• 제목/요약/키워드: Monitoring of Flow and Water Quality

검색결과 196건 처리시간 0.033초

하천 퇴적물의 영양염류 모니터링 (Monitoring and Analysis of Nutrients in Sediments in the Riverbed)

  • 김건하;정우혁;이준배
    • 한국물환경학회지
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    • 제22권5호
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    • pp.838-845
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    • 2006
  • Characterization of sediment in the riverbed is of importance for effective water quality management, yet have not been monitored sufficiently. This paper reports monitoring results of nutrient concentrations of sediments. Surface waters and sediments were sampled four times during rainy season at five monitoring points. Organics of overlying water were increased after high flow condition followed by decreasing tendencies. Soluble phosphorus fraction among total phosphorus was increased after high flow condition while total phosphorus was in decreasing tendencies. Monitoring result suggested that more extended monitoring scheme for flow rate, scouring velocity, and suspended material is required for analyzing relationship between water quality and sediment.

하천수질관리를 위한 시험유역의 운영 (Operation of an Experimental Watershed for River Water Quality Management)

  • 김상호;최흥식
    • 한국습지학회지
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    • 제7권1호
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    • pp.81-91
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    • 2005
  • 본 연구에서는 하천에서의 흐름과 수질변화를 실시간으로 감시할 수 있는 수문 수질관측시스템을 구축하고자 한다. 이를 통해 하천에서의 오염사고에 대비한 수질감시와 수질변화를 모의할 수 있는 하천관리시스템을 구축하고자 한다. 횡성댐 상류 계천 유역에 시험유역을 선정하였으며, 보다 정확한 수문 및 수질자료를 얻기 위해 우량관측소 3개소, 수위관측소 3개소 및 수질관측소 1개소를 설치하여 실시간 수문 수질관측시스템을 운영하고 있다. 이와 같이 구축된 관측시스템을 통해 강우량, 수위, 유속, 유량 및 수질 등과 같은 자료들을 축적하고, 다양한 분야의 활용을 위해 자유롭게 공개함으로써 관측자료에 대한 활용도를 높이고자 한다.

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유황분석과 수질변화 평가를 통한 비점오염원 관리대상지역 선정방법 연구 (Watershed Selection for Diffuse Pollution Management Based on Flow Regime Alteration and Water Quality Variation Analysis)

  • 정우혁;이상진;김건하;정상만
    • 한국물환경학회지
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    • 제27권2호
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    • pp.228-234
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    • 2011
  • The goal of water quality management on stream and watershed is to focus not on discharged loads management but on a water quality management. Discharged loads management is not goal of water quality management but way for perform with total maximum daily loads management. It is necessary to estimate the relation between non-point source with stromwater runoff (NPSSR) and water quality to select a watershed where it is required to manage NPSSR for water quality improvement. To evaluate the effects of NPSSR on stream's water quality, we compare the aspects of water quality in dry and wet seasons using flow duration curve analysis based on flow rate variation data by actual surveying. In this study we attempt to quantify the variation characteristic of water quality and estimate the Inflow characteristic of pollution source with water quality and flow rate monitoring on 10 watersheds. We try to estimate water quality and flow rate by regression analysis and try again regression analysis with each high and low water quality data more than estimations. An analysis of relation between water quality and flow rate of 10 watersheds shows that the water quality of the Nonsan and the Ganggyeong streams had been polluted by NPSSR pollutants. Other eight streams were important point source more than NPSSR. It is wide variation range of $BOD_5$ also high average concentration of $BOD_5$. We have to quantify water quality variation by cv1 in wet season and cv365 in dry season with comparing the estimate of high water quality and low water quality. This method can be used to indicator for water quality variation according to flow rate.

2012-2016년 모니터링 자료를 이용한 낙동강 지류·지천 수질 특성 분석 (Water Quality Analysis in Nakdong River Tributaries Using 2012-2016 Monitoring Data)

  • 손영규;나승민;임태효;김상훈
    • 한국물환경학회지
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    • 제33권6호
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    • pp.680-688
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    • 2017
  • Water quality monitoring for flow rates and BOD/COD/T-N/T-P/SS/TOC concentrations has been conducted in Nakdong river tributaries since 2011. In this study concentrations and loading rates of BOD, T-P, and TOC were analyzed to evaluate water quality monitoring stations using accumulated data at 206 tributary monitoring stations in Nakdong river 2012 ~ 2016. Average concentration ranges for 206 monitoring stations were 0.3 ~ 6.4 mg/L, 0.025 ~ 1.562 mg/L, and 0.6 ~ 10.7 mg/L for BOD, T-P, and TOC, respectively. Additionally, average loading rate ranges were 0.96 ~ 46,040 kg/d, 0.087 ~ 1,834 kg/d, and 1.51 ~ 80,425 kg/d for BOD, T-P, and TOC, respectively. Average concentration for BOD, T-P, and TOC at each monitoring station was evaluated using ambient water quality standards of rivers and water quality regulation level for medium-sized management areas. Average loading rate and specific loading rate (loading rate/drainage basin area) for BOD, T-P, and TOC at each monitoring station was considered to evaluate monitoring stations using suggested classification (BOD, TOC: -1, 1 ~ 10, 10 ~ 100, 100 ~ 1,000, and 1,000 ~ kg/d; T-P: -0.1. 0.1 ~ 1, 1 ~ 10, 10 ~ 100, and 100 ~ kg/d) Using results of this study, various water quality status maps were provided, and three evaluation methods were suggested to determine priority monitoring stations in Nakdong river for rational water quality control and tributaries basin management.

Effect of Farming Practices on Water Quality

  • 최중배;최예환
    • 한국농공학회지
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    • 제37권E호
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    • pp.63-71
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    • 1995
  • Three types of land use were investigated to describe the effect of land use on both surface and ground water quality. Typical land uses of a grazing pasture, Sudan grass field and paddy in Kangwon province were selected and flumes and monitoring wells were installed. Land managements were carefully monitored, water samples were collected periodically and analyzed with respect to nitrate, TP and TKN at a laboratory of Kangwon Provincial Institute of Health and Environment from August, 1993 to May, 1994. Runoff from the pasture was formed mostly with seeping subsurface flow in the lower areas of the pasture. A few overland flows were observed during heavy storms, and when it occurred, runoff increased sharply. For the Sudan grass field, runoff was formed with overland flow. Nitrate concentration in runoff from both land uses seemed not affected by runoff and ranged from 0.241 to 4.137mg'/1. TP and TKN concentrations from the pasture were affected by overland flow. When overland flow occurred, TP and TKN concentrations abruptly increased to 5.726 and 12.841mg/1, respectively, from less than 1.0mg/l. However, these concentrations from the Sudan grass field were quite stable ranging from 0.191 to 0.674mg/l for TP and 0A70 and 1.650mg/l for TKN. Nitrate concentration was significantly affected by land use(Sudan grass field) and the concentration increase reached about 2mg/l per lOOm ground water flow. Nitrate concentration from a well located in the middle of rice fields also was significantly higher than that measured from a well located relatively undisturbed mountain toe area. TP and TKN concentrations in shallow ground water affected by the depth of the monitoring wells. The deeper the monitoring wells, the less TP and TKN concentrations were measured.

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건천화된 농촌소하천의 시·공간적 수문 수질 특성분석 (Temporal and Spatial Analysis of Hydrology and Water Quality in Small Rural Streams for Stream Depletion Investigation)

  • 이예은;김상민
    • 한국농공학회논문집
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    • 제55권6호
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    • pp.177-186
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    • 2013
  • The purpose of this study was to analyze the temporal and spatial characteristics of the stream flow of small rural streams for investigating the status of stream depletion located downstream of irrigation reservoir. Bonghyun and Hai reservoirs and each downstream were selected for this study. Streamflow was measured for 8 stations downstream from two reservoirs from 2010 to 2012. The water quality samples were collected monthly from the 8 stream stations and 2 reservoir stations from 2011 to 2012. The stream depletion was found in most of the downstream of reservoirs for the non-irrigation period and even in the irrigation period when there were a lot of antecedent precipitation. We found that the stream segments where there were few streamflow, vegetation covers the stream and block the streamflow which makes the stream lost its original function as a stream. Water quality monitoring results of Bonghyun stream indicated that the concentration of SS, Turbidity, TOC, COD were decreased as the stream flows from the reservoir to downstream while the TN and TP were increased. The correlation analysis for water quality data indicated that the correlation between T-N and T-P was high for Bonghyeon and Sukji streams, respectively. Continuous monitoring for rural streams located in downstream of reservoirs are required to quantify the status of stream flow depletion and determine the amount of environmental flows.

낙동강 지류·지천 모니터링 결과를 이용한 수질환경 평가 (Water Quality Analysis in Nakdong River Tributaries)

  • 임태효;손영규
    • 한국환경과학회지
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    • 제25권12호
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    • pp.1661-1671
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    • 2016
  • Water quality in Nakdong river was analyzed using 699 monitoring data sets including flow rates and water quality concentrations collected at 195 tributary monitoring stations (the priority management areas: 35 stations, the non-priority management areas: 160 stations) in 2015. The highest average concentrations of all data for BOD, COD, T-N, T-P, SS, and TOC were 30~600 times higher than the lowest concentrations while the highest average loading rates were 800,000~2,700,000 times higher than the lowest loading rates. Because of the very large differences in the concentrations and loading rates, the variation of the concentrations and loading rates in a priority management monitoring station for BOD, T-P, and TOC was analyzed using the coefficient of variation, the ratio of the standard deviation value to the mean value. For BOD, T-P, and TOC, the coefficients of variation for concentration were mostly less than 100%, whereas the coefficients of variation for loading rate ranged from 31.1% to 232.2%. The very big difference in the loading rates was due to the large variation in flow rates. As a result of this, the estimation of water quality at each monitoring station using the average values of the concentrations and loading rates might be not rational in terms of their representativeness. In this study, new water quality analysis methods using all collected monitoring data were suggested and applied according to the water quality standard in medium-sized management areas.

유량-수질관계 비교를 통한 하천 수질개선 우선순위 선정기법 적용 (Application of Priority Order Selection Technique for Water Quality Improvment in Stream Watershed by Relationship of Flow and Water Quality)

  • 임봉수;조병욱;김영일;김도영
    • 대한환경공학회지
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    • 제32권8호
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    • pp.802-808
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    • 2010
  • 본 연구는 하천 수질개선을 위해 충청남도 금강 중 하류권역에 위치한 18개의 지류하천을 대상으로 유량 및 수질측정, 하천그룹화, 오염물질 부하량 및 배출부하밀도를 산정하였다. 하천의 수질분석 결과는 저수기의 평균BOD농도를 기준으로 하천생활환경기준 II등급(BOD기준 3.0 mg/L)의 수질을 초과하는 하천은 정안천, 방축천, 길산천, 조천, 석성천, 강경천으로 나타났다. 하천그룹화 결과 금강에 유입되는 유량이 저수량을 기준으로 $10\;m^3/min$ 이상이고, 저수기의 평균BOD 농도가 3.0 mg/L 이상으로 금강의 수질을 악화시키는 주된 요인인 그룹(Group A)에 해당되는 하천으로는 조천, 강경천, 석성천, 정안천으로 나타났다. 이 하천들은 금강의 수질개선을 위해서 수환경관리의 대책을 가장 먼저 고려해야 할 것이다. Group A에 해당하는 하천 중 배출부하밀도가 10 BOD kg/$day{\cdot}km^2$ 정도 이상인 하천은 조천, 석성천, 강경천으로 나타났다. 하천의 유량 및 수질모니터링, 하천그룹화, 배출부하밀도산정 등을 통하여 수질개선 우선순위 유역을 선정한 결과, 연기군의 조천, 부여군과 논산시 경계에 위치한 석성천, 논산시의 강경천과 같은 하천 유역이 수질개선이 시급한 것으로 나타났다.

빗물 자동모니터링장치와 SWMM 모델을 이용한 강우시 도시지역 오염부하량 예측에 관한 연구 (Application of Automatic Stormwater Monitoring System and SWMM Model for Estimation of Urban Pollutant Loading During Storm Events)

  • 서동일;방철호
    • 대한환경공학회지
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    • 제34권6호
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    • pp.373-381
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    • 2012
  • 대전의 도시 소하천, 관평천 유역을 연구대상지역으로 강우시의 유량 및 수질 변화 특성을 파악하기 위한 원격 제어실시간 자동 모니터링 시스템을 설치하여 자료를 확보하고 이 시스템을 이용하여 확보된 강우시 연속측정 자료를 이용하여 도시유역 모델인 SWMM (Storm Water Management Model) 모델을 보정하는 데 사용하였다. 실시간 자동 모니터링 시스템은 강우량계, 초음파 수위계, 자동수질측정장치, 자동취수장치, 데이터 로거 및 전송장치 등으로 구성되었으며 원격으로 제어할 수 있도록 설계되었다. 강우시 유량은 초음파 수위계와 사각 위어 공식을 이용하여 지속적으로 측정이 가능하도록 설계되었으며 정확도는 수동측정을 병행하여 확인하였다. 수질센서로 측정할 수 없는 항목은 자동채수기에 의해 일정시간 간격으로 시료를 채취한 후 실험실로 이송하여 분석하여 자료를 확보하였다. 위에서 실측된 유량 및 수질 연속 자료를 이용하여 연구대상지역에 대해 SWMM 모델을 구축하였다. SWMM 모델의 보정과 검증 결과 유량은 매우 양호한 수준으로 예측하고 있으나 BOD, COD, SS, TN, TP 등의 예측은 강우 특성에 따라 차이가 있는 것으로 나타났다. 본 연구는 SWMM에 나타난 바와 같은 특정 유역에 고정된 형태의 오염물질 축적과 유출현상을 나타내는 경험식이 강우 및 선행강우 특성을 반영하여 수정될 필요가 있다는 것을 시사하고 있다. 본 연구에서 제안된 빗물 자동모니터링 및 모델링 시스템은 향후 강우에 따른 하천 수질관리를 위한 유역단위의 빗물 수량 수질 관리시설의 설계 및 운영에 중요한 자료로 활용될 수 있을 것으로 기대된다.

실시간 저수지 탁수 감시 및 예측 모의 (A Real-time Monitoring and Modeling of Turbidity Flow into a Reservoir)

  • 정세웅;고익환
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2005년도 학술발표회 논문집
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    • pp.1184-1188
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    • 2005
  • The impacts of turbidity flow induced by summer rainfall events on water supply, aquatic ecosystems, and socioeconomics are significant and major concerns in most of reservoirs operations. As a decision support tool, the real-time turbidity flow monitoring and modeling system RTMMS is under development using a laterally integrated two-dimensional (2D) hydrodynamic and water quality model. The objectives of this paper is to present the preliminary field observation results on the characteristics of rainfall-induced turbidity flows and their density flow regimes, and the model performance in replicating the fate and transport of turbidity plume in a reservoir. The rainfall-induced turbidity flows caused significant drop of river water temperature by 5 to $10^{\circ}C$ and resulted in density differences of 1.2 to $2.6kg/m^3$ between inflow water and ambient reservoir water, which consequently led development of density flows such as plunge flow and interflow in the reservoir. The 2D model was set up for the reservoir. and applied to simulate the temperature stratification, density flow regimes, and temporal and spatial turbidity distributions during flood season of 2004 After intensive refinements on grid resolutions , the model showed efficient and satisfactory performance in simulating the observed reservoir thermal stratification and turbidity profiles that all are essentially required to enhance the performance of RTMMS.

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