• 제목/요약/키워드: 펌프섬프

검색결과 7건 처리시간 0.024초

펌프장 Sump 모델 시험기준 수립을 위한 실험 연구 (An Experimental Study on Standard Establishment of Sump Model Test in Pump Station)

  • 이영호;김범석;이동근;오유미
    • 유체기계공업학회:학술대회논문집
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    • 유체기계공업학회 2005년도 연구개발 발표회 논문집
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    • pp.582-588
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    • 2005
  • An experimental study to establish a standard of sump model test of pump station was implemented. Comparison of foreign standard was also performed. Configuration condition around a bell mouth suction intake was easily adjusted by 3-axis traversing system and partition allocation. Operational condition was also varied widely to give accurate test data. PIV was also introduced to produce Quantitative analysis of flow field such as free-surface vortex and submerged vortex occurring in the model test. More detailed vortex behaviors were represented by PIV analysis.

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CFD에 의한 펌프장 Sump내 유동해석 (Flow Analysis around within Sump in a Pump Station using by the CFD)

  • 노형운;김재수;서상호
    • 유체기계공업학회:학술대회논문집
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    • 유체기계공업학회 2002년도 유체기계 연구개발 발표회 논문집
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    • pp.89-94
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    • 2002
  • n general, the function of intake structure, whether it be a open channel, a fully wetted tunnel, a sump or a tank, is to supply an evenly distributed flow to a pump station. An even distribution of flow, characterized by strong local flow, can result in formation of surface or submerged vortices, and with certain low values of submergence, may introduce air into pump, causing a reduction of capacity and efficiency, an increase in vibration and additional noise. Uneven flow distribution can also increase or decrease the power consumption with a change in total developed head. To avoid these sump problems pump station designers are considered intake structure dimensions, such as approaching upstream, baffle size, sump width, width of pump cell and so on. From this background, flow characteristics of intake within sump are investigated numerically to obtain the optimal sump design data. The sump model is designed in accordance with HI code.

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펌프장에서 Sump내 흡입구 주위의 유동해석 (Flow Analyses around Intake within Sump in a Pump Station)

  • 노형운;김재수;서상호
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2002년도 학술대회지
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    • pp.597-600
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    • 2002
  • In general, the function of intake structure, whether it be a open channel, a fully wetted tunnel, a sump or a tank, is to supply an evenly distributed flow to a pump station. An even distribution of flow, characterized by strong local flow, can result in formation of surface or submerged vortices, and with certain low values of submergence, may introduce air into pump, causing a reduction of capacity and efficiency, an increase in vibration and additional noise. Uneven flow distribution can also increase or decrease the power consumption with a change in total developed head. To avoid these sump problems pump station designers are considered intake structure dimensions, such as approaching upstream, baffle size, sump width, width of pump cell and so on. From this background, flow characteristics of intake within sump are Investigated numerically to obtain the optimal sump design data. The sump model is designed in accordance with HI code.

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펌프장내 흡수정 설계 기준 (The Standard of Sump Design in Pump Station)

  • 노형운;오상현;이영호
    • 유체기계공업학회:학술대회논문집
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    • 유체기계공업학회 2005년도 연구개발 발표회 논문집
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    • pp.589-592
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    • 2005
  • In general, the function of intake structure, whether it be a open channel, a fully wetted tunnel, a sump or a tank, is to supply an evenly distributed flow to a pump station. An even distribution of flow, characterized by strong local flow, can result in formation of surface or submerged vortices, and with certain low values of submergence, may introduce air into pump, causing a reduction of capacity and efficiency, an increase in vibration and additional noise. Unfortunately in order to design the sump station, the reasonable code or the standards weren't presented yet in Korea. Thus, some researchers had often referred the HI code, JSME code or CEN code to design the sump station. This study aims to prescribe the standard of sump design which were matched well the Korean pump station. Thus, the HI code and TSJ code would be interpreted fully to Korean language, the part of interpreted clauses of the western codes would be selected to compose the standard.

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펌프 섬프장내 자유표면 보텍스에 의한 공기흡입 현상의 가시화 (Visualization of Air Absorption Induced by Free Surface Vortex in the Pump Sump Using Multi-phase Flow Simulation)

  • 박영규;이규명;최윤환;이연원
    • 한국가시화정보학회지
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    • 제9권3호
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    • pp.59-64
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    • 2011
  • In this study the change of free surface vortex is expressed through the time volume fraction using multiphase unsteady condition in sump, because in previous studies of the pump sump did not represent the behavior of the free surface vortex exactly due to the reason it was calculated using single phase and steady condition. The reliability of the computational analysis is verified through comparing experimental results with that of present numerical analysis. Homogeneous free surface model is used to apply interactions of air and water. The results show that the free surface vortex can be identified on the isotropic surface at air volume fraction 1%~5%. The vortices make an air column from the free surface to the sump intake and are created and destroyed repeatedly. The behavior of free surface vortex at numerical analysis is quite similar to experimental test. The result of vortex motion according to time, works on a cycle.

흡수정의 유동해석 (Flow analysis of the Sump Pump)

  • 정한별;노승희
    • 한국산학기술학회논문지
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    • 제18권3호
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    • pp.673-680
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    • 2017
  • 흡수정은 댐이나 저수지에 저장된 물을 흡입하여 사용하는 설비이다. 흡입한 다량의 물은 화력 및 원자력 등의 대형 발전소의 냉각시스템에 사용된다. 특징으로 흡입 유량과 흡수정의 비가 작으면 흡입구 주변에서 유속이 증가한다. 이로 인해 와류나 선회류의 불균형 유동이 발생된다. 불균형 유동은 흡수정의 성능을 저하나 고장의 원인이 된다. 해결하기 위한 다양한 방법이 고안되고 있으나 최저수위 일 경우 정확한 해결 방법을 찾지 못하고 있다. 가장 효율적인 해결방법으로는 AVD를 설치하거나 관로를 길게하는 방법이 있다. 이렇게 설치된 구조물이 유동의 흐름을 균일하게 만들어 주기 때문이다. 본 논문에서는 관로의 길이와 AVD의 형태 변화에 따른 흡수정 내의 유동특성을 수치해석으로 분석한다. 수치해석을 위하여 수정의 흡입부, 섬프, 펌프의 3단계로 분리하여 모델링하였다. 격자는 해석의 정확도를 위해 흡입부는 비조밀, 흡수정과 AVD는 조밀하게 하였다. ANSYS ICEM-CFD 14.5를 이용하여 120~150만개의 격자를 생성하였고 Tetra grid와 Prism grid를 혼용하였다. 해석을 위해 상용 CFD 프로그램인 ANSYS CFX14.5의 SST 난류모델을 선정하였다. 조건으로 H.W.L 6.0m, L.W.L 3.5, Qmax 4.000 kg/s, Qavg 3.500 kg/s Qmin 2.500 kg/s로 설정하였다. 보텍스 각도와 속도분포로 해석한 결과는 다음과 같다. Ext E-type의 AVD를 설치한 흡수정이 최고수위 일때 합격하였다. 추후, Ext E-type을 기본으로 하여 최저수위일 때 만족하는 연구가 필요하다.