• 제목/요약/키워드: overflow head

검색결과 13건 처리시간 0.022초

수치모의를 이용한 원형위어의 월류흐름 특성 해석 (Analysis of Overflow Characteristics around a Circular-Crested Weir by Using Numerical Model)

  • 김대근
    • 상하수도학회지
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    • 제30권2호
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    • pp.147-154
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    • 2016
  • The present study used the hydrodynamic numerical model, with the Reynolds-averaged Navier-Stokes equations (RANS) as its governing equations, to analyze overflow characteristics such as the discharge coefficient of circular-crested weir and the flow velocity and pressure distribution of weir crest. The simulation results well reproduced the overflow characteristics of the overfall of circular-crested weir both qualitatively and quantitatively. As for the discharge coefficient, rational results were yielded by the discharge coefficient equation proposed by Hager(1985) in the $H_1/R_b<0.58$ and by the discharge coefficient equation proposed by Samani and Bagheri(2014) in the $H_1/R_b>0.58$, respectively. Because most existing discharge coefficient equations were developed by disregarding the effects of the approach velocity, when they are applied, it is necessary to evaluate the effects of the approach velocity on the overflow head beforehand.

온돌난방제어 시 시스템저항 변화에 따른 유량 밸런싱에 관한 연구 (A Study for Flow-rate Balancing when the System Resistance Changes in the Control of the Radiant Floor Heating System)

  • 최정민;이규남;류성룡;김광우;여명석
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2005년도 동계학술발표대회 논문집
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    • pp.129-134
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    • 2005
  • The behavior of whole system is affected by a minor change of system in the hydronic radiant floor heating system. Under partial load condition, the change of system resistance causes overflow of supply water. This unexpected effect is the cause of several problems in the heating system. In this study, we find some factors were validated with several computer simulations. After validation of this result, several conceptual solutions are evaluated to prevent overflow.

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교각이 설치된 월류형 여수로에서의 흐름에 대한 수치모의 (A Numerical Simulations on the Flow over Ogee Spillway with Pier)

  • 김대근;이재형;서일원
    • 한국수자원학회논문집
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    • 제37권5호
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    • pp.363-373
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    • 2004
  • 본 연구에서는 교각이 설치된 미공병단의 Waterways Experiment Station (WES)의 표준 월류형 여수로에 대한 동수역학적인 흐름거동을 FLOW-3D를 이용하여 해석하였다. 모의 결과는 WES의 실험자료와 비교하였으며, 교각이 없는 월류형 여수로에 대한 2차원 모의결과와도 상호 비교하였다. 특히 교각이 설치된 월류형 여수로에서의 월류수맥과 압력분포에 대한 특성을 상세히 고찰하였다. 유량, 월류수맥 및 압력분포에 대한 모의결과, 부분적으로 WES의 실험결과와 차이가 발생하는 곳이 있으나, 대부분 그 경향이 일치하였다. 교각이 설치된 월류형 여수로에서의 주요 흐름거동을 정리하면, 첫째 교각이 위치하는 여수로 측면부에서의 수위에 비해 여수로 중앙부에서의 수위가 높고, 둘째 실제수두가 여수로의 설계수두보다 높은 경우 웨어마루 상류에서는 여수로 측면부에서 부압이 크게 발생하며 웨어마루 하류에서는 여수로 중앙부에서 부압이 크게 발생하는 것으로 밝혀졌다.

A Study on Darrieus-type Hydroturbine toward Utilization of Extra-Low Head Natural Flow Streams

  • Tanaka, Kei;Hirowatari, Kotaro;Shimokawa, Kai;Watanabe, Satoshi;Matsushita, Daisuke;Furukawa, Akinori
    • International Journal of Fluid Machinery and Systems
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    • 제6권3호
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    • pp.152-159
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    • 2013
  • A two-dimensional Darrieus-type hydroturbine system, installed with a wear for flow streams such as small rivers and waterways, has been developed for hydropower utilization of extra-low head less than 2m. There are several problems such as flow rate change and flowing wastes to be solved for its practical use in natural flow streams. In the present study, at first, a design guideline in the case of overflow or bypass flow is shown by using simple flow model. Next, in order to avoid the unexpected obstacles flowing into the hydroturbine, an installation of waste screening system is examined. It is confirmed that the screen is effective with some amount of bypass flow rate, however the output power is remarkably deteriorated.

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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과부하 맨홀의 손실계수를 고려한 도시지역 침수해석 (Inundation Analysis in Urban Area Considering of Head Loss Coefficients at Surcharged Manholes)

  • 이원;김정수;윤세의
    • 한국수자원학회논문집
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    • 제48권2호
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    • pp.127-136
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    • 2015
  • 일반적으로 XP-SWMM은 맨홀을 하나의 절점으로 간주하여 절점의 형상과 크기에 따른 국부손실의 영향을 고려하지 못하기 때문에 침수면적을 과소 산정한다. 그러므로 과부하 맨홀 내에서의 손실계수를 고려한 해석 방안 및 손실계수의 적용에 따른 침수해석에 관한 연구가 필요하다. 본 연구에서는 유량변화 및 맨홀 형상 변화에 따른 수리실험을 실시하여, 과부하 맨홀(원형, 사각형)에서의 손실계수를 각각 0.61과 0.68로 산정하였다. 또한 XP-SWMM을 이용하여 군자배수분구를 대상으로 산정된 손실계수의 적용 유무에 따른 침수면적의 변화특성을 분석하였다. 분석 결과 손실계수를 적용하면 침수면적이 3.5ha 증가하는 것으로 나타났다. 이는 손실계수 적용에 따라서 맨홀에서의 월류량이 증가하기 때문이다. 대상유역에 손실계수를 적용하였을 경우 실제 침수면적과의 일치율은 약 58%로 나타났으며, 손실계수를 고려하지 않았을 경우의 일치율은 약 40%로 나타났다. 그러므로 과부하 맨홀에서의 손실계수를 고려한 2차원 침수해석의 결과는 도시지역의 침수 위험지역을 정확하게 파악하기 위한 기초적인 자료로 활용이 가능할 것으로 판단된다.

파랑 에너지 변환을 위한 월파제어구조물의 월파량 산정 실험 (Experimental Study on Wave Overtopping Rate of Wave Overtopping Control Structure for Wave Energy Conversion)

  • 신승호;홍기용
    • 한국해양공학회지
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    • 제19권6호통권67호
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    • pp.8-15
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    • 2005
  • Wave energy has been considered to be one of the most promising energy resources for the future, as it is pollution-free and an abundant natural resource. However, since it has drawbacks of non-stationary energy density, it is necessary to change the wave energy into a simple concentrated energy. Progressive waves in a coastal area can be amplified, swashed, and overtopped by a wave overtopping control structure. By conserving the quantity of overflow in a reservoir, the kinetic energy of the waves can be converted to the potential energy with a hydraulic head above the mean sea level. The potential energy in the form of a hydraulic head can be utilized to produce electric power, similar to hydro-electric power generation. This study aims to find the most optimal shape of wave overtopping structure for maximum overtopping volume of sea water; for this purpose, we carried out the wave overtopping experiment in a wave tank, under both regular and irregular wave conditions.

무동력 배수시스템을 활용한 도상월류 및 라돈저감방안 연구 (A Study on Drainage System of Non-motorized For Overtopping and Radon Reduction)

  • 고성기;국윤모;김만화;박종헌
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 춘계학술대회 논문집
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    • pp.208-213
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    • 2011
  • Seoul Metropolitan Rapid Transit Corporation has 148's stations. Total length is 152km and most of the station is located in the basement and Groundwater occur inflow of 700,000 tons per day. Groundwater is treated as a natural flow way instead of artificial ways. Therefore, most of the collection wells is located in the low place or station for the efficient induction and collecting water. Manhole overtopping is occurring frequently because groundwater is concentrated in the drain pipe near the collecting well and heavy rainfall in summer. As a result, ballast contamination and radon levels are increased in tunnel. This paper introduces a solution is increasing overflow in tunnel, which introduces drainage system of non-motorized that uses differencial head between collecting well and manhole.

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자동차 주유구 커버에 대한 사출성형과 2색 코팅 동시 구현에 관한 연구 (A study on simultaneous injection molding and two-color coating for car gas cap cover)

  • 배형섭;박동현;김부곤;서창호;허원근;이호상
    • Design & Manufacturing
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    • 제15권1호
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    • pp.32-40
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    • 2021
  • Mold design for in-mold coating was carried out to achieve simultaneous injection molding and two-color coating for car gas cap cover. The developed mold includes one core and three cavities which are composed of a substrate cavity and two coating cavities. To provide a sealing edge for complete seal during the second coating, the first coated material was used at the boundary between the first coating and the second one, and injection molded substrate was used at the parting line. The materials used were PC/ABS for substrate and 2-component Polyurea for coating. Through experiments, it was found that the suggested sealing edges were effective for complete seal during the second coating. In cavity pressure traces, there were three peaks caused by mold closing, coating-material injection and cleaning-piston advancement inside the mixing head. The cavity pressure increased with decreasing coating thickness.

실내실험을 통한 개량형 공압식 가동보의 월류흐름 특성 분석 (Analysis of Flow Characteristics of the Improved-Pneumatic-Movable Weir through the Laboratory Experiments)

  • 이경수;장창래;이남주;안상진
    • 한국수자원학회논문집
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    • 제47권11호
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    • pp.1007-1015
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    • 2014
  • 본 연구에서는 실내실험을 통하여 국내 중 소하천에 가장 많이 설치되고 있는 개량형 공압식 가동보를 대상으로 다양한 유량 변화에 대한 흐름특성을 분석하고, 유량계수산정식을 도출하였다. 실험결과, 가동보 기립각도에 따라 월류유량계수 ($C_d$)의 값은 0.613~0.634로 산정되었으며, 상류 Froude number ($F_{r1}$), 상대위어길이(${\xi}$), 전수두비($H_1/W$), 상류수심과 위어마루를 월류하는 수심의 비($y_c/y_1$)는 상류의 영향을 받으며 하류 Froude number ($F_{r2}$), 하류수심과 위어마루를 월류하는 수심의 비($y_c/y_2$)는 하류의 영향을받아 변화하였다. 상 하류수위차와 하류수심의 비(${\Delta}y/y_2$)는 상 하류의 영향을 모두 받아 변화되는 특성을 보여주었다. 주요 영향변수를 고려하여 다중회귀분석에 의한 유량계수산정식을 도출한 결과, 개량형 공압식 가동보의 월류유량계수는 상류흐름 조건이 상류일 때, 가동보의 높이 즉, 기립각도에 따른 물리적 제원과 상류 접근흐름수두의 조건에 의하여 결정되는 것으로 나타났다.