• 제목/요약/키워드: groundwater use and discharge

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A Study on the Development of Regional Master Recession Curve Model

  • Lee, Jae-Hyoung;Oh, Nam-Sun;Lee, Hee-Ju
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제6권3호
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    • pp.61-71
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    • 2001
  • A regional master recession curve model to predict groundwater discharges in a given basin was presented. Considering a stream-aquifer system, both theoretical and experimental baseflow equations were compared and a practical groundwater discharge equation was derived, The groundwater discharge equation was expanded and transformed to the discharge equation at the basin exit. For practical use, the equation was expressed as a function of watershed area, the mean slope of basin and the recession constant. To verify the model, the model was applied to Ssang-chi basin where long-term and temporal hydrological data at the upper basin were collected. Our results show that a master recession curve of unmeasured area can be predicted.

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지하수 관개지역 논에서의 배출부하 특성 (Characteristics of Pollutant Loading from Paddy Field Area with Groundwater Irrigation)

  • 윤춘경;김병희;전지홍;황하선
    • 한국농공학회지
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    • 제44권5호
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    • pp.116-126
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    • 2002
  • Discharge pattern and water quality were investigated in the drainage water from about 10 ha of groundwater-irrigated paddy field in the growing season of 2001. Total discharge quantity was about 1,117.2 mm in which about 75% was caused by management drainage due to cultural practice of paddy rice farming and the rest by rainfall runoff where total rainfall was about 515 mm. Dry-day sampling data showed wide variations in constituent concentrations with average of 26.14 mg/L, 0.37 mg/L, 3.54 mg/L at the inlet, and 43.60 mg/L, 0.34 mg/L, 3.58 mg/L at the outlet for CO $D_{cr}$ , T-P, and T-N, respectively. Wet-day sampling data demonstrated that generally CO $D_{cr}$ followed the discharge pattern and T-P was in opposite to the discharge pattern, but T-N did not show apparent pattern to the discharge. Discharge and load are in strong relationship. And based on regression equation, pollutant loads from groundwater irrigation area are estimated to be 288.34, 1.17, and 5.45 kg/ha for CO $D_{cr}$ , T-P, and T-N, respectively, which was relatively lower than the literature value from surface water irrigation area which implies that groundwater irrigation area might use less irrigation water and result in less drainage water, Therefore, total pollutant load from paddies irrigation with groundwater could be significantly lower than that with surface water. This study shows that agricultural drainage water management needs a good care of drainage outlet as well as rainfall runoff. This study was based on limited monitoring data of one year, and further monitoring and successive analysis are recommended for more generalized conclusion.

청원-충주지역 수막재배용 지하수 사용량 및 배출량 분석 (Analysis of Groundwater Use and Discharge in Water Curtain Cultivation Areas: Case Study of the Cheongweon and Chungju Areas)

  • 문상호;하규철;김용철;윤필선
    • 지질공학
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    • 제22권4호
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    • pp.387-398
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    • 2012
  • 국내 수막재배지는 시설 증대로 인한 지하수 취수량 감소의 어려움을 겪고 있다. 이 연구는 이들 지역 중 청원-충주지역을 대상으로 지하수 이용량 및 배출량을 측정하고, 이를 토대로 국내 수막재배지에서의 지하수 이용량을 추정하였다. 대표 관정들의 모터사양과 1일 지하수 토출 능력과의 관계, 1일 최저 기온 $0^{\circ}C$ 이하의 기록 일수, 최저 기온 변화에 따른 모터 가동 상황 등을 토대로 하여, 청원지역에서 2011년~2012년 겨울철 수막재배에 이용된 지하수 이용량을 추정하면 1 ha 당 $53,138m^3$이 된다. 이에 의한 면적 대비 국내 수막재배지(10,746 ha)의 지하수 이용 총량은 약 5.7억 $m^3$이며, 이는 국내 농업용수 지하수 이용량 16.9억 $m^3$의 33.7%에 해당된다. 2012년 2월 9일부터 22일까지 면적 4 ha의 청원지역 배수로에서 측정한 1일 지하수 배출량은 $2,079{\sim}2,628m^3$ 범위(평균 $2,341m^3$)로서, 수막재배 면적 1 ha 당 1일 평균 지하수 배출량이 $585m^3$인 것으로 나타났다. 수막재배 일수 94일을 적용하면, 청원지역에서 2011년~2012년 겨울철에 수막재배에 이용된 지하수 이용량은 $54,990m^3/ha$이다. 이에 의한 면적 대비 국내 수막재배지의 지하수 이용 총량은 약 5.9억 $m^3$이며, 이는 전체 농업용수 지하수 이용량의 약 34.9%에 해당된다. 충주지역에서는 수막재배지 1 ha 당 1일 지하수 배출량이 $805m^3$ 미만일 것으로 추정되었다. 이 지역에서의 2011년~2012년 겨울철 수막재배 일수 108일을 적용하면, 면적 대비 국내 수막재배지의 지하수 이용량은 전체 농업용수 지하수 이용량의 55% 미만일 것으로 추정된다.

수위-유량 관계곡선을 이용한 수막재배용 지하수 사용량 추정 (Estimation of Groundwater Usage for Water Curtain Cultivation using a Rating Curve)

  • 이봉주;김용철;조병욱;윤욱;하규철;이병대;문상호;윤필선;김성윤
    • 지질공학
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    • 제25권1호
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    • pp.35-43
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    • 2015
  • 수위-유량 관계곡선을 이용한 동절기 수막재배기간의 지하수 사용량 추정 방법을 제시하고, 이를 논산 왕전리 수막재배 지역에 현장 적용하였다. 연구지역의 동절기 수막재배 기간의 농수로수의 구성성분은 주로 지하수와 강우의 직접 유출 성분으로 구성된다. 농수로 수위를 관측하고, 강우에 의한 농수로 수위 상승분을 수위 관측 자료로 부터 제거시키기 위해 기저유출분리법을 적용하였다. 강우에 의한 수위 상승분이 제거된 농수로 수위자료에 수위-유랑 관계를 적용하여 연구지역의 수막재배용 지하수 배출량을 산출하였다. 왕전리 지역의 수막재배용 지하수 사용량은 평균 10,900 m3/d, 420 m3/d/ha인 것으로 추정되었다. 추정 지하수 사용량(420 m3/d/ha)과 전국의 수막재배면적(10,746 ha), 그리고 연간 수막재 배일수(120 days/year)을 기준한 전국 규모의 수막재배용 지하수 사용량은 5억 4천만 m3에 이른다. 이는 농업용 지하수 연간 사용량(약 17 억 m3)의 약 32%에 달한다.

Groundwater and Surface Water Hydrology in the Lake Rotorua Catchment, New Zealand, and Community Involvement with Lake Water Quality Restoration

  • White, Paul A.;Hong, Timothy;Zemansky, Gil;McIntosh, John;Gordon, Dougall;Dell, Paul
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2007년도 학술발표회 논문집
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    • pp.8-14
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    • 2007
  • Water quality in Lake Rotorua, New Zealand, deteriorated since the 1960s because of excessive phytoplankton growths due principally to increasing nitrogen and phosphorus in the lake waters. Nutrient concentrations in eight of the nine major streams feeding Lake Rotorua have increased since 1965. The groundwater system has a key role in the hydrology of the Lake Rotorua catchment and the groundwater system is probably the control on the time delay between intensification of agricultural land use and response of surface water quality. All major, and many minor streams, in the catchment are fed by springs. Two lithological units are most important to groundwater flow in the Lake Rotorua catchment: Mamaku Ignimbrite, erupted in about 200,000 years ago and Huka Formation sediments which filled the caldera left by the Mamaku Ignimbrite eruption. Rainfall recharge to groundwater in the groundwater catchment of Lake Rotorua is estimated as approximately 17300 L/s. A calibrated steady-state groundwater flow model estimates that approximately 11100 L/s of this flow discharges into streams and then into the lake and the balance travels directly to Lake Rotorua as groundwater discharge through the lake bed. Land use has impacted on groundwater quality. Median Total Nitrogen (TN) values for shallow groundwater sites are highest for the dairy land use (5.965 mg/L). Median TN values are also relatively high for shallow sites with urban-road and cropping land uses (4.710 and 3.620 mg/L, respectively). Median TN values for all other uses are in the 1.4 to 1.5 mg/L range. Policy development for Lake Rotorua includes defining regional policies on water and land management and setting an action plan for Lake Rotorua restoration. Aims in the action plan include: definition of the current nutrient budget for Lake Rotorua, identification of nutrient reduction targets and identification of actions to achieve targets. Current actions to restore Lake Rotorua water quality include: treatment of Tikitere geothermal nitrogen inputs to Lake Rotorua, upgrade of Rotorua City sewage plant, new sewage reticulation and alum dosing in selected streams to remove phosphorus.

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Groundwater pollution risk mapping using modified DRASTIC model in parts of Hail region of Saudi Arabia

  • Ahmed, Izrar;Nazzal, Yousef;Zaidi, Faisal
    • Environmental Engineering Research
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    • 제23권1호
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    • pp.84-91
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    • 2018
  • The present study deals with the management of groundwater resources of an important agriculture track of north-western part of Saudi Arabia. Due to strategic importance of the area efforts have been made to estimate aquifer proneness to attenuate contamination. This includes determining hydrodynamic behavior of the groundwater system. The important parameters of any vulnerability model are geological formations in the region, depth to water levels, soil, rainfall, topography, vadose zone, the drainage network and hydraulic conductivity, land use, hydrochemical data, water discharge, etc. All these parameters have greater control and helps determining response of groundwater system to a possible contaminant threat. A widely used DRASTIC model helps integrate these data layers to estimate vulnerability indices using GIS environment. DRASTIC parameters were assigned appropriate ratings depending upon existing data range and a constant weight factor. Further, land-use pattern map of study area was integrated with vulnerability map to produce pollution risk map. A comparison of DRASTIC model was done with GOD and AVI vulnerability models. Model validation was done with $NO_3$, $SO_4$ and Cl concentrations. These maps help to assess the zones of potential risk of contamination to the groundwater resources.

비위생매립지 침출수의 안정화 평가 - 노은매립지 사례연구 - (The Assessment of Stabilization of Open-dumping Landfill Leachate - A Case Study of Noeun Landfill -)

  • 홍상표
    • 환경영향평가
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    • 제13권3호
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    • pp.115-124
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    • 2004
  • To utilize a closed municipal solid waste landfill site in environmentally secure conditions, it is necessary to verify the stabilization level of landfill leachate. To assess leachate stabilization of an open-dumping municipal solid waste landfill (Noeun Landfill) which is located at the upper drainage basin of Namhan River which flows into Lake Paldang utilized for Seoul Metropolitan water supplies, the surrounding characteristics of the landfill site was surveyed. After then, leachate, groundwater and soil samples from this landfill were chemically analyzed, and the analysis results were evaluated by "The Criteria of Landfill Waste Stabilization(CLWS)", "Discharge Criteria of Landfill Leachate", "The Criteria of Domestic Use in Groundwater Quality", and "Soil Contamination Criteria" promulgated by Korean Ministry of Environment. The closed open-dumping landfill was equipped with the final soil cover, 3 groundwater monitoring wells and poor landfill gas extraction devices for the post-closure management of the landfill. BOD/CODcr ratios in leachate were less than or slightly higher than 1/10. This results seemed to imply that the leachate stabilization level of this landfill based on the CLWS was almost completed. Qualities of groundwater sampled from monitoring wells located at outside of landfill were adequate for "The Criteria of Domestic Use in Groundwater Quality". Finally, concentrations of soil contaminants that were likely to be influenced by this landfill site were adequate to "Soil Contamination Criteria".

Minimum Entropy Deconvolution을 이용한 지하수 상대 재충진양의 시계열 추정법

  • 김태희;이강근
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 추계학술발표회
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    • pp.574-578
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    • 2003
  • There are so many methods to estimate the groundwater recharge. These methods can be categorized into four groups. First groupis related to the water balance analysis, second group is concerned with baseflow/springflow recession, and third group is interested in some types of tracers; environmental tracers and/or temperature profile. The limitation of these types of methods is that the estimated results of recharge are presented in the form of an average over some time period. Forth group has a little different approach. They use the time series data of hydraulic head and specific yield evaluated from field test, and the results of estimation are described in the sequential form. But their approach has a serious problem. The estimated results in forth typeof methods are generally underestimated because they cannot consider the discharge phase of water table fluctuation coupled with the recharge phase. Ketchum el. at. (2000) proposed calibrated method, considering recharge- and discharge-coupled water table fluctuation. But the dischargeis considered just as the areal average with discharge rate. On the other hand, there are many methods to estimate the source wavelet with observed data set in geophysics/signal processing and geophysical methods are rarely applied to the estimation of groundwater recharge. The purpose this study is the evaluation of the applicability of one of the geophysical method in the estimation of sequential recharge rate. The applied geophysical method is called minimum entropy deconvolution (MED). For this purpose, numerical modeling with linearized Boussinesq equation was applied. Using the synthesized hydraulic head through the numerical modeling, the relative sequenceof recharge is calculated inversely. Estimated results are very concordant with the applied recharge sequence. Cross-correlations between applied recharge sequence and the estimated results are above 0.985 in all study cases. Through the numerical test, the availability of MED in the estimation of the recharge sequence to groundwater was investigated

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도시지역의 지하수수지 (Groundwater Balance in Urban Area)

  • 이승현;배상근
    • 한국환경과학회지
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    • 제20권12호
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    • pp.1553-1560
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    • 2011
  • The study analyzes groundwater balance with regard to the water recharge and discharge which contain urbanization components in Suyeong-gu, Busan. It also verifies the reliability and accuracy improvement on the analysis of the balance. The result of the study is viewed as preliminary data which are useful to develop, utilize and manage groundwater. The average quantity of groundwater recharge is 6,014.1 $m^3$/day in the research area during the last ten year period(from 1998 to 2007). The outflow from drainage areas to rivers and coasts is 149.3 $m^3$/day, the inflow from rivers and coasts to drainage area is 439.9 $m^3$/day. The use of the water is 4,243.0 $m^3$/day. The outflow caused by subway in line No.2 and No.3 through Suyeong-gu and the one by building an underground electric complex is 1,500.0 $m^3$/day. The leakage of water works is 6514.9 $m^3$/day. The inflow and outflow of sewerage is 5082.2 $m^3$/day from groundwater to sewer. The amount of groundwater recharge, the inflow from rivers and coasts to drainage area, and the leakage of water works belong to the amount of groundwater inflow and the total amount is 12,968.9 $m^3$/day. The amount of outflow from drainage area to rivers and coasts, the use of groundwater, outflow by subway and underground electric complex tunnel and the amount of inflow of the water to sewerage belong to the amount of outflow of groundwater and the sum amount is 13,031.5 $m^3$/day. The gap between the amount of inflow and outflow of groundwater is 62.6 $m^3$/day, which is considered to reflect the trend that the short term drop in the amount of rainfall results in the amount of groundwater recharge and that the amount of outflow from drainage area to rivers and coasts decreases.

SWAT-MODFLOW를 이용한 영덕 오십천의 지하댐 타당성 연구 (Feasibility Study of a Groundwater Dam in Osibcheon, using SWAT-MODFLOW)

  • 김종태;정일문;김남원;정교철
    • 지질공학
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    • 제21권2호
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    • pp.179-186
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    • 2011
  • 지표수와 지하수의 연계 해석은 지하수 이용에 의한 문제들을 최소화 시킬 수 있다. 본 연구에서는 지하댐 건설 예정지인 경상북도 영덕군 오십천 유역의 현장조사 및 지하수위 분석을 실시하였으며 지표수 및 지하수 연계해석 모형인 SWAT-MODFLOW를 이용하여 지하댐의 지하수위 변화에 대해 해석하였다. 또한 지하댐 건설을 위한 현황분석을 실시하였으며 지하댐 상부에서 양수를 하였을 경우 지하수위 변화를 분석하여 연구지역의 한국형 지하댐 건설에 대한 타당성을 평가하였다.