• 제목/요약/키워드: water diversion

검색결과 87건 처리시간 0.03초

관개조직의 일별 모의 조작 (Simulating Daily Operational Characteristics of Irrigation)

  • 이남호;정하우;박승우
    • 한국농공학회지
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    • 제32권3호
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    • pp.67-78
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    • 1990
  • A decision support system, Daily Irrigation Network Operation Simulation model (DINOPS) was developed that can adequately describe the physical behavior of an irrigation system. The model is to depict the physical features of complex water allocation schemes of the irrigation system and to simulate the response of the system to different irrigation schemes. The model was validated on the Banweol irrigation district by comparing the simulated canal discharges and paddy water levels with the field data. The operation of the DINOPS model was demonstrated on the irrigation district where several irrigation management practices were evaluated with computing irrigation efficiencies and rainfall effectiveness respectively. The model sensitivity with respect to heights of bund and block diversion rates were analyzed and discussed.

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농업용 취수보를 이용한 소수력발전시설 특성 분석 (Analysis of Small Hydro Power Sites Using Diversion Weirs for Agricultural Purpose)

  • 이철형;박완순
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2011년도 학술발표회
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    • pp.219-219
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    • 2011
  • 최근 지방자치단체에서는 농업용 취수보를 이용한 소수력발전에 관심을 가지고 지자체내의 유휴자원인 하천유수를 이용하여 소수력발전을 함으로써 환경친화적인 에너지를 생산하여 석유 등 에너지 수입대체 효과와 전력수요 급증시의 부하평준화에 기여하고자 하고 있다. 이는 정부의 "저탄소 녹색성장의 에너지정책"에 부응하는 것이며, 또한 하천에 소규모 인공호수를 조성함으로써 소수력발전소 인근지역의 경관개선과 관광자원화에 기여함은 물론 농업용수 공급과 하천유지수를 조정하여 안전한 하천으로서 그 기능을 하도록 계획한 것이다. 이와 병행하여 소수력발전소에서 발생한 무공해 청정에너지를 생산함으로써 전 세계적으로 관심이 높아지고 있는 '온실가스 배출 감축' 노력에 동참함으로써 선진형 기후변화 대응체계에 적응할 수 있다. 본 연구에서는 농업용 취수보를 대상으로 소수력 발전시설의 성능분석 기법을 이용하여 소수력발전시설적용 타당성을 조사 분석하였다. 그림 1은 농업용 취수보인 북평보의 유역면적도를 나타내고, 그림 2는 북평보에 소수력발전시설을 적용할 경우의 부하특성을 나타낸다.

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수치모형과 수리분석을 활용한 도수터널 운영에 따른 수충격 영향 검토 (Water Hammer Impact of Diversion Tunnel with Operation Gate using the Numerical Model and Mathmatical Analysis)

  • 장석환;오경두;오지환;조준원
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2017년도 학술발표회
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    • pp.323-323
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    • 2017
  • 본 연구 대상인 주암댐-주암조절지댐간 도수터널은 저수지 간 연계운영을 통하여 서 남해안 일대의 용수 공급하기 위하여 건설되어 운영되었으나, 터널의 구조적 불안정성이 제기됨에 따라 향후 발생 가능성이 있는 용수공급 중단을 방지하기 위하여 신규 도수터널이 제안되었다. 계획된 신규 도수 터널의 주요 시설물은 크게 양방향 운영이 가능한 터널(D=3.3 m, L=11.23 km), 각 저수지 상황별 운영을 위한 취수문비 2개소, 도수가 이루어지는 상황에서 수문 돌발 폐쇄시 수충격을 감쇄하기 위한 배기구(air vents) 2개소가 계획되었다. 이에 따라 본 연구에서는 주암댐에서 주암조절지댐으로 최대 유량이 통수되는 상태에서, 수문폐쇄에 따른 수충격을 정량적으로 분석하고자 Joukowsky 공식에 적용하여 완폐쇄와 급폐쇄시 도수터널의 안정성을 검토하였으며, 수문 폐쇄로 인한 천이적인 흐름상태 등 수충격 모의가 가능한 1차원 ITM 모형을 적용하여, 수리분석과 수치모형과 결과 비교하고, 계획된 배기구의 유무에 따른 효과를 알아보고자 하였다. 분석 결과, 계획된 0.3 m/min으로 수문을 폐쇄할 경우, 도수터널의 안정성에는 문제가 없을 것으로 분석되었으나, 수문을 급 폐쇄 할 경우, 압력수두가 크게 증가하여 도수터널에 위험이 있을 것으로 분석되었으며 배기구 유무에 따른 수충격 검토 결과 도수터널 내의 수압상승을 적절히 조절하는 조압수조의 역할을 만족스럽게 수행할 것으로 분석되었다.

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Meander Flume Outlet Sediment Scour Analysis of a Boxed Culvert

  • Thu Hien Thi Le;VanChienNguyen;DucHauLe
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2023년도 학술발표회
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    • pp.35-35
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    • 2023
  • The main reason for its instability is sediment scouring downstream of hydraulic structures. Both physical and numerical models have been used to investigate the influence of soil properties on scour hole geometry. Nevertheless, no research has been conducted on resistance parameters that affect sedimentation and erosion. In addition, auxiliary structures like wing walls, which are prevalent in many real-world applications, have rarely been studied for their impact on morphology. The hydraulic characteristics of steady flow through a boxed culvert are calibrated using a 3D Computational Fluid Dynamics model compared with experimental data in this study, which shows a good agreement between water depth, velocity, and pressure profiles. Test cases showed that 0.015 m grid cells had the lowest NRMSE and MAE values. It is also possible to quantify sediment scour numerically by testing roughness/d50 ratios (cs) and diversion walls at a meander flume outlet. According to the findings, cs = 2.5 indicates a close agreement between numerical and analytical results of maximum scour depth after the culvert; four types of wing walls influence geometrical deformation of the meander flume outlet, resulting in erosion at the concave bank and deposition at the convex bank; two short headwalls are the most appropriate solution for accounting for small changes in morphology. A numerical model can be used to estimate sediment scour at the meander exit channel of hydraulic structures based on the roughness parameter of soil material and headwall type.

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Mine water inrush characteristics based on RQD index of rock mass and multiple types of water channels

  • Jinhai Zhao;Weilong Zhu;Wenbin Sun;Changbao Jiang;Hailong Ma;Hui Yang
    • Geomechanics and Engineering
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    • 제38권3호
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    • pp.215-229
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    • 2024
  • Because of the various patterns of deep-water inrush and complicated mechanisms, accurately predicting mine water inflows is always a difficult problem for coal mine geologists. In study presented in this paper, the water inrush channels were divided into four basic water diversion structures: aquifer, rock fracture zone, fracture zone and goaf. The fluid flow characteristics in each water-conducting structure were investigated by laboratory tests, and multistructure and multisystem coupling flow analysis models of different water-conducting structures were established to describe the entire water inrush process. Based on the research of the water inrush flow paths, the analysis model of different water inrush space structures was established and applied to the prediction of mine water inrush inflow. The results prove that the conduction sequence of different water-conducting structures and the changing rule of permeability caused by stress changes before and after the peak have important influences on the characteristics of mine water-gushing. Influenced by the differences in geological structure and combined with rock mass RQD and fault conductivity characteristics and other mine exploration data, the prediction of mine water inflow can be realized accurately. Taking the water transmitting path in the multistructure as the research object of water inrush, breaking through the limitation of traditional stratigraphic structure division, the prediction of water inflow and the estimation of potentially flooded area was realized, and water bursting intensity was predicted. It is of great significance in making reasonable emergency plans.

수자원의 계절별 적기확보방안에 관한 연구 (A Study on the Seasonal Pre-reserved Planning of Water Resources in Korea)

  • 허준행;송재우;이길춘
    • 물과 미래
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    • 제16권2호
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    • pp.111-122
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    • 1983
  • 오늘날 인구증가와 공업화, 도시화 및 수질오염등에 따라 용수수요가 급격히 증가하게 되었다. 본 연구에서는 목표연도인 2001년까지 5개권역에 대한 용수 수요량과 가용수자원량을 비교분석하여 적용확보 방안을 제시하였다. 본 연구를 통하여 얻어진 결과는 아래와 같다. 1) 월별 용수증가추세에 대응하여 지표수와 지하수로 공급함을 원칙으로 하되, 부족량에 대해서는 댐 공급량으로써 보충키로 한다. 또한 소요공급량은 공급에 앞서 완전 확보토록 하여야 한다. 2) 각 권역에서 월별 계절별 최대물부족량은 6월과 하계에 발생한다. 3) 물부족량이 댐 공급량을 초과하게 될 시기는 III권역에서 1984∼1990년 및 1994∼2001년이다. 4) III권역의 물부족량을 확보하기 위하여 영산강 유역의 마산 금호만하구언 완공년도를 2001년에서 1991년으로 앞당겨야 할 것이며, 섬진강 유역에서는 주암댐의 완공년도를 1991년에서 1986년으로 앞당기고 1986년까지는 유역변경에 의하여 섬진강 유역에서 물을 공급 받으면서 지하수 및 소규모 저수지 개발을 행하여야 할 것이다.

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필 댐의 특성을 고려한 농업용 저수지 정밀안전진단체계 개선 연구 (A Study on the Safety Inspection System Improvement of Agricultural Reservoir Considering Fill-Dam Characteristics)

  • 이창범;정남수;박승기;전상옥
    • 한국농공학회논문집
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    • 제58권4호
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    • pp.1-8
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    • 2016
  • In 2008, 17, 596 dams and reservoirs are scattered across South Korea, and 17, 505 of them (99.5 %) are used for agriculture and 99.3 % are fill dam types. This study aimed to review literature related to the precise safety diagnosis system for agricultural reservoirs established by Korea Rural Community Corporation (KRCC) and analyze problems of its evaluation method. And then, it proposed ways to improve the system including a modified diagnosis system, which was applied to pilot districts in order to verify the utility. For assessment model development of agricultural reservoir, we reviewed status of precision safety inspections systems of agricultural reservoir. There are many problems such as assess agricultural reservoir not by sheet which used in fill dam but by block which used in concrete dam construction and diversion tunnel which main element in reservoir levee is treated as water intake facility. For considering diversion tunnel in reservoir levee, previous precision safety inspection systems which summed in separated phenomenon, separated element, separated site, separated facility was change to new systems which summed in site, phenomenon, element, and facility. Compared results of previous inspection system calculated total assessment index (Ec) with new system calculated total assessment index (Ec) are not show statistical difference.

지표수 지하수 연계운영에 의한 갈수기 지표수-수자원관리 (Conjunctive Management Considering Stream-Aquifer Systems for Drought Season)

  • 차기욱;김우구;신용노
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2008년도 학술발표회 논문집
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    • pp.389-394
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    • 2008
  • The purpose of this research was to develop a methodology to determine whether conjunctive surface water and groundwater management could significantly reduce deficits in a river basin with a relatively limited alluvial aquifer. The Geum River basin is one of major river basins in South Korea. The upper region of the Geum River basin is typical of many river basins in Korea where the shape of river basin is narrow with small alluvial aquifer depths from 10m to 20m and where most of the groundwater pumped comes quickly from the steamflow. The basin has two surface reservoirs, Daecheong and Yongdam. The most recent reservoir, Yongdam, provides water to a trans-basin diversion, and therefore reduces the water resources available in the Geum River basin. After the completion of Yongdam reservoir, the reduced water supply in the Geum basin resulted in increasing conflicts between downstream water needs and required instream flows, particularly during the low flow season. Historically, the operation of groundwater pumping has had limited control and is administered separately from surface water diversions. Given the limited size of the alluvial aquifer, it is apparent that groundwater pumping is essentially taking its water from the stream. Therefore, the operation of the surface water withdrawals and groundwater pumping must be considered together. The major component of the conjunction water management in this study is a goal-programmin g based optimization model that simultaneously considers surface water withdrawals, groundwater pumping and instream flow requirements. A 10-day time step is used in the model. The interactions between groundwater pumping and the stream are handled through the use of response and lag coefficients. The impacts of pumping on streamflow are considered for multiple time periods. The model is formulated as a linear goal-programming problem that is solved with the commercial LINGO optimization software package.

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Anaerobic Hydrogen Fermentation and Membrane Bioreactor (MBR) for Decentralized Sanitation and Reuse-Organic Removal and Resource Recovery

  • Paudel, Sachin;Seong, Chung Yeol;Park, Da Rang;Seo, Gyu Tae
    • Environmental Engineering Research
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    • 제19권4호
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    • pp.387-393
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    • 2014
  • The purpose of this study is to evaluate integrated anaerobic hydrogen fermentation and membrane bioreactor (MBR) for on-site domestic wastewater treatment and resource recovery. A synthetic wastewater (COD 17,000 mg/L) was used as artificial brown water which will be discharged from urine diversion toilet and fed into a continuous stirred tank reactor (CSTR) type anaerobic reactor with inclined plate. The effluent of anaerobic reactor mixed with real household grey water (COD 700 mg/L) was further treated by MBR for reuse. An optimum condition maintained in anaerobic reactor was HRT of 8 hrs, pH 5.5, SRT of 5 days and temperature of $37^{\circ}C$. COD removal of 98% was achieved from the overall system. Total gas production rate and hydrogen content was 4.6 L/day and 52.4% respectively. COD mass balance described the COD distribution in the system via reactor byproducts and effluent COD concentration. The results of this study asserts that, anaerobic hydrogen fermentation combined with MBR is a potent system in stabilizing waste strength and clean hydrogen recovery which could be implemented for onsite domestic wastewater treatment and reuse.

경남의 지방하천에 설치된 하천횡단구조물의 현황과 개선방안 (Improvement study of river-crossing structures in geyongnam prefecture)

  • 김기흥;이형래;정혜련
    • 한국수자원학회논문집
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    • 제49권10호
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    • pp.809-821
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    • 2016
  • 연구범위는 경남의 지방하천 671개소(총연장 3,741 km)이며, 연구내용을 간략히 요약하면 다음과 같다. 하천횡단구조물의 총수는 7,730개소로 조사되었으며, 하천연장 1 km 당 구조물이 평균 2.1개소씩 설치되어 있는 것으로 나타났다. 농업용수보가 4,006 (51.82%)개소였으며, 하상 유지시설(낙차공)은 3,670 (47.48%)개소였고 및 나머지(하상도로 등)는 54 (0.70%)개소로 조사되었다. 상하류에 큰 영향을 미치는 높이 1.0 m 이상은 3,897 (51%)개소, 영향이 비교적 미미한 높이 0.5 m 이하는 1,109 (14%)개소로 분석되었다. 어도는 153 (23%)개 하천에 640 (8%) 개소에 설치되어 있는 것으로 파악되었다. 하천횡단구조물이 치수적 측면에서 홍수시 수위상승을 초래하고 생태환경적 측면에서는 생태통로를 단절시키는 등 여러 문제점을 초래하고 있었다. 따라서, 도출된 문제점을 기초로 하천횡단구조물에 대한 공학적인 몇 가지 대책을 제시하였다.