• 제목/요약/키워드: Diversion Flow

검색결과 65건 처리시간 0.028초

Analytical study on seepage behavior of a small-scale capillary barrier system under lateral no-flow condition

  • Byeong-Su Kim
    • Geomechanics and Engineering
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    • 제35권1호
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    • pp.13-27
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    • 2023
  • The model production for large-scale (lateral length ≥ 2.0 m) capillary barrier (CB) model tests is time and cost-intensive. To address these limitations, the framework of a small-scale CB (SSCB) model test under the lateral no-flow condition has been established. In this study, to validate the experimental methodology of the SSCB model test, a series of seepage analyses on the SSCB model test and engineered slopes in the same and additional test conditions was performed. First, the seepage behavior and diversion length (LD) of the CB system were investigated under three rainfall conditions. In the seepage analysis for the engineered slopes with different slope angles and sand layer thicknesses, the LD increased with the increase in the slope angle and sand layer thickness, although the increase rate of the LD with the sand layer thickness exhibited an upper limit. The LD values from the seepage analysis agreed well with the results estimated from the laboratory SSCB mode test. Therefore, it can be concluded that the experimental methodology of the SSCB model test is one of the promising alternatives to efficiently evaluate the water-shielding performance of the CB system for an engineered slope.

섬진강의 유량변화 통계 검정 (Statistical Tests for the Flow Change in Sumjin River)

  • 이광만;윤라영;이승윤
    • 한국수자원학회논문집
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    • 제41권10호
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    • pp.1067-1077
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    • 2008
  • 하천유량의 시간적 추세에 대한 이해는 자연환경이나 인간사회를 위한 하천관리 및 수자원계획에 도움을 줄 수 있다. 일반적으로 기온, 강수, 유량 그리고 농업, 홍수방지활동, 저수지 및 유역간의 물이동 등과 같은 하천의 이용은 결과적으로 하천의 흐름에 반영되게 된다. 수자원 시설물 설계에서 받아들여지는 시계열 상에서 수문기상학적 특성이 불변하다는 가정은 기후변화나 하천교란에 의해 더 이상 타당하지 않을 수 있다. 그러므로 수문시계열에서 변화 특성을 검증하고 기술하는 것은 하천관리에 있어 매우 중요한 과제이다. 본 연구에서는 섬진강에서 인위적 유량교란에 의한 유량 변동성 검정을 통계해석에 기반을 둔 단일변수와 집단변수, 그리고 시계열 분석방법으로 구분하여 수행하였다. 검정 결과, 현재 섬진강 수계의 연 유량계열은 동질성을 유지하고 있으나 갈수기 유량계열에서는 변동성이 나타났다.

말레이지아 바쿤 가배수로 터널의 철근콘크리트 라이닝 설계 (Design of the reinforced concrete lining in bakun diversion tunnels)

  • 지왕률;임태정
    • 터널과지하공간
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    • 제9권1호
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    • pp.20-26
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    • 1999
  • 바쿤 수력발전 프로젝트에서 발전댐의 건설은 가배수로 터널의 완공에 따라 시작되믈 공사기간 측면에서 가배수로 터널의 완공시기는 전체 프로젝트에서 매우 중요한 요소이다. 바쿤 가배수로 터널의 내부단면은 물의 저항을 최대한 줄이기 위하여 원형으로 설계되었으며, 내부직경 12m 인 3개의 터널로 구성되어 있다. 일반적으로 터널 시공과정의 마무리 단계에서 수행되는 터널 라이닝 작업은 굴착 및 지반보강 공정과 더불어 시공비와 공사기간에 많은 영향을 끼치므로 적정한 수준의 라이닝 설계가 요구된다. 바쿤 가배수로 터널에 있어, 라이니으이 두께는현장여건에 따라 다소 차이가 있으나 500~700mm로 타설되었다. 가배수로 터널의 원설계안에 따르면 터널내 전체 라이닝에 필요한 보강콘크리트의 철근량은 5,985 ton 이었으나, 암반의 상태와 여러종류의 하중조건을 고려하여 5종류의 철근 보강 콘크리트 유형으로 구분한 후에 각각의 유형에 따른 상세설계를 통하여 최종적으로 소요 철근량을 2,178 ton으로 감소시킬 수 있었다. 감소된 양은 원설계에서 제시된 양의 절반에 해당되며, 이에 따라 공사기간 및 건설비용을 절감시킬 수 있었다.

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'Design and Construction of 7 kilometres of 2.5 cubic metre per second Canal'

  • Euinton, Gordon;Tate, Don
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2008년도 학술발표회 논문집
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    • pp.1-8
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    • 2008
  • The paper describes the process and issues encountered during the design and construction of seven kilometres of canal to convey 2.5 cumecs of flow to two power stations. The location of the scheme above the primary reservoir of the Waipori Hydropower scheme in Otago, New Zealand, utilising an existing stream diversion into this reservoir, means that no new water abstraction or diversion consents were required. This mini hydro development associated with the existing Waipori scheme was partly justified by an allocation of carbon credits. The scheme controls are slightly more complicated than many canal and penstock schemes as the canal lengths are considerable in relation to the gradient.

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도로지능화를 위한 교통축제어모형 개발에 관한 연구 (A study on the development of a corridos control model in the framework of the ITS)

  • 김동선
    • 대한공간정보학회지
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    • 제5권2호
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    • pp.29-43
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    • 1997
  • ITS 구축을 위한 고속도로축 통합최적제어모형은 진입램프미터링, 진출램프전환율 그리고 인접노면가로 g/C비 결정 등 3가지 제어 변수를 동시에 결정될 수 있도록 구축하였다. 또한 실시간 처리가 가능하도록 당초 비선형문제를 선형문제로 전환하기 위해 교통밀도 관계식을 두 개의 선형함수로 축약하고, SLP알고리즘을 사용한 컴퓨터 알고리즘도 제안하였다.

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How effective has the Wairau River erodible embankment been in removing sediment from the Lower Wairau River?

  • Kyle, Christensen
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.237-237
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    • 2015
  • The district of Marlborough has had more than its share of river management projects over the past 150 years, each one uniquely affecting the geomorphology and flood hazard of the Wairau Plains. A major early project was to block the Opawa distributary channel at Conders Bend. The Opawa distributary channel took a third and more of Wairau River floodwaters and was a major increasing threat to Blenheim. The blocking of the Opawa required the Wairau and Lower Wairau rivers to carry greater flood flows more often. Consequently the Lower Wairau River was breaking out of its stopbanks approximately every seven years. The idea of diverting flood waters at Tuamarina by providing a direct diversion to the sea through the beach ridges was conceptualised back around the 1920s however, limits on resources and machinery meant the mission of excavating this diversion didn't become feasible until the 1960s. In 1964 a 10 m wide pilot channel was cut from the sea to Tuamarina with an initial capacity of $700m^3/s$. It was expected that floods would eventually scour this 'Wairau Diversion' to its design channel width of 150 m. This did take many more years than initially thought but after approximately 50 years with a little mechanical assistance the Wairau Diversion reached an adequate capacity. Using the power of the river to erode the channel out to its design width and depth was a brilliant idea that saved many thousands of dollars in construction costs and it is somewhat ironic that it is that very same concept that is now being used to deal with the aggradation problem that the Wairau Diversion has caused. The introduction of the Wairau Diversion did provide some flood relief to the lower reaches of the river but unfortunately as the Diversion channel was eroding and enlarging the Lower Wairau River was aggrading and reducing in capacity due to its inability to pass its sediment load with reduced flood flows. It is estimated that approximately $2,000,000m^3$ of sediment was deposited on the bed of the Lower Wairau River in the time between the Diversion's introduction in 1964 and 2010, raising the Lower Wairau's bed upwards of 1.5m in some locations. A numerical morphological model (MIKE-11 ST) was used to assess a number of options which led to the decision and resource consent to construct an erodible (fuse plug) bank at the head of the Wairau Diversion to divert more frequent scouring-flows ($+400m^3/s$)down the Lower Wairau River. Full control gates were ruled out on the grounds of expense. The initial construction of the erodible bank followed in late 2009 with the bank's level at the fuse location set to overtop and begin washing out at a combined Wairau flow of $1,400m^3/s$ which avoids berm flooding in the Lower Wairau. In the three years since the erodible bank was first constructed the Wairau River has sustained 14 events with recorded flows at Tuamarina above $1,000m^3/s$ and three of events in excess of $2,500m^3/s$. These freshes and floods have resulted in washout and rebuild of the erodible bank eight times with a combined rebuild expenditure of $80,000. Marlborough District Council's Rivers & Drainage Department maintains a regular monitoring program for the bed of the Lower Wairau River, which consists of recurrently surveying a series of standard cross sections and estimating the mean bed level (MBL) at each section as well as an overall MBL change over time. A survey was carried out just prior to the installation of the erodible bank and another survey was carried out earlier this year. The results from this latest survey show for the first time since construction of the Wairau Diversion the Lower Wairau River is enlarging. It is estimated that the entire bed of the Lower Wairau has eroded down by an overall average of 60 mm since the introduction of the erodible bank which equates to a total volume of $260,000m^3$. At a cost of $$0.30/m^3$ this represents excellent value compared to mechanical dredging which would likely be in excess of $$10/m^3$. This confirms that the idea of using the river to enlarge the channel is again working for the Wairau River system and that in time nature's "excavator" will provide a channel capacity that will continue to meet design requirements.

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관수로 시스템 수리진단 기법 개발 (Development of the Hydraulic Inspection Method for Irrigation Pipeline Systems)

  • 김영화;박지성;정병호
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2003년도 학술발표논문집
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    • pp.251-254
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    • 2003
  • For improving the flow capacity of pipeline system the hydraulic inspection method was developed conducting on-site with survey of pipeline facility such as diversion work, air vent, etc. and pipe network analysis. The pipe network analysis method determine pipe diameter with trial and error. The validity of the hydraulic inspection method proved adapting on S-district pipeline system.

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금강호물의 새만금호 도입에 따른 금강호 수질변화 분석 (Estimation of water quality for Geumgang Reservoir by diversion of the Geumgang river flow to the Saemangeum reservoir)

  • 엄명철;조국현;임종완;김태철
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2005년도 학술발표논문집
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    • pp.509-514
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    • 2005
  • Geumgang canal is planned to connect Geumgang lake with Saemangeum reservoir to accelerate desalinization and dillute polluted water in Saemangeum reservoir. The purpose of this study is to evaluate the variations of water quality by divesion of Geumgang lake flow to the Saemangeum reservoir. WASP5 model was used to estimate water quality concentration of Geumgang lake. Model calibration and verification was done for water quality data for 2001 and 2002. As a result of simulating water quality concentration for 4 scenarios, which was considered whether Geumgang canal will be built, there was little influence on water quality in Geumgang lake though Geumgang lake flow diverted to Saemangeum reservoir.

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