temporal information.

Restoration Method of Small Stream using Artificial Step-pool Sequences (계단상 하상구조를 이용한 계류복원 방안)

  • Kim, Suk-Woo;Chun, Kun-Woo;Kim, Kyoung-Nam;Park, Chong-Min;Marutani, Tomomi
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.14 no.4
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    • pp.11-23
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    • 2011
  • Mountain streams, which are major components of an entire river network, play an important role as the source of water, sediment, coarse and fine organic matter, and nutrients for lowland rivers. Therefore, dynamics and downstream linkages of each compartment of the mountain stream can be essential for watershed management in catchment scale. The dynamics and downstream linkages are understood as a development of step-pool sequences along a river course. Recently, stream restoration after flooding event often employ the development of step-pool sequences in the world. In this paper, we 1) examined the geomorphic characteristics and the role of step-pool sequences in steep mountain streams by reviewing the results of past studies, and 2) introduced the case studies of stream restoration using step-pool sequences, and finally 3) addressed design methods considering geometry and stability of artificial step-pool sequences for stream restoration. Step-pool sequences play an important role not only as roughness with energy dissipation but also as heterogeneity of stream feature for aquatic habitat. Step-pool sequences, even if they are constructed artificially along a stream, may be effective for small stream restoration considering eco-friendly torrent controls. So far the artificial step-pool sequences were employed for mountainous streams, but those would be applied to urban stream.

Distribution of Inorganic Phosphorus Fractions in Sediments of the South Han River over a Rainy Season

  • Vo, Nguyen Xuan Que;Ji, Yoonhwan;Doan, Tuan Van;Kang, Hojeong
    • Environmental Engineering Research
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    • v.19 no.3
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    • pp.229-240
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    • 2014
  • Rain events are extremely important for phosphorus (P) dynamics in rivers since large portions of annual river P loads can be transported in particulate forms during only a few major events. Despite their importance, a precise estimation of P contribution in river sediments after rainy seasons has rarely been reported. This study estimated the longitudinal variation in the concentrations of different inorganic P fractions in bed sediments of the South Han River over a rainy season, through using the sequential extraction method. Non-apatite P was the dominant form, representing more than 60% of total inorganic P (TIP) content in sediments. Although no significant variation of TIP contents was observed, the proportion of bioavailable P in TIP pools decreased after the rainy season. The concentrations of individual inorganic P fractions ($NH_4Cl-P$, $NH_4F-P$, NaOH-P, and $H_2SO_4-P$) were significantly different across sites and after the rainy season (p < 0.05, two-way ANOVA). $NH_4F-P$ and NaOH-P concentrations in sediments increased in a downstream direction. After the rainy season, $NH_4Cl-P$ concentrations in sediments decreased whereas $NH_4F-P$ and $H_2SO_4-P$ concentrations increased. The redistribution of individual P fractions in sediments observed after rainy seasons were possibly due to the changing contribution of various sources of runoff and the variation in flow related particle size. Current estimation of P in bed sediments of the South Han River suggests a lower potential of internal P loading from sediments after the rainy season.

Importance of Bed Load on Total Sediment Load in Gravel Rivers (자갈하천에서 총유사량에 대한 소류사의 중요성)

  • Park, Sang Deog;Nam, Myeong Jun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.64-64
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    • 2015
  • 하천에서 토사유출, 하상변동, 제방유실 등과 같은 현상은 유사 이송과정에 관련되어 있다. 하천에 대한 다양한 공학적 문제들을 해결하기 위한 첫 단계로서 유사이송의 특성을 파악하는 것은 중요하다. 유수에 의한 하상재료 이송과정은 핵심 기작에 따라 부유사와 소류사로 구분할 수 있으며 이들의 합이 총유사량이다. 하천에서 유사이송을 정량적으로 이해하기 위해서는 부유사량과 소류사량을 측정할 필요가 있다. 소류사가 부유사에 비하여 측정이 어렵고 많은 시간이 소요되기 때문에 소류사량은 현장실측 자료의 수가 매우 부족하나 부유사량 자료의 수는 상대적으로 많은 실정이다. 홍수 시 하천에서 부유사량은 측정하고 소류사량은 기존 유사량 공식을 이용해 산정하여 총유사량을 추정하기도 한다. 이 같은 총유사량의 신뢰한계는 소류사량 추정 공식에 의존될 수밖에 없다. 본 연구에서는 자갈하상 하천에서 측정한 총유사량 중에 소류사량이 차지하는 정도를 조사하였다. 일반적으로 자갈하천은 모래하천에 비하여 경사가 급하고 유속이 빠르며 산지하천이 이 경우에 속한다. 산지하천에서 부유사량의 변동은 하상조건보다는 유역에서 공급되는 토사유출량의 크기에 좌우되나 소류사량은 주로 하상조건에 영향을 받는다. 양양남대천의 실측 유사량에 대한 유사량-유량의 관계곡선 기울기를 보면 부유사보다 소류사의 경우가 더 크며 서로 교차하는 유량조건, 즉 유사량비(=소류사량/부유사량)가 1인 한계유량이 존재한다. 유량이 적을 때는 소류사가 이동하지 않더라도 부유사량이 존재하였으나 유량이 한계유량보다 크면 소류사량이 더 많았다. 소규모 자갈하천인 Oak Creek (Milhous, 1973)에서 조사한 총유사량에서도 한계유량이 확인되고 있다. 모래로 된 대하천에서 유사량비는 현저히 작으며 한계유량도 확인되지 않고 있으나 경사가 급한 자갈하천에서는 한계유량이 존재한다. 이는 하천에서 유량이 증가하고 하상재료가 커지면 총유사량에서 소류사량의 중요성이 증가한다는 것을 의미한다.

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