• Title/Summary/Keyword: weir removal

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Laboratory experiment on the adjustment processes of channel by weir removal (보 철거에 의한 하도 적응과정의 실험적 분석)

  • Kim, Gi Jung;Jang, Chang-Lae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2016.05a
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    • pp.401-405
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    • 2016
  • 중소하천에 기능을 상실한 하천 횡단 수리구조물이 많이 설치되어 있으며, 수리구조물 상류와 하류에 흐름 및 유사의 이송에 대한 연속성을 차단하고, 하천 교란의 원인이 되고 있다. 또한 사회적으로 수리구조물의 기능을 개선하거나 철거하여 하천복원의 필요성이 제기되고 있다. 따라서 본 연구에서는 실내실험을 통해 하천횡단 수리구조물에 의하여 형성된 상류의 지형이 하류에 미치는 영향을 분석하였다. 흐름이 하천횡단 수리구조물을 월류하면서 직하류에 세굴이 발생하고, 상류에서 델타를 형성하면서 퇴적되었다. 상류에서는 사주가 형성되었으며, 하류의 지형변화에 영향을 주었다. 하천횡단 수리구조물의 상류에 형성된 델타는 하류로 일정하게 이동하고 있으며, 델타가 구조물에 도달하기 바로 직전에서 수리구조물하류의 세굴이 가장 깊게 나타났다. 수리구조물 철거 후, 상류에 퇴적된 토사는 흐름에 의하여 급격하게 하류로 유실되었다. 천급점은 상류로 이동하며, 두부침식을 일으켰다. 일정한 시간이 지난 후에 상류에서 유입되는 유사에 의하여 침식은 감소되었다. 시간이 지나면서 하류에서 교호사주의 형상을 유지하며, 평형상태를 유지하였다.

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Impacts on the four major tributary rivers in Seoul due to Singok submerged weir removal and the opening of the weir (신곡수중보 해체·개방이 서울시 주요 지류하천에 미치는 수리영향과 물환경 이슈 분석)

  • Kim, Sung Eun;Shin, Sang-Young;Kang, Won-Sam;Baek, Jong-Rak
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.470-470
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    • 2022
  • 서울시 한강본류(이하 한강)의 4대 지류하천인 안양천, 중랑천, 탄천, 홍제천은 한강과 도심을 연결하는 도심 자연생태계의 중심공간이자, 서울시민의 대표적인 친수환경 공간으로서 그 관리의 중요성이 커지고 있다. 한강의 수위변화는 서울시 주요 지류하천의 수리, 수질, 생태, 친수 등 물환경 전반에 영향을 미친다. 최근 기후변화와 관리정책의 변화로 인해 한강의 수위변화 요인이 증가하고 있다. 그 중, 하천의 환경 및 생태적인 기능이 부각됨에 따라 한강의 물길회복을 통한 자연성 회복을 위해 한강하류에 설치된 횡단구조물인 신곡수중보의 해체, 또는 개방이 주요하게 논의 되어오고 있다. 이에 따라, 신곡수중보의 해체 및 개방이 한강에 미치는 영향을 다각적인 측면에서 검토하였지만, 지류하천의 물환경 변화에 대한 영향검토는 미흡한 실정이다. 본 연구에서는 신곡수중보 개방 및 해체에 따른 한강 본류와 서울시 주요 지류하천의 수위변화를 예측하고, 주요 지류하천에서 발생가능한 물환경 이슈를 분석하였다. 신곡수중보의 개방 또는 해체는 한강의 수위변화에 대한 조석의 영향을 증가시켜 한강의 수위저하와 수위변동성도 크게 증가되는 것으로 분석되었다. 이는 지류하천 중 하류부에 낙차공과 같은 수위유지 기능이 있는 구조물이 설치되지 않은 안양천과 중랑천의 하류부에서 흐름단면 최대 70%이상 감소, 유속 2배이상 증가 등 큰 수리변화를 유발하는 것으로 분석되었다. 이로 인해 안양천과 중랑천에서는 유속 증가에 따른 하상변화와 대규모 노출지 발생, 생태계 훼손 문제, 수위저하에 따른 수심유지 문제, 수체감소에 따른 오염도 증가와 악취문제, 하천경관 및 하천이용 문제 등의 물환경 이슈가 발생할 것으로 예측되었으며. 특히, 1970년 이전 중랑천 한강 합류지점에 위치했던 저자도의 복구/복원이 향후 주요한 이슈로 부각될 것으로 예상되었다.

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Estimation of Water Purification Ability with Applying Porous Concrete to Weir and Riverbed Materials (다공성 콘크리트의 보 및 하상재료 적용에 따른 하천 수질정화 능력 평가)

  • Choi, I-Song;Kim, Jin-Hong;Choi, Gye-Woon;Oh, Jong-Min
    • Journal of Korea Water Resources Association
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    • v.36 no.6
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    • pp.1013-1023
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    • 2003
  • This study was performed to improve water quality of stream by applying hydraulic structures (weir and river bed material) made of porous concrete. The physical and chemical characteristics of porous concrete were measured to estimate application possibility of it in hydraulic structures and it was considered as a proper material for the hydraulic structures. In the results of comparison for the component of matters attached on the hydraulic structures made of porous and ordinary concrete, DW (dry weight) amount attached on porous concrete was 1.6 times higher than that on ordinary concrete under the condition of the same flow rate but influence by flow rate (difference of 10 times) was not shown. Therefore, we could understand that the material of media was more important in DW amount than flow rate. The rate of AFDM (ash free dry mass) to DW also was more at porous concrete than at ordinary concrete. Especially, the high rates of nitrogen and phosphorous in matters attached on porous concrete verify that they were removed by assimilation, adsorption and metabolism of periphyton. The removal percentage of SS, BOD, COD, T-N and T-P by hydraulic structures applying porous concrete compared with ordinary concrete was increased by 34.6%, 36.9%, 33.9%, 18.3% and 21.6%, respectively. Therefore, applying porous concrete to hydraulic structure is expected to contribute to improvement of stream water quality.

Geomorphology and Spatio-Temporal Land Cover Changes in Sincheon Wetland, Mangyeong River (만경강 신천습지의 지형과 시공간적 토지 피복 변화)

  • Jangsoo Kim;Jeong-Sik Oh
    • The Korean Journal of Quaternary Research
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    • v.34 no.1
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    • pp.41-51
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    • 2024
  • The Sincheon wetland shows a remarkable diversity of fluvial landforms, such as river islands, anastomosing channels, braided channels, and sand-gravel bars, which contribute to its rich ecological habitat. The wetland area is characterized by a ecological diversity of herbaceous and woody plants. Significant changes in land cover within the wetlands were observed from 2008 to 2020. Notably, there was a rapid decrease in agricultural area from 18% to 0.04%, while the vegetation area expanded from 45% to 54%. Concurrently, the water area also experienced a notable increase from 34% to 41%. The surface sediment composition in the studied area displays sandy loam characteristics and exhibits acidic soil properties. Sediment acidity tends to increase downstream and in the central part of channels. Variations in acidity are also observed at nearby collection sites due to the tributaries and local discharge. The presence of dense vegetation in river islands and bars has led to a significant transformation of sediments into soil, with this change being more pronounced downstream, particularly near the weirs. The installation of a weir in Sincheon wetland is believed to have a significant impact on altering flow velocities between upstream and downstream sections, as well as influencing erosion and sediment deposition patterns. However, given the formation of landforms in response to weirs, effective administration and management are essential to address potential risks of catastrophic environmental disruptions, such as the removal of weirs and/or the maintenance of river channels.

A Study on the Applicability of PDA Technique in the P-CAP System for T-P Removal of STP Effluent (하수처리장 방류수의 총인 제거를 위한 P-CAP 시스템에서 PDA 기법의 활용가능성에 대한 연구)

  • Choi, Choongho;Maeng, Sungkyu;Sim, Jaehwi;Choi, Jinho;Song, Kyungguen;Lee, Byungha;Cha, Hoyoung
    • Journal of Korean Society on Water Environment
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    • v.28 no.5
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    • pp.729-742
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    • 2012
  • Recently, to using chemical coagulation process for T-P removal in STP effluent as tertiary treatment process is generalized in the country. The importance of analysis technique to save the treatment & maintenance cost during coagulation process is becoming more increased each day. Thus, it is necessary for the analysis technique during coagulation process to be presented well the characteristic of coagulation in field apply. There are a few analysis techniques such as Jar Test, zeta potential analysis and streaming current detecting techniques. But there are difficult to apply in field immediately due to long test time and difficult analysis techniques. And using PDA technique, it is reviewed applicability of the techniques as field index on pilot plant of P-CAP system The P-CAP system is composed of an in-line static mixer, a Flocculation Tank and the CAP reactor with 2 stage weir for effluent. Pre-test is performed to fix the mixing velocity in the Flocculation Tank using the PDA equipment and it fixed with 30RPM. Also, Jar Test is performed to select optimum dose of each coagulant for each T-P concentration level of influent. Result of continuous test on pilot plant of P-CAP system, the FSI in the Flocculation Tank is increased consistently by increasing each dosing concentration of coagulant such as LAS and PAC in the low level influent T-P concentration comparatively. It is considered that formed Al-hydroxide complexes for dosed coagulant are caused FSI variation. Furthermore, it seems that FSI value in the high level influent T-P concentration appeared lower than the opposite influent condition relatively because it is formed simultaneously Al-hydroxide complexes as solid type and Al-phosphorus complexes as soluble type. Thus, relation of FSI by PDA technique and T-P removal of final effluent on pilot plant of P-CAP system are very limited for the kind of coagulant and the characteristics of influent. And it though that FSI value by PDA technique with analyzing of turbidity in Flocculation Tank will be used restrictedly on field as the relative field-index.

A Case Study on Design and Construction of Cofferdam for Hydraulic Structure (수중구조물을 위한 가물막이 설계 및 시공사례에 대한 연구)

  • Cho, Joo-Hwan;Shin, Dong-Hoon;Jeong, Seung-Tai;Woo, Sang-Yoon;Nam, Yong
    • Proceedings of the Korean Geotechical Society Conference
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    • 2010.09a
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    • pp.124-143
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    • 2010
  • Cofferdam is a temporary levee or dam structure built by using sheet pile or earth materials to prevent water infiltration during construction work of bridge, dam, harbour dock, or hydraulic structures in the river. In this regard, it is required to secure cutoff ability for dry work and workability for rapid installation and removal of the temporary dam or levee structures. In this paper, case studies for design and construction of cofferdam were performed, and water diversion method was briefed with some examples of cofferdam type as well. For the case study details of design and construction were reviewed based on cofferdams under construction related to 16 submerged weirs of "The 4-river restoration project" and dam type cofferdam respectively. From the review, it was known that the method for changing the water flow is selected based on the data from geological and geo-hydraulic site investigation in order to mitigate environmental effects by making sure if the design cross-sectional area of flow and maximum working days are sufficiently guaranteed. Finally, the primary findings and main conclusion derived are summarized that determination of applicable type of cofferdam should be checked by case study and meet design requirements such as water inflow control, constructability.

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Analysis of Unintended Lake Formation Problem and Its Environmental Effects a Case Study

  • Bushira, Kedir Mohammed;Kasaya, Alemayehu
    • Journal of Wetlands Research
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    • v.22 no.3
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    • pp.217-224
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    • 2020
  • Waterlogging and unintended lake formation become the main problem in some parts of the world. Starting from 1989, the waterlogging problem was observed in the farmland of the Jarso community of Konso Woreda adjacent to the Segen River in Ethiopia. Therefore, the objectives are determining the extent and causes of unintended lake formation using GIS/RS in addition to a preliminary field survey to mitigate the problem. The analysis of satellite images revealed that over the years invasion of the irrigable land by unwanted water had increased, as, in 1989, the size of the wetland area was about 8 Km2; in 2000 the size of the un-intended lake was only 8.23 ㎢. Alarmingly the size of the lake increased to 19.68 Km2 in 2014. Silting up of Weir and changing the flow of River Segen and Human Intervention and changing the natural flow of River Yanda were the main causes of this unwanted prolonged water-logging. The ecological and social environment has been degrading as the people of the waterlogged area have been experiencing some settlement and losing their land. Another problem encountered was flooding from River Barka and invasion of the farmland. Sediment control best management practices (BMPs) i.e, Removal of sediment, providing sandbags and well-scheduled maintenance; Changing the junction point of Yanda and Segen River were suggested for the long-term and short term possible remedial measures. Gabion retaining wall on the bank of the Segen River to the face of Barka River was suggested to protect the farmland from flooding.

Water Quality Change due to Singok Submerged Weir Removal Considering Tide (조석운동을 고려한 신곡수중보 철거에 따른 수질변화 연구)

  • Jang, Suk Hwan;OH, Kyung Doo;Oh, Ji Hwan;Han, Su Hee
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.335-335
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    • 2015
  • 행주대교 하류 약 3km 지점에 위치한 신곡수중보는 한강종합개발 사업 중 하도정비로 인한 상시수위 저하로 인해 발생하는 문제를 해결하기 위해 설치되었으며, 취수장의 취수심 확보, 주운수심 확보, 염수 역류에 의한 생태계의 변화 방지, 하천 주면의 지하수위 저하 방지 목적으로 건설되었다. 본 연구에서는 신곡수중보의 존치, 이전 혹은 철거로 인한 수질변화를 모의를 실시하였다. 한강 본류와 임진강 합류를 고려하여 총 495개 수질모의 셀을 구성하였고, 수질모의를 위한 WQ Cell은 길이가 100 m~340 m로 임진강 47개, 한강 448개로 총 495개의 셀로 구성하였으며, 주요 지천이나 오염원으로 신곡보 하류에는 공릉천, 신곡보와 잠실보 사이에는 창릉천, 서남과 난지물 재생센터, 안양천, 홍제천, 중랑천, 탄천, 잠실보 상류에는 왕숙천, 월문천, 덕풍천 등 9개 지천과 2개 물 재생센터를 포함하였으며 잠실보 상류에서의 생활용수 취수를 고려하였다. 수온, BOD, 조류의 경계조건은 환경부에서 제공한 2011년 3월과 4월의 측정자료를 사용하였다. 그 결과, 신곡보 철거시 수온의 변화는 서해로부터의 차가운 해수의 역류 증가로 임진강, 파주, 전류, 장항습지까지 수온이 최대 $0.94^{\circ}C$ 크게 하강할 것으로 나타났으나 행주, 가양, 영등포는 오히려 수온이 $0.03{\sim}0.04^{\circ}C$ 미미하게 상승할 것으로 나타났으며 현재의 신곡보가 수온의 급격한 변화를 완층하는 역할을 담당하여 왔으나 보가 철거되면서 이러한 수온 완충역할이 사라지기 때문으로 분석되었다. 신곡보 철거시 BOD 농도의 변화는 잠실보 하류쪽으로는 BOD 농도가 최대 1.02 mg/l 감소하는 등 전반적으로 수질이 크게 개선될 것으로 나타나는 반면 잠실보 상류쪽으로는 BOD 농도가 최대 0.56 mg/l 증가하며 현재의 1급수 수질에서 2급수로 수질이 악화되어 상수원 수질 관리가 어려울 것으로 예상되었다. 신곡보 철거시 조류 농도의 변화는 잠실보 하류쪽으로 조류 농도가 최대 1.85 mg-A/l 감소하는 등 전반적으로 수질이 크게 개선될 것으로 나타나는 반면 잠실보 상류쪽으로는 조류 농도가 최대 0.40 mg-A/l 증가하며 고조위 기간에는 조류주의보 기준 1.5 mg-A/l를 초과하는 경우도 발생하여 상수원 취수에 문제가 발생할 가능성이 있는 것으로 나타났다.

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Characteristics of Spatio-temporal Variation of the Water Quality in the Lower Keum River (금강 하류역에서 수질의 시공간적 변화특성)

  • YANG Han-Soeb;KIM Seong-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.23 no.3
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    • pp.225-237
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    • 1990
  • Various chemical constituents were measured from April to August 1988 at the down-ward 20 stations of Keum River, which is located in the Midwest of Korea, to understand the characteristics of water quality with respect to spatio-temporal variations of each constituent. The 24-hrs continuous measurements with 2-hrs interval were made simultaneously at station 2 near the estuary weir and station 9(Ganggyeong) of 35 km upstream from the weir in April. By the results observed for one day in April at station 2, salinity has a range of $7.88\~22.14\%_{\circ}$ and its temporal variability is identical to the pattern of tidal cycle in the neigh-bouring Kunsan Harbor. However, turbidity shows relatively high values only at an interval of 4~5 hours after the lowest salinity time, though hourly fluctuation of pH is very small. Silicate and dissolved inorganic nitrogen have inversively linear correlationships with salinity, implying the concentration of the two nutrients strongly regulated by estuarine mixing of sea and river waters. In contrast, phosphate sustains roughly a constant level over a wide salinity range and distinctly lower values than those corresponding to nitrate in the oceans. Such distributions of phosphate have been observed in some estuaries, and interpreted as driven by removal of dissolved phosphate into bottom sediments and the bufforing of phosphate by particulate matter. COD values at station 2 are relatively high in day-time(particularly afternoon) and in high-salinity periods. At station 9, saltwater intrusion was never found but water level changed to the extent of 2.5 m for one day. Although each parameter at this station exhibits very slight variations in their abundance for 24 hours compared with station 2, the contents of COD, silicate and ammonia are significantly higher than at station 2. Concentration of suspended matter is relatively high in the brackish water region up to $\~20$ km above the river mouth, probably due to strong tidal stirring of the bottom de-posits. Also, relatively high pH, COD and $O_2$ saturation at the upward stations of $40\~50$ km from the weir are presumably attributable to active photosynthesis of plants in the region. In general, COD and nutrients except phosphate are higher values at the upper stations than in the estuary zone, and show the highest abundances in July nearly at all stations. Finally, in the estuarine region tidal mixing of sea-river waters seems to be an important factor controlling the distributions of turbidity, COD, silicate and nitrate as well as salinity. However, water quality in the upward fresh-water zone is remarkably variable according to months or seasons.

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Phosphorous Removal in a Free Water Surface Wetland Constructed on the Gwangju Stream Floodplain (광주천 고수부지에 조성한 자유수면인공습지의 인 제거)

  • Yang, Hong-Mo
    • Journal of the Korean Institute of Landscape Architecture
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    • v.40 no.1
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    • pp.100-109
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    • 2012
  • Removal rates of $PO_4-P$ and TP in a free water surface wetland system were investigated. The system was established in 2008 on a floodplain in the middle reach of the Gwangju Stream flowing through Gwangju City. Its dimensions were 46 meters in length and 5 meters in width. Two year old Typha angustifloria L. growing in pots were planted on half of the area and Zizania latifolia Turcz on the other half in 2008. Stream water was funneled into the wetlands by gravity flow, and its effluent was discharged back into the stream. The influent volume was controlled by valves and water depth was adjusted by wires. Volume and water quality of inflow and outflow were analyzed from January to December in 2010. Inflow into the system averaged approximately $710m^3/day$ and hydraulic residence time was about 1.5 hours. Average influent and effluent $PO_4-P$ concentration were 0.144 and 0.103mg/L, respectively, and $PO_4-P$ abatement amounted to 28.6%. Influent and effluent TP concentration averaged 0.333 and 0.262mg/L, respectively, and TP retention reached to 20.7%.$PO_4-P$ removal rate(%) during plant growing season(31.448) was significantly high(p<0.001) when compared with that during plant non-growing season(25.829). TP abatement rate(%) during plant growing season(27.230) was also significantly high(p<0.001) when compared with that of the non-growing season(14.856). Major phosphorous removals in the system resulted from adsorption of phosphorous in the litter-soil layers; sedimentation of particulate phosphorous and Ca, Al, Fe bounded phosphates; and absorption of phosphorous by emergent plants. The adsorption and sedimentation occurred throughout the year, however, the absorption took place during plant growing season. This resulted in higher removals of $PO_4-P$ and TP during plant growing season.