• Title/Summary/Keyword: 펌프장 설계

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A Safety Evaluation of Detention Reservoirs at Seoul by New Pumping Criteria (우수배제 펌프의 조작기준에 따른 서울시 유수지의 안전검토)

  • Lee, Won Hwan;Park, Sang Deog;Shim, Jae Hyun
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.12 no.1
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    • pp.141-150
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    • 1992
  • Rapid change of urban area become a serious cause of disaster in existing drainage systems, and the practical alternatives in that situations are needed. The purpose of this study is to evaluate safety, one of drainage systems, detention reservoir and pumping station by new pumping criteria. New drainage pumping criteria, divided into two parts (rising limb and falling limb), which used in reservoir routing, shows more efficient flood prevention effect than existing criteria (based on the reservoir water level). To obtain the optimal range of flood prevention, sensitivity analysis of each inflow v.s. pumping capacity is tested. As a results, using 10 year design rainfall, 60% of detention reservoir and drainage pumping stations in Seoul are safe. In this results, there must be a fundamental and powerful counterplans to prevent inland flooding in Seoul metropolitan area.

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Urban Runoff According to Rainfall Observation Locations (강우 측정 지점에 따른 도시 유역 유출량 변화 분석)

  • Hyun, Jung Hoon;Chung, Gunhui
    • Journal of Wetlands Research
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    • v.21 no.4
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    • pp.305-311
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    • 2019
  • Recently, global climate change causes abnormal weather and disaster countermeasures do not provide sufficient defense and mitigation because they were established according to the historical climate condition. Repeated torrential rains, in particular, are causing damage even in the robust urban flood defense system. Therefore, in this study, the change of runoff considering the spatial distribution of rainfall and urban characteristics was analyzed. For rainfall concentrated in small catchment, rainfall in the watershed must be accurately measured. This study is based on the rainfall data observed with Automated Surface Observing System (ASOS) and Automatic Weather Stations (AWS) provided by the Seoul Meteorological Administration. Effluent from the pumping station was estimated using the EPA-SWMM model and compared and analyzed. Catchments with rainwater pumping station are small with large portion of impermeable areas. Thus, when the ASOS data where is located from from the chatchment, runoff is often calculated using rainfall data that is different from rainfall in the catchment. In this study, the difference between rainfall data observed in the AWS near the catchment and ASOS away from the catchment was calculated. It was found that accurate rainfall should be used to operate rainwater pumping stations or forecast urban flooding floods. In addition, the results of this study may be helpful for estimating design rainfall and runoff calculation.

Internal Flow Analysis of Seawater Cooling Pump using CFD (CFD를 이용한 해수냉각펌프의 내부유동 분석)

  • Bao, Ngoc Tran;Yang, Chang-jo;Kim, Bu-gi;Kim, Jun-ho
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.23 no.1
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    • pp.104-111
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    • 2017
  • This research focuses on simulation and visualization of flow field characteristics inside a centrifugal pump. The 3D numerical analysis was carried out by using a numerical CFD tool, addressing a Reynolds Average Navier-Stock code with a standard k-${\varepsilon}$ two-equation turbulence model. The simulation accounts for friction head loss due to rough walls at suction, impeller, discharge areas and volumetric head loss at impeller wear ring. A comparison of performance curves between simulation and experimentation is included, and it reveals a same trend of those results with a small difference of maximum 5 %. At best efficiency point, velocity vectors are smooth but it changes significantly under off-design point, a strong recirculation appears at the outlet of impeller passages near tongue area. A relatively uniform preassure distribution was observed around the impeller in despite of the tongue. Within the volute, because of its geometry, spiral vortexes formed, proving that the flow field in this region was relatively turbulent and unsteady.

A study on analysis of disaster prevention performance for urban sewer system in Seoul (서울시 하수관로 방재성능 분석에 관한 연구)

  • Kim, Hosoung;Sim, Jea Bum;Ahn, Joo Young;Yoo, Mi Na
    • Proceedings of the Korea Water Resources Association Conference
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    • 2021.06a
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    • pp.424-424
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    • 2021
  • 서울시 전역의 하수관로는 4개의 처리구역, 16개의 배수구역, 163개의 배수분구, 748개의 소구역으로 분할하여 관리되고 있다. 하지만 지선관로와 간선관로가 상이한 설계빈도로 계획되어 가장 작은 관리단위인 소구역에서도 일정한 방재성능을 기대하기 어려운 실정이다. 따라서 본 연구에서는 소구역을 동일한 토출구를 갖는 유역으로 재정의하여 서울시 전역을 799개의 소구역으로 재분할한 후, 소구역 단위로 하수관로 방재성능을 분석하였다. 서울시 하수관로 방재성능 분석을 위해 도시유출모형은 SWMM, 도시침수모형은 2DIS를 활용하였다. 도시유출모형에서는 113,286개의 관로와 106,097개의 맨홀을 적용하였으며, 수리시설물은 서울시 관내에 위치한 31개의 모든 빗물저류조와 121개의 빗물펌프장 중 가용 가능한 117개의 빗물펌프장을 적용하였다. 하수관로의 외수위 경계조건은 하천기본계획에서 제시한 방류하천의 기점홍수위를 반영하였다. 도시침수모형에서는 5m 단위의 고해상도 지형자료와 토지피복도를 적용하여 2차원 침수모의를 수행하였으며, 799개의 소구역에 대한 방재성능 분석을 수행하여 이를 시스템에 적용하였다. 서울시 하수관로 방재성능 분석 시스템에서는 799개의 소구역을 대상으로 소구역 정보, 하수관로 정보, 수방시설물 정보, 방재성능 정보를 제공하고 있다. 소구역 정보는 해당 소구역에 대한 기본 정보 및 해당 소구역에 위치한 수리시설물에 대한 기본 정보를 제공한다. 하수관로 정보에서는 관로 및 맨홀을 선택하여 상세정보를 확인할 수 있다. 수방시설물 정보에서는 빗물펌프장, 빗물저류조, 강우관측소, 하천수위관측소, 관로수위관측소에 대한 상세정보를 제공한다. 마지막으로 방재성능 정보에서는 시나리오별 침수결과를 제공하며, 포인트 단위 침수취약지역을 표출한다. 서울시 하수관로 방재성능 분석 시스템은 하수도 정책 입안과 하수도 관련 사업 추진 시 데이터 기반의 신속하고 효율적인 의사결정 업무를 지원할 수 있을 것으로 기대된다.

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Application of the Fuzzy Models for the Efficient Operation of Pumping Station (배수펌프장의 효율적인 운영을 위한 퍼지모형의 적용)

  • Kim, Yun-Tae;Shim, Jae-Hyun;Chung, Jae-Hak;Ahn, Jae-Chan
    • Journal of the Korean Society of Hazard Mitigation
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    • v.4 no.3 s.14
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    • pp.51-60
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    • 2004
  • Urban flood damage has been caused by drainage deficiency. One of the methods to solve this problem is to construct detention basin and Pumping station and to pump out the water to the river. However, because of rapid urbanization, the capacity of drainage pipelines is sometimes not sufficient enough during the rainy season. Therefore, even though we have enough pumping stations, the inflow of surface water never reaches to the detention area, causing floods in urban area. This research is to find improvement of urban drainage system, estimating drainage pipeline risk. Also, eight models for a computer program were developed for practical use. The models were verified changing precipitation duration, intensity, design period, time distribution model, and etc. This verification was processed focusing that the model can regulate the water level in the detention basin and minimize the effect downstream. As a result Fuzzy models were found to be efficient to lower the water level in detention basin, and decreased about 8 cm in water level of downstream.

Design of Edtention Pond and Critical Duration of Design Rainfall in Seoul (유수지 설계를 위한 계획강우의 임계지속기간 -서울 지역을 중심으로-)

  • 이종태;윤세의
    • Water for future
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    • v.26 no.1
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    • pp.115-124
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    • 1993
  • This study is to determine the critical duration of design rainfall and to utilize it for the design of detention pond with pump station. To examine the effect of the duration and temporal distribution of the design rainfall, Huff's quartile method is used for the 9 cases of durations ranging from 20 to 240 minutes with 10 years return period, and the ILLUDAS model is used for runoff analysis. The storage ration which is the ratio of maximum storage amounts to total runoff volume, is introduced to determine the critical duration of design rainfall. The duration which maximizes the storage ratio is adopted as the critical duration. This study is applied to 18 urban drainage watersheds with pump station in Seoul, of which the range of watershed area is $0.24-12.70\textrm{km}^2.$ The result of simulation shows that the duration which maximizes storage ration is 30 and 60 minutes on the whole. It is shown also that the storage ration of 2nd- and 3rd-quartile pattern is larger than that of 1st- and 4th-quartile pattern of temporal distribution. A simplified empirical formula for Seoul area is suggested by using the regression analysis between the maximum storage ration and the peak ratio, and can be utilized for the preliminary design and planning of detention pond with pump station.

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Study on Design Capacity of Stormwater Pipe and Pumping Station considering Peak Rainfall Intensity (첨두강우강도를 고려한 우수관로 및 빗물펌프장의 설계용량 검토)

  • Chung, Gunhui;Sim, Kyu Bum;Kim, Eung Seok
    • Journal of Korea Water Resources Association
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    • v.47 no.9
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    • pp.777-787
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    • 2014
  • Stormwater pipe systems are most commonly used to discharge rainwater from the urban catchment covered by the impervious area. To design stormwater pipe and rainwater pumping station, frequency analysis is implemented using historical rainfall and the design rainfall is timely distributed using theoretical shape such as Huff distribution. This method cannot consider the rainfall intensity variation caused by climate change which is type of uncertainty. Therefore, in this study, runoff from Gasan1 stormwater pumping stations catchment is calculated using design rainfall distributed by the 2nd quartile distribution method and the historical rainfall events. From the analysis, the nodal flooding in the urban catchment is likely caused by the high peak rainfall event rather than the large amount of rainfall. The linear regression analysis is implemented. As a result, when several storms have the same amount of rainfall, the nodal flooding in the stormwater pipe systems could be caused by the high peak of storm events. Since as the storm duration become short, the peak rainfall become high, the nodal flooding likely become severe with the short storm duration. The uncertainty in the peak data of design rainfall is analyzed and this uncertainty has to be consider in the stormwater pipe design process.

A Study on Applicability of Target Rainfall to Achieve Urban Disaster Prevention Performance (도시방재성능의 달성을 위한 목표강우량 적용성에 관한 연구)

  • Park, Jung-Hwan;Park, Sang-Woo;Ahn, Tae-Jin
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.882-885
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    • 2012
  • 소방방재청(2010)은 도시방재성능의 달성을 위하여 1시간, 2시간 및 3시간 강우지속기간을 갖는 목표강우량을 전국 지자체별로 제시한 바 있다. 본 연구는 제시된 목표강우량과 강우지속기간의 적정성을 판단 하고자, 대표적 도시유출 모형인 SWMM을 이용하여 4개 표본지구에 관하여 강우-유출 모의를 실시하고, 우수관거 및 유수지의 설계강우에 관한 임계지속기간을 분석하였다. 우수관거 지구에 관하여 강우지속기간 1시간인 경우와 임계지속기간의 경우에 해당되는 최대유출량을 비교하였다. 한편 저류지 및 펌프장 시설 경우에도 2시간 및 3시간 강우지속기간에 해당하는 최고수위와 임계지속기간의 최대수위를 비교하였으며, 이를 통하여 소방방재청에서 제시한 1시간, 2시간 및 3시간 강우지속기간 목표 강우량을 이용하여 도시방재성능을 평가하고 개선함에 있어서의 적용성을 보여 주었다. 또한 도시지역내 투수성면적 증대 및 분산식 저류시설의 효과를 분석하였다.

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A Study on the Characteristics of HTS Magnet System with Respect to Winding Method and the Applicable Technology for High Field Magnet (권선형태에 따른 초전도 마그네트 시스템 특성 및 고자장 적용 기술에 관한 연구)

  • Yang, Seong-Eun;Ko, Tae-Kuk
    • Proceedings of the KIEE Conference
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    • 2011.07a
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    • pp.1288-1289
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    • 2011
  • 세계가 점차적으로 "전화(電化)"됨에 따라 전기 에너지의 효과적인 분배와 사용이 급격히 중요하게 되었다. 일반 도체를 통한 전류의 흐름은 도체의 저항에 의해 줄열을 발생시켜 전기 에너지의 손실을 일으키고 결국은 에너지와 경제적 자원의 낭비를 초래하게 된다. 초전도체의 저항은 직류 전류에서는 0, 교류 전류에서는 거의 0이기 때문에 초전도체를 이용하면 전력 소자 및 기기의 부피와 무게를 현저히 줄일 수 있는 반면에 모든 전기 시스템의 효율을 향상시킬 수 있고, 에너지 사용의 절감에 따라 환경 문제에 도움을 줄 수 있다. 사고 전류 제한기의 설계에 있어서, 권선형태에 따른 솔레노이드 마그네트와 팬케이크 마그네트를 설계, 제작하여 자장 특성 및 한류 특성을 비교 하였다. 2세대 고온 초전도 선재로 불리는 YBCO 박막형 초전도 선재를 이용하여 동작 전류 증대를 위한 다병렬 솔레노이드 마그네트와 다병렬 팬케이크 마그네트를 제작하였다. 이를 이용하여 440 V/ 630 A급 초전도 사고 전류 제한기와 2 kA 급 대전류 통전 사고 전류 제한 모듈을 설계, 제작하여 단락 특성 시험을 수행하였다. 한편, 자장 응용 기기에 적용 가능한 더블 팬케이크 마그네트를 제 2 세대 초전도선재를 이용하여 설계, 시작하였다. 2세대 선재는 1세대 선재에 비하여 20 T 이상의 외부 자장에 대한 특성이 우수하여 고자장 마그네트 시스템에 더욱 적합하다. 이에 초전도 마그네트 보호를 위한 상전도 영역 전파 실험을 수행하여 CC 선재의 안정도를 측정하였다. 또한 영구전류모드 운전과 플럭스 펌프를 통한 전류 충전에 대한 연구도 병행하였다.

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An Analysis about Inundation and Carrying Capacity of Drain Pipes in Urban Area (도시유역의 우수관거 통수능 및 침수특성 분석)

  • Lee, Jung-Ho;Jo, Duk-Jun;Kim, Joong-Hoon;Kim, Eung-Seok
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.8 no.1
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    • pp.110-115
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    • 2007
  • The localized rainfall happens frequently in urban areas recently and then, he drain pipes of urban areas do not drain well when the localized rainfalls happen. Specially, the inundation by the backwater on the lowland should be solved certainly in urban planning and sewer rehabilitation. In this study, it was examined whether the carrying capacities of the drain pipe are satisfied about a current design standard of the rainfall considering the outflows of the urban areas by the rainfall analysis. Also, the backwater in the drain pipe and the inundation on the lowland were analyzed considering the water level of the discharged river and the propriety of the design standard was examined by the analysis about the rainfall frequency. Also, the results offered the basic data to decide whether the detention reservoir should be established and the scale of the pump station.

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