• Title/Summary/Keyword: Sejong Weir

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Changes in Landscape Characteristics of Stream Habitats with the Construction and Operation of River-Crossing Structures in the Geum-gang River, South Korea (금강에서 횡단구조물의 설치와 운영에 따른 하천 서식처의 경관 특성 변화)

  • Kim, Dana;Lee, Cheolho;Kim, Hwirae;Ock, Giyoung;Cho, Kang-Hyun
    • Ecology and Resilient Infrastructure
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    • v.8 no.1
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    • pp.64-78
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    • 2021
  • This study was conducted to find out the effect of the construction and operation of river-crossing structures on the habitat landscape characteristics in the Geum-gang River, South Korea. A total of three study reaches were selected in the downstream of the Daecheong Dam: the Buyong-ri reach, which is a control that is not affected by the construction and operation of the weir of the Four Rivers Project and Sejong-bo Weir reach and Gongju-bo Weir reach of the upper and lower sections of each weir that are affected by the weir construction and operation. The habitat type was classified, and then the structural characteristics of the landscape were analyzed using aerial photographs taken before and after the construction of the Daecheong Dam, before and after the construction of the weir, and before and after the weir gate operation. After the construction of Daecheong Dam in Geum River, the area of the bare land greatly decreased, and the area of grassland and woodland increased in the downstream of the dam. In addition, the patch number in the river landscape increased, the patch size decreased, and the landscape shape index and the habitat diversity increased. Therefore, after the construction of the dam, the bare land habitat was changed to a vegetated habitat, and the habitat was fragmented and diversified in the downstream of the dam. After the construction of the weirs, the area of open water increased by 18% in the Sejong-bo reach and by 90% in the Gongju-bo reach, and the landscape shape index of the open water decreased by 32% in the Sejong-bo reach and by 35% in the Gongju-bo reach, and the habitat diversity index decreased to 25% in the Sejong-bo reach and to 24% in the Gongju-bo reach. Therefore, the open water habitat was expanded, the shape of the habitat was simplified, and the habitat diversity decreased according to the construction of the weirs. After water-gate opening of the weir, the bare land that disappeared after the construction of the weir reappeared, and the landscape shape index and habitat diversity index increased in both terrestrial and open water habitats. Therefore, it was found that the landscape characteristics of the river habitats were restored to the pre-construction of the weir by the operation of the weir gate. The effect of weir gate opening was delayed in the downstream than in the upstream of the weir. Although the characteristics of the landscape structure in the river habitat changed due to the construction of the river-crossing structures, it is thought that proper technology development for the ecological operation of the structures is necessary as the habitat environments can be restored by the operation of these structures.

Preliminary Ecological Assessments of Water Chemistry, Trophic Compositions, and the Ecosystem Health on Massive Constructions of Three Weirs in Geum-River Watershed

  • Ko, Dae-Geun;Choi, Ji-Woong;An, Kwang-Guk
    • Journal of Ecology and Environment
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    • v.39 no.1
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    • pp.61-70
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    • 2016
  • Major objectives of the study were to analyze chemical and biological influences of the river ecosystem on the artificial weir construction at three regions of Sejong-Weir (Sj-W), Gongju-Weir (Gj-W), and Baekje-Weir (Bj-W) during 2008-2012. After the weir construction, the discharge volume increased up to 2.9 times, and biological oxygen demand (BOD) and electrical conductivity (EC) significantly decreased (p < 0.05). Also, the decrease of total phosphorus (TP) was also evident after the weir construction, but still hyper-eutrophic conditions, based on criteria by , were maintained. Multi-metric model of Index of Biological Integrity (IBI) showed that IBI values averaged 21.0 (range: 20-22; fair condition) in the Bwc, and 14.3 (range: 12-18; poor condition) in the Awc. The model values of IBI in Sj-W and Gj-W were significantly decreased after the weir construction. The model of Self-Organizing Map (SOM) showed that two groups (cluster I and cluster II) of Bwc and Awc were divided in the analysis based on the clustering map trained by the SOM. Principal Component Analysis (PCA) was similar to the results of the SOM analysis. Taken together, this research suggests that the weir construction on the river modified the discharge volume and the physical habitat structures along with distinct changes of some chemical water quality. These physical and chemical factors influenced the ecosystem health, measured as a model value of IBI.

Evaluation of Eutrophication and Control Alternatives in Sejong Weir using EFDC Model (EFDC 모델에 의한 세종보의 부영양화 및 제어대책 평가)

  • Yun, Yeojeong;Jang, Eunji;Park, Hyung-Seok;Chung, Se-Woong
    • Journal of Environmental Impact Assessment
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    • v.27 no.6
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    • pp.548-561
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    • 2018
  • The objectives of this study were to construct a three-dimensional (3D) hydrodynamic and water quality model (EFDC) for the river reach between the Daecheong dam and the Sejong weir, which are directly affected by Gap and Miho streams located in the middle of the Geum River, and to evaluate the trophic status and water quality improvement effect according to the flow control and pollutant load reduction scenarios. The EFDC model was calibrated with the field data including waterlevel, temperature and water quality collected from September, 2012 to April, 2013. The model showed a good agreement with the field data and adequately replicated the spatial and temporal variations of water surface elevation, temperature and water quality. Especially, it was confirmed that spatial distributions of nutrients and algae biomass have wide variation of transverse direction. Also, from the analysis of algal growth limiting factor, it was found that phosphorous loadings from Gap and Miho streams to Sejong weir induce eutrophication and algal bloom. The scenario of pollutant load reduction from Gap and Miho streams showed a significant effect on the improvement of water quality; 4.7~18.2% for Chl-a, 5.4~21.9% for TP at Cheongwon-1 site, and 4.2~ 17.3% for Chl-a and 4.7~19.4% for TP at Yeongi site. In addition, the eutrophication index value, identifying the tropic status of the river, was improved. Meanwhile, flow control of Daecheong Dam and Sejong weir showed little effect on the improvement of water quality; 1.5~2.4% for Chl-a, 2.5~ 3.8% for TP at Cheongwon-1 site, and 1.2~2.1% for Chl-a and 0.9~1.5% for TP at Yeongi site. Therefore, improvement of the water quality in Gap and Miho streams is essential and a prerequirement to meet the target water quality level of the study area.

Analysis of influence on water quality and harmful algal blooms due to weir gate control in the Nakdong River, Geum River, and Yeongsan River (낙동강, 금강 및 영산강 가동보 운영이 수질 및 녹조현상에 미치는 영향 분석)

  • Seo, Dongil;Kim, Jaeyoung;Kim, Jinsoo
    • Journal of Korea Water Resources Association
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    • v.53 no.10
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    • pp.877-887
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    • 2020
  • A 3-Dimensional hydrodynamic and water quality model was applied to evaluate the effects of weir gate operations on water quality and harmful algal bloom (HAB) occurrences at selected locations in the Nakdong River, Geum River, and Yeongsan River. For the Geum River and Yeongsan River, when the gates are left open, annual and summer Chl-a and HABs were decreased at upstream locations, Sejong Weir and Seungchon Weir, but summer average concentrations of Chl-a and HABs were increased at downstream locations, Baekje Weir and Juksan Weir. For the open scenario, the reduced hydraulic residence time in the upper stream areas of the Geum River and Yeongsan River would allow less available time for nutrient consumption that would result in higher dissolved inorganic phosphorus concentrations followed by higher algal growth in the downstream areas. However, in the case of the Nakdong River, both annual and summer Chl-a and HABs were increased in all locations for the open scenario. This condition seems to be resulted in due to increased light availability by reduced water depths. Changes in Chl-a and HABs occurrences due to the water gate control in the study sites are different due to differences in physical, chemical, and biological conditions in each location.

Three-Dimensional Flow Modeling near Sejong Weir Using EFDC (EFDC를 이용한 세종보 주변 3차원 흐름 모의)

  • Lee, Haegyun;Lee, Namjoo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.488-488
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    • 2022
  • 과거 하천의 흐름과 수질 모의를 위해서는 정상상태 모델인 QUAL2E 가 널리 사용되어 왔지만, 여름철에 강우가 집중되고, 댐과 보에 의하여 지체현상이 발생하는 등 우리나라 특유의 사정을 고려한다면 최적의 대안으로 보기 힘들다. 이에 따라 비정상상태의 흐름 및 수질모델의 적용이 요구되고 있으며 이에 대한 많은 연구가 수행 되어 왔다. 본 연구에서는 금강수계의 중류에 위치한 세종보 주변에 3차원 동역학적 수리해석 모델인 EFDC를 구축하고 모델을 보정한 후, 대청댐의 유량 변화에 대하여 흐름 및 수질을 모의하였다.

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The Gut Content Analysis of Polypedilum scalaenum in the Large-scale Weirs of 4 Major River Ecosystems (4대강 보에 서식하는 삼지창무늬깔따구(Polypedilum scalaenum) 위 내용물 분석)

  • Na, Young-Kwon;Jo, Hyunbin;Park, Jae-Won;Chang, Kwang-Hyeon;Kwak, Ihn-Sil
    • Korean Journal of Ecology and Environment
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    • v.53 no.1
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    • pp.55-62
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    • 2020
  • Chironomidae widely utilize as a biological indicator that has various types of feeding pattern such as omnivorous, herbivorous and carnivorous. Polypedilum scalaenum is known as omnivorous, it plays an important role in the food chain of freshwater ecosystems in Korea. Nevertheless, detailed information about diet items of P. scalaenum is still lacking. The purpose of this study is to identify the gut and intestine contents of items on P. scalaenum inhabiting the large-scale weirs of the four major river ecosystems(Ipoh Weir, Sejong Weir, Juksan Weir, Gangjeong-Goryeong Weir, and Dalseong Weir). Phytoplankton was dominant diet items among the study sites. However, zooplankton (i.e. appendages, setae) only found in Ipoh Weir. The phytoplankton species composition in the study sites was correspond to the diet items in the gut and intestine contents of P. scalaenum. In summary, analysis of P. scalaenum gut and intestine contents in this study was able to identify the feeding characteristics of omnivorous Chironomidae, and in particular, it was possible to study the species composition of basic producers in the surrounding aquatic environment by analyzing the contents of the digestive tracts.

Temporal changes in river channel habitat diversity by large weirs in the Geum River using satellite imagery analysis (위성영상 분석을 통한 금강수계 대형보에 따른 수변서식처 다양성 변화 연구)

  • Ock, Giyoung;Choi, Mikyoung;Kim, Jeong-Cheol;Park, Hyung-Geun
    • Korean Journal of Environmental Biology
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    • v.38 no.4
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    • pp.705-713
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    • 2020
  • The present study investigated the temporal changes of river habitats caused by construction and operation of the three large weirs (Sejong, Gongju, and Baekje) in the Geum River. High resolution satellite imagery taken during three periods (preconstruction, before and after gate operation) were used for habitat analysis. We divided bar area into eight habitat types in addition to water area. Then, we identified the nine habitat types from the satellite imagery and estimated each habitat area. Our results show that after weir construction, large bar areas were dramatically decreased and bareland was nearly absent post gate-operation in all three weirs. However, total bar area and bareland were again increased distinctively soon after weir opening events, especially in the uppermost weir, the Sejongbo. These results suggest that weir opening operations provide a relatively simple channel of more diverse through the process of increasing bar area in a river channel.

Changes in Community Structure of Chironomidae Caused by Variability of Environmental Factors among Weir Sections in Korean Rivers (국내 보구간의 환경요인 차이에 의한 깔따구의 군집 구성 변화)

  • Kim, Won-Seok;Park, Jae-Won;Hong, Cheol;Choi, Bohyung;Kim, Ho-Joon;Park, YeonJeong;Park, Jung-Ho;Song, Haeng-Seop;Kwak, Ihn-Sil
    • Korean Journal of Ecology and Environment
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    • v.53 no.1
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    • pp.46-54
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    • 2020
  • Artificial and natural changes such as weir construction and climate change often cause abnormal blooming of organism. Therefore, variations in species community of organisms have been actively investigated to identify influential environmental changes on the fresh water ecosystem. In this study, we investigated Chironomidae community and environmental factors at 5 representative weirs (Ipo, IP; Sejong, SJ; Juksan, JS; Gangjeong-goryung, GG; and Dalsung weir) in 4 Korean major rivers to figure out relationship between Chironomidae community and environmental factors. Environmental factors indicating organic matter (total organic carbon, TOC and Chlorophyll-a, Chl-a) showed lower concentration in IP and SJ compared with other sites(JS, GG and DS). 3 sub-family 18 genus 25 species of Chironomidae community were found in this study. Among them, Chironominae was dominant in JS (Tanytarsus sp.1), GG (Polypedilum scalaenum) and DS (Polypedilum scalaenum), while different sub-family were dominant in IP (Orthcladinae, Tokunagayusurika akamushi) and SJ (Tanypodinae, Tanypus punctipennis). Moreover, based on the dominant species of Chironomidae community and environmental factors, the cluster analysis classified our study sites into 3 groups. These results imply that the diet resource is the most important factor for dominance of Chironomidae in Korean rivers. We also suggest that further study on the identification of diet resources for each Chironomidae specie is required for better understating of distribution in species community of Chironomidae at various ecosystems.

Numerical Simulation of Geomorphic Changes in the River After Opening of Gates in Sejong Weir (보 개방 후 하도의 지형변동 수치모의 분석 (세종보를 중심으로))

  • Jang, Chang-Lea;Baek, Tae Hyo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2019.05a
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    • pp.240-244
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    • 2019
  • 본 연구에서는 2차원 수치모형(Nays2DH)을 적용하여 금강 상류에 건설된 세종보를 중심으로 보 개방 후에 홍수량 변화에 의한 하도의 지형변화 과정을 분석하였다. 수치모의를 위한 홍수량은 금남수위표에서 2018년 1월부터 2018년 12월까지 각 시간별 유량을 일반화(normalizing) 하여 하였다. 부정류 홍수량은 2018년 7월의 홍수량 $3,341m^3/s$을 적용하였으며, 부정류의 첨두유량($3,341m^3/s$)이 발생시간은 28시간이고 유출량은 $108.1m^3/s$으로 설정하였다. 수치모의 시간은 120시간으로 설정하여 사주의 발달, 이동, 사주의 형상 및 하도 지형변화를 분석하였다. 첨두유량은 $2,281m^3/s$, 2차 첨두유량은 $3,515m^3/s$, 3차 첨두유량은 $4,259m^3/s$으로 각각 26시간, 107시간, 200시간 동안 발생하는 부정류를 적용하였다. 수치모의 구간은 세종보를 중심으로 상하류 6.5 km 구간을 설정하였으며, 보는 완전히 개방된 것으로 설정하였다. 단일 홍수가 유입될 때 보다, 3개의 홍수가 연속으로 유입될 때에는 보 상류에서 사주의 크기가 크고, 사주의 수가 증가하며, 저수로의 변화가 다양하였다. 흐름이 집중되는 구간에서 하상은 깊게 세굴 되어 하천구조물의 안정과 주의가 필요하다. 그러나 하도의 다양성과 역동성이 크게 개선되는 특성을 보여주었다. 하상의 종방향 특성을 고려할 때, 세종보 하류에서는 하상고가 상승하는 특성을 보여 주었으나, 하상고가 불규칙한 특성을 보여주었다. 이는 단일홍수에 비해하여 하도의 역동성이 큰 것을 의미한다, 사주의 이동속도는 1차 첨두유량일 때 가장 빠르게 나타났지만, 이후 2차 및 3차의 유량이 더 많았지만 사주의 이동속도가 감소하였다. 보를 완전개방 하였을 때는 흐름이 안정화 되어 이동속도 변동폭이 작아졌다.

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Formation and Deformation of the Fluid Mud Layer on Riverbeds under the Influence of the Hydrological Property and Organic Matter Composition (하천 수문 특성과 유기물 성상 변화에 따른 하상 유동상 퇴적물 거동 연구)

  • Trung Tin Huynh;Jin Hur;Byung Joon Lee
    • Journal of Korean Society on Water Environment
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    • v.40 no.2
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    • pp.79-88
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    • 2024
  • This study employed field measurements and biogeochemical analysis to examine the effects of seasonal conditions (e.g., temperature and precipitation) and human intervention (e.g., dam or weir construction) on the chemical composition of dissolved organic matter, flocculation kinetics of suspended particulate matter, and formation of the fluid mud layer on riverbeds. The results indicated that a water environment with a substantial amount of biopolymers offered favorable conditions for flocculation kinetics during an algal bloom period in summer; a thick fluid mud layer was found to be predominated with cohesive materials during this period. However, after high rainfall, a substantial influx of terrigenous humic substances led to enhanced stabilization of the particulate matter, thereby decreasing flocculation and deposition, and the reduced biopolymer composition served to weaken the erosion resistance of the fluid mud on the riverbed. Moreover, a high-turbulence condition disaggregated the flocs and the fluid mud layer and resuspended the suspended particulate matter in the water column. This study demonstrates the mutual relationship that exists between biogeochemistry, flocculation kinetics, and the formation of the fluid mud layer on the riverine area during different seasons and under varying hydrological conditions. These findings are expected to eventually help inform the more optimal management of water resources, which is an urgent task in the face of anthropogenic stressors and climate change.