• 제목/요약/키워드: Weir construction

검색결과 116건 처리시간 0.025초

남강수중보의 기존 전면월류형 계단식 어도의 효율성 개선에 관한 연구 (A Study on the Efficiency Improvement of Existing Pool-and-Weir Type Fishway in Namgang Weir)

  • 이형래;김기흥;박호철
    • 한국환경복원기술학회지
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    • 제17권2호
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    • pp.61-71
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    • 2014
  • A river fishway is a hydraulic structure enabling fish to overcome stream obstructions such as dams and weirs. The main aim of this paper is to investigate the collectibility of upstream-migrating fishes and hydraulic problems in pool-and-weir type fishway which has been established for upstream-migration at Namgang weir in the downstream of Namgang dam, and to grope for improvement measures which pool-and-weir type fishway can be switched to pool-and-partial weir type fishway through hydraulic field experiment. Exsisting fishway had problems which upstream-migrating fishes can not take a rest due to the seiche and vortex phenomena in pools and migrate to upstream because of height difference in entrance pool. In order to prevent hydraulically the seiche and vortex phenomena and establish rest area for fishes in each pool, we carried out hydraulic field experiments. In the fishway, it was to improve pool-and-weir into pool-and-partil weir, to decrease the height difference in entrance pool, and to reduce oriffice velocity of each pool. Also, we investigated fishes collectibility of after improving fishway for 6 days in September 2013. To resolve chronic problems(seiche-vortex phenomena and rest area for fishes), as weirs were remodeled into partial weir only which central part of weirs was part of non-overflow weir, we confirmed results that pool-and-weir type fishway could be switched to efficient pool-and-partial weir type fishway with relatively simple construction and low cost. Type-B which has the closed oriffices and the parts of non-overflow has the ideal conditions, but this conditions are limited to fishway of Namgang weir used in this study. Representative Ice-habor type fishway is pool-and-partial weir type fishway which has together parts of overflow and oriffices, and has excellent ability of upstream-migration. To switch from pool-and-weir type fishway to pool-and-partial weir type fishway, the size of oriffice has to be regulated by the discharge of fishway and the dimension on parts of non-overflow and overflow in weirs. Entrance pool is important facility which upstream-migrating fishes have to not only be collect but also charge with energy. In this study, entrance-pool is temporary and roughly-built, but fishes gather together more than the case of no entrance-pool. In the case of fishway which was protruded to downstream, as entrance of fishway turns toward or parallels to weir, the collectibility of fishway was excellent by attraction water.

광정횡월류위어의 유량계수 산정 (An Estimation of discharge Coefficient for Broad Crested Side Weir)

  • 윤영배;조홍제
    • 대한토목학회논문집
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    • 제31권1B호
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    • pp.63-70
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    • 2011
  • 횡월류위어를 천변저류지 등의 유입부에 설치하기 위해서는 정확한 월류량을 산정하는 것이 선행되어야 한다. 본 연구에서는 실제 하천에 적용성이 높을 것으로 판단되는 사다리꼴 수로의 광정횡월류위어에 대한 수리실험을 실시하였고, 유량계수산정을 위하여 상류 Froude수, 위어높이, 위어길이, 본류수로폭, 수로경사 등을 고려하였다. 분석결과 광정횡월류위어에서 $h/y_u$, $L/y_u$, $Fr_u$의 중요도가 큰 것을 확인하였고, 다중회귀분석을 통해 유량계수식을 제시하였다. 또한 기존 연구자들의 실험자료와 본 실험의 연구자료를 비교하였으며, 측정된 월류량과 계산된 월류량을 비교하여 유량계수식의 적용성을 확인하였다.

보 유출형태에 따른 하류부 도수 및 비에너지 손실에 관한 비교 연구 (A Comparative Study on Hydraulic Jump and Specific Energy Losses at Downstream According to the Weir Discharge Types)

  • 박효선;윤근호;구본진;최계운
    • 한국습지학회지
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    • 제15권1호
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    • pp.149-157
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    • 2013
  • 기존까지 건설된 보는 대부분 보의 상단으로 월류하는 월류형 보가 주종을 이루고 있다. 월류형 보의 경우 수자원의 관리의 효과와 지금까지의 많은 연구로 인한 설계, 시공 및 유지관리 방법 등이 용이 하다는 장점이 있다. 하지만 월류형 보의 특성상 보 상단부를 통해 물이 월류되는 방식이기 때문에 상류부로부터 유입된 유사가 보 하류로 배출되지 못하고, 하상이 높아지면서 저수용량이 감소되어 점차 보의 기능을 상실하게 된다. 이와 같은 토사 퇴적 및 보의 유지관리 문제를 해결하기 위해 수문을 가진 하단방류형 보가 건설되기 시작하였다. 하지만 최근 건설된 하단방류형 보의 설계상의 문제점으로 인하여 보 하류부의 하상이 세굴되고, 세굴된 하상 때문에 구조적인 문제점이 발생되고 있다. 본 연구에서는 보의 효과적인 설계 및 운영방법을 위해 월류형 보와 하단방류형 보의 흐름의 특성, 하류부 수위 변화에 따른 도수길이분석, 보 형태에 따라 단위거리당 발생되는 비에너지 손실량을 비교 및 분석하였다. 실험분석 결과 하단방류형 보와 월류형보의 상류 조건을 동일하게 유지 시 하단방류형 보에서 도수의 길이가 Fr 값(Froude number) 3.5에서 최대 2배 길게 나타났으며, 하류 수위가 증가 할수록 도수의 길이는 점차 감소하게 되었다. 단위 거리당 발생되는 비에너지 손실량 비교 분석 결과 단위 거리당 에너지 손실량이 하단방류형 보에 비해 월류형 보가 약 2배 높게 나타나는 것으로 판단되었다. 따라서 하단방류형 시설의 경우 수공 구조물의 안전을 위해 별도의 에너지 감세시설을 별도로 검토하는 것이 바람직한 것으로 판단된다.

수리 변동에 따른 영산강에서의 수질 변화 분석 연구 (Analysis of Water Quality Variation after Hydraulic Changes in Yeongsan River)

  • 김유흔;이혜원;최정현
    • 한국물환경학회지
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    • 제38권1호
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    • pp.1-9
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    • 2022
  • The Yeongsan River, one of the four major rivers in Korea, shows the highest degree of water pollution compared to the other major rivers. The construction and opening of two weirs, Seungchon and Juksan, induced fluctuations in the hydrologic conditions and water quality of the river. To investigate the water quality changes caused by the opening of the weir in 2017, this study analyzed the water quality data using the non-parametric Wilcoxon signed-rank test and the three-dimensional spatiotemporal plots. The non-parametric statistical test results showed that the concentration of all parameters has increased after 2017 at a significance level of 0.05. For the parameters that showed the highest degree of change, chlorophyll-a and suspended solids, the median values have increased by more than 30% after weir opening. Visual analysis additionally showed the spatial changes in the Yeongsan River. Generally, the sites above the Seungchon weir showed higher pollution levels than those above the Juksan weir. In time series, visual analysis results also showed the trend of rising concentration for all water quality parameters, indicating that the opening of two weirs had a significant effect on the change in water quality of the Yeongsan River.

보 건설 이후 영산강 보 구간에서의 질소계열 영양염류 및 식물플랑크톤 동태 (Characteristics of Nitro-nutrients and Phytoplankton Dynamics in the Yeongsan River after Weir Construction)

  • 서경애;나정은;류희성;김경현
    • 한국물환경학회지
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    • 제34권4호
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    • pp.423-430
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    • 2018
  • Insomuch as it is important to manage water quality, from the perspective of water management, it is essential to understand the effect of the weirs on water quality and phytoplankton dynamics in various regions. The purpose of this study is to investigate the characteristics of nitro-nutrients, as well as occurrences and succession patterns of phytoplankton, in the river sections of the two weirs in the Yeongsan River for the five years (from 2012 to 2016) after the weir construction. In respect to this data, the average water temperature measured at the representative point in the section of the Seungchon Weir ($17.1^{\circ}C$) was higher than that of the Juksan Weir ($16.6^{\circ}C$) by comparison. By way of an analysis of this data, it was found that the water quality variables such as, organic matter, nitrogen nutrients and phosphorus nutrients were improved gradually during the period, but the degree of the improvement differs as noted and measured between the weirs. Under the circumstances, it is especially noted that the $NH_3-N$ concentration was higher for the point of the Seungchon Weir (2.204 mg/L) than that of the Juksan Weir (1.157 mg/L). This indicates that effluent as seen from sewage treatment plants and hydrological feature near the densely population area, could be the main cause for the incidence of water pollution in the upstream section of the Seungchon Weir. Additionally, the phytoplankton analysis showed that a relative abundance of diatoms and green algae were 56.9 % and 25.8 % respectively. However, it is noted that the cyanobacteria was measured lower as 10.7 %. Also, in the study sites cell density and occurrence frequency of cyanobacteria were relatively lower than compared to the same measurements noted in other rivers.

인위적인 보 수위조절로 인한 영산강 하도 지형 변화 (Changes in the Riverbed Landforms Due to the Artificial Regulation of Water Level in the Yeongsan River)

  • 임영신;김진관
    • 한국지형학회지
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    • 제27권1호
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    • pp.1-19
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    • 2020
  • A river bed which is submerged in water at high flow and becomes part of the river at low flow, serves as a bridge between the river and the land. The channel bar creates a unique ecosystem with vegetation adapted to the particular environment and the water pool forms a wetland that plays a very important role in the environment. To evaluate anthropogenic impacts on the river bed in the Middle Yeongsangang River, the fluvial landforms in the stream channel were analyzed using multi-temporal remotely-sensed images. In the aerial photograph of 2005 taken before the construction of the large weirs, oxbow lakes, mid-channel bars, point bars, and natural wetlands between the artificial levees were identified. Multiple bars divided the flow of stream water to cause the braided pattern in a particular section. After the construction of the Seungchon weir, aerial photographs of 2013 and 2015 revealed that most of the fluvial landforms disappeared due to the dredging of its riverbed and water level control(maintenance at 7.5El.m). Sentinel-2 images were analyzed to identify differences between before and after the opening of weir gate. Change detection was performed with the near infrared and shortwave infrared spectral bands to effectively distinguish water surfaces from land. As a result, water surface area of the main stream of the Yeongsangang River decreased by 40% from 1.144km2 to 0.692km2. A large mid-channel bar that has been deposited upstream of the weir was exposed during low water levels, which shows the obvious influence of weir on the river bed. Newly formed unvegetated point bars that were deposited on the inside of a meander bend were identified from the remotely sensed images. As the maintenance period of the weir gate opening was extended, various habitats were created by creating pools and riffles around the channel bars. Considering the ecological and hydrological functions of the river bed, it is expected that the increase in bar areas through weir gate opening will reduce the artificial interference effect of the weir.

3차원 수치모형에 의한 횡월류위어의 수리학적 평가 (The Hydraulic Assessment of Side Weir using 3D Computational Fluid Dynamics Program)

  • 남기영;한건연;박홍성;김극수;최승용
    • 환경영향평가
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    • 제19권2호
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    • pp.153-168
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    • 2010
  • The objectives of this study are to analyze flow characteristics for a side weir, which is an inlet structure for flow discharge reduction in the main channel through 3 dimensional numerical analysis and to understand the efficiency of the overflow effect at the side weir. In this study over 40 simulations using FLOW-3D, a computational fluid dynamics program were conducted, and the results were analyzed to find the influence of the flow hydraulics, geometry, channel and weir shapes on the coefficient. It is especially considered the relatively high stage in downstream that may cause flow within channel to be backed up along the channel. Additionally by setting up the scale of simulations much larger than the existing test equipment designed by other researchers, it is intended to analyze more accurate hydraulic behavior along with the realistic hydraulic features such as structures and volumes of flow. The results show that for design with subcritical flow only if the Froude number of upstream is sustained below 0.5 and the length of weir is 33-100% of the width of channel, it is expected to improve the efficiency of the overflow over a side weir.

취입모의 경제적 계획취입수심 산정방법에 대한 연구 (A Study on a Calculation Method of Economical Intake Water Depth in the Design of Head Works)

  • 김철기
    • 한국농공학회지
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    • 제20권1호
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    • pp.4592-4598
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    • 1978
  • The purpose of this research is to find out mathemetically an economical intake water depth in the design of head works through the derivation of some formulas. For the performance of the purpose the following formulas were found out for the design intake water depth in each flow type of intake sluice, such as overflow type and orifice type. (1) The conditional equations of !he economical intake water depth in .case that weir body is placed on permeable soil layer ; (a) in the overflow type of intake sluice, {{{{ { zp}_{1 } { Lh}_{1 }+ { 1} over {2 } { Cp}_{3 }L(0.67 SQRT { q} -0.61) { ( { d}_{0 }+ { h}_{1 }+ { h}_{0 } )}^{- { 1} over {2 } }- { { { 3Q}_{1 } { p}_{5 } { h}_{1 } }^{- { 5} over {2 } } } over { { 2m}_{1 }(1-s) SQRT { 2gs} }+[ LEFT { b+ { 4C TIMES { 0.61}^{2 } } over {3(r-1) }+z( { d}_{0 }+ { h}_{0 } ) RIGHT } { p}_{1 }L+(1+ SQRT { 1+ { z}^{2 } } ) { p}_{2 }L+ { dcp}_{3 }L+ { nkp}_{5 }+( { 2z}_{0 }+m )(1-s) { L}_{d } { p}_{7 } ] =0}}}} (b) in the orifice type of intake sluice, {{{{ { zp}_{1 } { Lh}_{1 }+ { 1} over {2 } C { p}_{3 }L(0.67 SQRT { q} -0.61)}}}} {{{{ { ({d }_{0 }+ { h}_{1 }+ { h}_{0 } )}^{ - { 1} over {2 } }- { { 3Q}_{1 } { p}_{ 6} { { h}_{1 } }^{- { 5} over {2 } } } over { { 2m}_{ 2}m' SQRT { 2gs} }+[ LEFT { b+ { 4C TIMES { 0.61}^{2 } } over {3(r-1) }+z( { d}_{0 }+ { h}_{0 } ) RIGHT } { p}_{1 }L }}}} {{{{+(1+ SQRT { 1+ { z}^{2 } } ) { p}_{2 } L+dC { p}_{4 }L+(2 { z}_{0 }+m )(1-s) { L}_{d } { p}_{7 }]=0 }}}} where, z=outer slope of weir body (value of cotangent), h1=intake water depth (m), L=total length of weir (m), C=Bligh's creep ratio, q=flood discharge overflowing weir crest per unit length of weir (m3/sec/m), d0=average height to intake sill elevation in weir (m), h0=freeboard of weir (m), Q1=design irrigation requirements (m3/sec), m1=coefficient of head loss (0.9∼0.95) s=(h1-h2)/h1, h2=flow water depth outside intake sluice gate (m), b=width of weir crest (m), r=specific weight of weir materials, d=depth of cutting along seepage length under the weir (m), n=number of side contraction, k=coefficient of side contraction loss (0.02∼0.04), m2=coefficient of discharge (0.7∼0.9) m'=h0/h1, h0=open height of gate (m), p1 and p4=unit price of weir body and of excavation of weir site, respectively (won/㎥), p2 and p3=unit price of construction form and of revetment for protection of downstream riverbed, respectively (won/㎡), p5 and p6=average cost per unit width of intake sluice including cost of intake canal having the same one as width of the sluice in case of overflow type and orifice type respectively (won/m), zo : inner slope of section area in intake canal from its beginning point to its changing point to ordinary flow section, m: coefficient concerning the mean width of intak canal site,a : freeboard of intake canal. (2) The conditional equations of the economical intake water depth in case that weir body is built on the foundation of rock bed ; (a) in the overflow type of intake sluice, {{{{ { zp}_{1 } { Lh}_{1 }- { { { 3Q}_{1 } { p}_{5 } { h}_{1 } }^{- {5 } over {2 } } } over { { 2m}_{1 }(1-s) SQRT { 2gs} }+[ LEFT { b+z( { d}_{0 }+ { h}_{0 } )RIGHT } { p}_{1 }L+(1+ SQRT { 1+ { z}^{2 } } ) { p}_{2 }L+ { nkp}_{5 }}}}} {{{{+( { 2z}_{0 }+m )(1-s) { L}_{d } { p}_{7 } ]=0 }}}} (b) in the orifice type of intake sluice, {{{{ { zp}_{1 } { Lh}_{1 }- { { { 3Q}_{1 } { p}_{6 } { h}_{1 } }^{- {5 } over {2 } } } over { { 2m}_{2 }m' SQRT { 2gs} }+[ LEFT { b+z( { d}_{0 }+ { h}_{0 } )RIGHT } { p}_{1 }L+(1+ SQRT { 1+ { z}^{2 } } ) { p}_{2 }L}}}} {{{{+( { 2z}_{0 }+m )(1-s) { L}_{d } { p}_{7 } ]=0}}}} The construction cost of weir cut-off and revetment on outside slope of leeve, and the damages suffered from inundation in upstream area were not included in the process of deriving the above conditional equations, but it is true that magnitude of intake water depth influences somewhat on the cost and damages. Therefore, in applying the above equations the fact that should not be over looked is that the design value of intake water depth to be adopted should not be more largely determined than the value of h1 satisfying the above formulas.

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영산강 수계의 본류 및 지천에서 4대강 사업 전.후의 어류분포 및 군집구조 특성 비교 (Comparative Analysis of Fish Fauna and Community Structures Before and After the Artificial Weir Construction in the Mainstreams and Tributaries of Yeongsan River Watershed)

  • 이재훈;한정호;임병진;박종환;신재기;안광국
    • 생태와환경
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    • 제46권1호
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    • pp.103-115
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    • 2013
  • The purpose of this study was to analyze fish fauna and species compositions along with trophic guilds, tolerance indicators, and fish community conditions before weir construction (BWC) and after weir construction (AWC) in the Yeongsan River watershed. Total 45 and 44 fish species were sampled in BWC and AWC, respectively without any distinct differences through weir constructions. Fish fauna analysis revealed that the dominant species was the same, Zacco platypus with 24.3% and 20.8% in BWC and AWC, respectively. However, the subdominant species were Carassius auratus with 8.9% in BWC but Opsarichthys uncirostris amurensis with 20.3%, almost identical that of the dominant species AWC. This phenomenon showed the distinct modification of species composition in the watershed. We sampled the $1^{st}$ class endangered species, Liobagrus obesus in tributary stream as previously reported. Also Culter brevicauda was sampled in the mainstream of Yeongsan River watershed and this was the first sampled record in this watershed. One of the most important features were an increase of exotic species, such as Micropterus salmoides and Lepomis macrochirus, with 3.2% BWC vs. 10.2% AWC as well as the increase in tolerant species with 49.2% BWC vs. 73.7% AWC, indicating ecological degradation through weir construction. Overall, our results indicated that fish fauna and composition analyses showed distinct ecological degradations related to increases of exotic and tolerant species AWC. Further long-term studies of fish monitoring should be conducted in the future to configure existent status of river conditions and to provide key information in order to conserve the healthy ecosystem.

재폭기 효율 증가를 위한 래버린스 보에 관한 연구 (A Study on the Labyrinth Weir for Improvement of Reaeration)

  • 유대영;김성태;우효섭
    • 한국수자원학회논문집
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    • 제35권5호
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    • pp.511-523
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    • 2002
  • 재폭기 효율이 향상된 보를 개발하기 위하여 직선형 보, 여수로형 보, 래버린스 보의 재폭기 실험을 통해 산소전달효율을 측정하여 결과론 비교하였고, 또한 제정의 조도를 증가시켜 그 효과를 분석하였다. 실험 결과에 의하면 여수로 형 보에서의 산소전달효율이 가장 작으며 그 다음으로 직선 보였으며 래버린스 보의 경우 중심각이 감소할수록 산소전달효율이 증가하는 것으로 나타났다. 모든 경우에 있어서 낙차와 유량이 증가할수록 산소전달효율이 증가하는 것으로 나타났으며 조약돌을 부착하여 제정의 조도를 증가시켜 월류 흐름의 분리를 발생시킨 경우 재폭기가 상당히 증가되는 것을 확인할 수 있었다. 실험 결과로부터 중심각 30도인 래버린스 보를 현장에 설치하여 재폭기를 관측하였다. 현장에 설치된 래버린스 보는 틀을 조립하여 그 내부에 사석을 채워 건설되었으며 제정에는 사석이 노출되어 흐름의 분리를 유발하였다. 래버린스 보의 현장 시험 시공 조건에서 평균 약 0.l8의 산소전달효율 결과를 얻을수 있었다. 본 실험 연구와 현장 설치 후 측정 결과는 재폭기 효율이 높은 보를 통한 하천 수질 개선에 사용될 수 있을 것이라 예상된다.