• Title/Summary/Keyword: 수리상수

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Water distribution system contamination source estimation based on trace analysis (Trace Analysis 기능을 활용한 상수도 관망 내 오염물 유입 지점 추정)

  • Shin, Geumchae;Lee, Seungyub
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.184-184
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    • 2022
  • 지난 2019년 인천시, 서울시 문래동, 포항시 등에서 발생한 수질사고로 인해 국민의 상수도에 대한 신뢰도가 최악의 상황에 있으며, 이후로도 깔따구 유충이 발견되는 등 상수도 관망 내 체계적인 수질 관리 및 빠르고 정확한 수질 사고 발생 지점의 추정이 중요해 지고 있는 실정이다. 오염물 유입 추정은 수리학적 사고로 고려되는 누수와는 달리 상대적으로 그 지점 추정이 어렵다. 대게의 경우 수리해석을 진행하여 유량과 유향을 파악한 뒤 계측 지점에서부터 동일 시간대로 역으로 흐름을 거슬러 올라가며 확률상 높은 지점을 추정하는 것이 일반적인 방법이다. 본 연구에서는 범용 수리해석 프로그램인 EPANET2.2에 내장된 Trace Analysis (이후 trace 분석) 옵션을 사용한 오염물 유입 지점 추정 방법론을 소개한다. 본 연구에서는 방법론의 검증을 위해 오염물 유입지점은 한 곳으로 가정하였다. 해당 방법론은 먼저 절점별 trace 분석을 실시하여 모든 지점에서 수질 관측 지점까지 물이 도달하는데 소요되는 시간을 산정한다. 해당 시간과 오염물 관측 데이터와의 비교를 통해 유입 확률이 높은 지점을 추출한다. 이를 위해 실측 데이터가 필요하며, 결과는 지점별 확률로 나타난다. 모의 결과 1개의 수질 관측 지점으로도 개략적인 지점을 선정할 수 있는 것으로 나타났다. 다만, 수질 관측 지점의 수에 따라 분석 결과의 정확도가 향상한다. 마지막으로 유입 지점 추정 확률이 낮은 경우, 유입 지점 추정 확률을 향상시킬 수 있는 추가 수질 분석 지점을 결정하였다. 본 연구에서 소개한 방법론은 향후 수질 사고 발생 시 최초 확산 방지를 위한 격리 지점 선정에 근거를 제시할 수 있을 것으로 기대하며, 나아가 수질 관측 지점을 결정 및 대응 방안 수립 가이드라인으로 활용할 수 있을 것이다.

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A Study on the Hydraulic Properties of Aquifers in Bucheon Area (부천지역의 지하수 대수층의 수리적 특성에 관한 연구)

  • Kim, So-Hee;Lee, Yoon-Jin
    • Journal of Korean Society of Environmental Engineers
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    • v.28 no.6
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    • pp.626-633
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    • 2006
  • Bucheon city has been rapidly urbanized and steadily enlarged. Also, the city depends on groundwater as an alternative water resource. The objective of this study is to characterize the hydrogeology in this city including the recharge of groundwater and hydraulic property of an aquifer in order to investigate the chemical characteristics and contamination of groundwater in the Bucheon area. Eleven groundwater wells in the Bucheon area were selected for applying certain hydraulic tests, such as pumping and recovery tests. Theis method and Theis recovery method were used to obtain hydraulic parameters, such as hydraulic conductivity, transmissivity by applying recovery tests. The playground of school and uncovered areas layed a major function of recharging areas. The groundwater well in these areas showed high recharge, transmissivity, and hydraulic conductivity. In a downtown area, groundwaier wells showed low pumping capacity and hydraulic parameters. Groundwater samples were collected from 48 different locations in the Bucheon area and that showed very various chemical composition in groundwater Their electrical conductivity showed various ranges from 70.4 to $1,287{\mu}S/cm$. The composition more significantly affected the groundwater due to the land use and urbanization than that of the aquifer rock type.

Estimation of the Reliability of Water Distribution Systems using HSPDA Model and ADF Index (HSPDA 모형 및 ADF index를 이용한 상수관망의 신뢰도 산정)

  • Baek, Chun-Woo;Jun, Hwan-Don;Kim, Joong-Hoon
    • Journal of Korea Water Resources Association
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    • v.43 no.2
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    • pp.201-210
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    • 2010
  • In this study, new methodology to estimate the reliability of a water distribution system using HSPDA model is suggested. In general, the reliability of a water distribution system can be determined by estimating either the ratio of the required demand to the available demand or the ratio of the number of nodes with sufficient pressure head to the number of nodes with insufficient pressure head when the abnormal operating condition occurs. To perform this approach, hydraulic analysis under the abnormal operating condition is essential. However, if the Demand-Driven Analysis (DDA) which is dependant on the assumption that the required demand at a demand node is always satisfied regardless of actual nodal pressure head is used to estimate the reliability of a water distribution system, the reliability may be underestimated due to the defect of the DDA. Therefore, it is necessary to apply the Pressure-Driven Analysis (PDA) having a different assumption to the DDA's which is that available nodal demand is proportion to nodal pressure head. However, because previous study used a semi-PDA model and the PDA model which had limited applicability depending on the characteristics of a network, proper estimation of the reliability of a water distribution system was impossible. Thus, in this study, a new methodology is suggested by using HSPDA model which can overcome weak points of existing PDA model and Available Demand Fraction (ADF) index to estimate the reliability. The HSPDA can simulate the hydraulic condition of a water distribution system under abnormal operating condition and based on the hydraulic condition simulated, ADF index at each node is calculated to quantify the reliability of a water distribution system. The suggested model is applied to sample networks and the results are compared with those of existing method to demonstrate its applicability.

Optimal Life Cycle design of Water Pipe System using Genetic Algorithm (상수관망 최적 생애주기 설계를 위한 유전알고리즘의 적용)

  • Lee, Seungyub;Yoo, Do Guen;Jung, Donghwi;Kim, Joong Hoon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.6
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    • pp.4216-4227
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    • 2015
  • In this study, a model is developed based on Life Cycle Energy Analysis (LCEA) method with Genetic Algorithm (GA) to determine optimal diameter of Water Distribution System (WDS). For hydraulic analysis the EPANET2.0 program is linked with developed model, pipe-aging equation and pipe-breakage equation are built in to developed model to simulate pipe change through life cycle. The model is then applied to two sample WDSs for optimal energy design. After determining optimal diameter for each WDS, the total cost is calculated based on determined diameter and compared with well-known optimal diameter set of each WDS. Results show that optimal energy design of WDSs through the developed model can be an alternative option for optimal design of WDSs for reducing energy with lower in cost.

지표수 수위변동을 이용한 대수층 수리상수 추정

  • 하규철;조민조
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2004.09a
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    • pp.426-430
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    • 2004
  • In aquifers connected hydraulically, the levels of groundwater respond to stream stages. Analytical solutions by Laplace transform and convolution integral are used to get some response patterns about hydrogeoiogic parameter such as hydraulic conductivity, specific storage in confined aquifer. This method has the advantage to do hydrogeologic parameter estimations only with stream stage changes.

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유성지역 결정질 암반에서 수행한 양수시험에 대한 해석

  • 박경우;고용권;김경수;배대석;조성일
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2003.09a
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    • pp.592-596
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    • 2003
  • 연구지역에서 설치된 6개의 관정을 대상으로 양수시험을 실시하였다. Neuman method를 이용하여 연구지역의 투수량계수(transmisivity)와 저유계수(storativity) 및 비산출율(specific yield)을 구한결과 투수량계수는 1$\times$$10^{-6}$~9.135$\times$$10^{-6}$ $m^2$/s 이며, 저유계수는 0.0002~0.0085, 비산출율은 0.3~0.4의 값을 보인다. 계산된 투수량 계수를 이용하여 수리전도도(hydraulic conductivity)를 구하였다. 양수정의 심도보다. 깊은 관정에서 계산된 수리상수 값은 큰 값을, 얕은 관정에서는 작은 값을 보여 양수시험시 양수정과 관측정의 깊이에 대해 고려가 필요하다.

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수질관리를 위한 채수에 대하여

  • Hulsman, A.D.
    • 수도
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    • s.42
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    • pp.26-30
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    • 1988
  • 식수공급시설 및 설비에 있어서의 수질변화를 측정하는데 필요한 시료의 수는 공급시설 및 설비의 분포상태에 좌우된다. 또한 수리적 상황 (hydraulic circumstances)의 변동에 따라 특정 항목 값이 달라지는 지역에 특별히 주의할 필요가 있다. 유통과정에서의 수질변화를 알아내기 위해서는, 통상적으로 사용하고 있는 수도물에 대해 분석을 하여야 하며, 수중의 용해 중금속에 대해서는 표준화된 방법으로 측정하여야 한다. 네덜란드는 급수전에서의 수질에 대한 수질지침이 없으므로 이를 추가적으로 확보할 필요가 있다. 상수의 생산에서 소비에 이르기까지의 기간은 시간적 제약을 받는 것이므로 소비자들은 가정내 상수시설물을 사용하는데에 있어서 이 지침을 따르는 것이 좋다.

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A study on the use of fire hydrants as a heat wave reduction facility through hydraulic analysis of water supply network (상수관망 수리해석을 통한 폭염 저감 시설로써의 소화전 활용방안연구)

  • Hong, Sung Jin;Choi, Doo Yong;Yoo, Do Guen
    • Journal of Korea Water Resources Association
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    • v.54 no.12
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    • pp.1215-1222
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    • 2021
  • In this study, a study on how to use a fire hydrant as a heat wave reduction facility through hydraulic analysis of the water supply pipe network was conducted. Assuming that the fire hydrant installation point is open for heat wave reduction, the water pressure at each point was derived. And the reduction rate of the temperature according to the hydrant watering was compared with the watering area according to the operation of the watering truck. The watering area according to the opening of the fire hydrant was calculated by deriving the pressure value at the node where the fire hydrant was installed through hydraulic analysis of the water pipe network, and then using the watering radius relational expression according to the pressure value. As a result of applying the proposed methodology to two real city areas, the temperature reduction effect of the watering method by a fire hydrant can be derived lower than the watering method by a watering truck according to the difference in the absolute watering area. However, unlike a watering truck, a fire hydrant does not have a relative restriction on the amount of water supply and is expected to allows continuous divided spraying of the same area.

Evaluation of Subsystem Importance Index considering Effective Supply in Water Distribution Systems (유효유량 개념을 도입한 상수관망 Subsystem 별 중요도 산정)

  • Seo, Min-Yeol;Yoo, Do-Guen;Kim, Joong-Hoon;Jun, Hwan-Don;Chung, Gun-Hui
    • Journal of the Korean Society of Hazard Mitigation
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    • v.9 no.6
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    • pp.133-141
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    • 2009
  • The main objective of water distribution system is to supply enough water to users with proper pressure. Hydraulic analysis of water distribution system can be divided into Demand Driven Analysis (DDA) and Pressure Driven Analysis (PDA). Demand-driven analysis can give unrealistic results such as negative pressures in nodes due to the assumption that nodal demands are always satisfied. Pressure-driven analysis which is often used as an alternative requires a Head-Outflow Relationship (HOR) to estimate the amount of possible water supply at a certain level of pressure. However, the lack of data causes difficulty to develop the relationship. In this study, effective supply, which is the possible amount of supply while meeting the pressure requirement in nodes, is proposed to estimate the serviceability and user's convenience of the network. The effective supply is used to calculate Subsystem Importance Index (SII) which indicates the effect of isolating a subsystem on the entire network. Harmony Search, a stochastic search algorithm, is linked with EPANET to maximize the effective supply. The proposed approach is applied in example networks to evaluate the capability of the network when a subsystem is isolated, which can also be utilized to prioritize the rehabilitation order or evaluate reliability of the network.