• Title/Summary/Keyword: Recharge area

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Analysis on the temporal and spatial variation of groundwater recharge rate in Jeongup area (정읍지역 지하수 함양량의 시공간적 변동해석)

  • Chung, Il-Moon;Na, Han-Na;Kim, Nam-Won;Lee, Duk-Su
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.2016-2020
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    • 2010
  • 기존에 국내외에서 적용되는 지하수 함양량 추정방법인 기저유출 분리법, 연단위 물수지 분석법, 지하수위변동법 등은 집중형 개념을 기반으로 하거나 국지적인 규모로 다뤄지기 때문에 함양량의 시공간적 변동성을 나타내기에는 한계가 있다. 따라서 본 연구에서는 시공간적으로 변하는 지하수 함양량을 정량적으로 추정할 수 있는 기법을 이용, 실제 유역에 적용하였다. 이를 위해 강우-유출 모형은 수문성분 해석 이론이 잘 정립된 SWAT모형과 SWAT모형의 지하수 부분을 MODFLOW모형으로 대체한 SWAT-MODFLOW모형을 선택하였고, 분석 대상유역인 정읍지역을 대상으로 각 소유역 및 수문학적 반응단위(Hydrologic Response Unit: HRU)별로 토지이용과 토양통 특성을 반영하여 지하수 함양량의 시공간적인 변화를 산정하였다. 2001년부터 2008년까지의 소유역별 일단위 지하수 함양량을 산정하였으며, 함양량의 시 공간적 변동성을 분석한 결과 월평균 함양량의 경우 대략 280mm 범위 내에서 유역의 토지이용 및 토양특성, 경사 등에 따라 매우 비 균질하게 분포하는 것을 확인할 수 있었다. 이렇게 산정한 함양량은 지역지하수 관리계획에 유연하고 합리적으로 적용될 수 있을 것으로 판단된다.

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Analysis of the Urbanization Effect on Hydrologic Response

  • Jung, Young-Hun;Kang, Na-Rae;Lee, Seung-Oh;Kim, Hung-Soo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.944-944
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    • 2012
  • Urbanization leads to a change of hydrologic responses because impervious area is increased by urbanization. Decrease of groundwater recharge and increase of overland flow are general hydrologic characteristics caused by urbanization. This can be a source of damages such as increased flooding and reduced groundwater levels. Daily streamflow in Gabcheon watershed, South Korea is simulated by ARCSWAT model, an extension of SWAT2005. After calibration and validation of model, the simulated daily streamflow from 1997 to 2001 are statistically analyzed. The phenomenon that $T_{Qmean}$ is inversly proportional to coefficient of variation for the simulated daily streamflow is demonstrated. Also, hydrologic response was more influenced by weather than land use for high flow. This study also examines the effect of land use change on daily streamflow with spatially and quantitatively different land use maps. The simulated stream flow is tested by Mann-Whitney method. The median between stream flows simulated for 1990 and 2000 land use maps is significantly different, but the simulated streamflow for spatially different land use maps is almost unchanged.

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Water Budget Analysis for the Target Area Assessment of Groundwater Artificial Recharge (지하수 인공함양 대상지역 평가를 위한 물수지적 접근 방안)

  • Kim, Gyoo-Bum;Hwang, Chan-Ik;Choi, Myoung-Rak
    • Proceedings of the Korea Water Resources Association Conference
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    • 2020.06a
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    • pp.24-24
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    • 2020
  • 전세계적으로 지하수 인공함양은 기후변화로 인한 극한가뭄 시대에 효율적인 물확보 방안으로 평가되고 있는 기술로서, 우리나라에서도 2015년 충청 및 강원 지역의 극한 가뭄이 발생한 이후 그 필요성이 증대되고 있다. 지하수 인공함양 대상지역의 평가를 위해서는 물의 수요에 대한 진단, 대상지역의 수리수문학적 특성, 지층의 인공함양 가능성, 원수의 확보 여부, 현행 공급 능력의 진단 등이 복합적으로 이루어져야 한다. 충청남도 홍성군 갈산면 신곡마을은 안정적인 농업용수 공급 시스템이 마련되어 있지 않아 상시 가뭄지역으로서 현행 지하수 관정에 의한 취수능력으로는 주기적인 물 부족이 발생하는 지역이며, 대용량의 암반 지하수 관정 개발도 대수층의 특성상 거의 불가능하다. 따라서, 인공함양의 원수로서 하천수 또는 함양영역 밖의 소용량의 암반 지하수를 고려할 수 있다. 월별 물수지 분석 결과, 농번기 초기인 4월에는 수요량 대비 기존 용수원(관정)에 의한 공급량이 충분하여 99 ㎥/d의 여유가 존재하나, 5월에는 215 ㎥/d의 물부족이 발생하게 된다. 반면에, 하천유출량은 3월 1,297 ㎥/d, 4월 2,899 ㎥/d 등으로서 함양원수로 사용하기에 충분한 수량이 존재할 뿐 아니라, 이 기간의 지하수위가 지표하 약 4~5 m 하부에 위치하고 있어 지하수 함양에 충분한 공간도 확보되는 것으로 평가되었다. 향후 추가적인 정밀한 수치모델링을 통하여 지하수 인공함양을 위한 적정 물량, 지하수위의 분포 변화 예측, 적정 취수량의 결정 등을 수행할 예정이다.

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A Study of the Management of Groundwater Reservoir by Numerical Three Dimensional Flow Model (3차원 흐름모델을 이용한 지하저수지의 관리에 대한 연구)

  • 신방웅;김희성
    • The Journal of Engineering Geology
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    • v.5 no.3
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    • pp.289-300
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    • 1995
  • At the initial stage of the underground reservoir design one should thoroughly consider surface and subsurface hydrology, hydrogeologic characteristics of aquifer system, and the function of cut - off wall because it is linked to the effective management. In this study, three dimensional finite difference model was applied to analyse the function of Ian underground reservoir at Kyungbuk Province. The steady and unsteady state conditions after construction of the underground dam were simulated through the model, and from these results the groundwater budget and the safe yield were determined. The model simulation indicates the infiltration of irrigation water to be one of the major factors of seasonal fluctuation of groundwater level. The recharge rates of irrigation water were estimated as 4.3mm/d during May and June, and 1.7mm/d during July and Agust. Groundwater recharge from the watershed area estimated to about $0.04m^3/s$, almost consistent through the year. In 1984, groundwater discharge through the transverse section of the dam was $0.002m^3/s$ and the optimum yield for two momths(July and Aguest)was $254000m^3$, however, the discharge became $0.013m^3/s$ in1993, implying the failure of cut -off function. without appropaiate of the cut - off wall, optiumum yield during the irrigaton period would be $93, 000m^3$.

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Interpretation of Groundwater System and Contamination by Water-Quality Monitoring in the Daejung Watershed, Jeju Island (지하수 수질 관측에 의한 제주도 대정수역의 지하수계 및 오염특성 분석)

  • 우남칠;김형돈;이광식;박원배;고기원;문영석
    • Economic and Environmental Geology
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    • v.34 no.5
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    • pp.485-498
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    • 2001
  • This study was objected to identify the temporal and spatial variations oi groundwater quality and contamination using monthly groundwater monitoring data collected from 30 wells in Daejung watershed, Jeju Island. Water samples were analyzed for major cations. anions, and environmental isotopes including $^{18}0-H_2$O,$^{2}H-H_2$O and$^{15}$ N-NO$_3$The groundwater represented mostly Na(Mg)-HCO$_3$ type, with local change toward Ca-HCO$_3$ type and Na-Cl type. Groundwater quality depends upon various factors such as the local groundwater flowpaths, input of surface contaminants with recharge events, and sea-water intrusion along the coastal area. Nitrate contamination changed temporally according to recharge events and spatially. $\delta$$^{18}$ O-$\delta$$_2$H data for monthly sampled groundwaters showed distinctive clusters, implying that groundwater was originated from independent precipitation, and subsequently recharged very fash. Using$\delta$$^{15}$ N-NO$_3$ data, major sources of nitrate and its areas of influence could be identified. The areas under influence of livestock farms showed relatively high NO$_3$-N concentrations and$\delta$$^{15}$ N values higher than 5$\textperthousand$. The agricultural areas in southeastern part showed very high concentrations of NO$_3$-N with the $\delta$$^{15}$ N values of lower than 5$\textperthousand$.

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The Change of Water Balance due to Urbanization in Gwangju River Basin (도시화에 수반되는 광주천 유역의 물수지 변화)

  • Yang, Hea-Kun;Kim, Jong-Il
    • Journal of the Korean association of regional geographers
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    • v.10 no.1
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    • pp.192-205
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    • 2004
  • The purpose of this paper is to analyze the factors, which have influence upon changes of hydrological environment in time series, and evaluate water balance changes caused by urbanization. The results of the analysis and evaluation are as follow: At first, the river runoff at Gwangju River Basin keep base flow of river by storage capacity recharged in June to September and show peak in August and minimum flow in May. The groundwater recharge by urbanization accounted for 46.1% of rainfall at early-urban stage, and decreased to 36.5% and 29.9% in the 1960's and the 1990's respectively, and is likely to decrease to 27.8% in the 2010's. On the other hand, the overland flow was 9.6% of rainfall in the 1960's and 16.2% in the 1990's, and is likely to increase to 18.3% in the 2010's. When such a phenomenon is kept continuously, distorted water balance shall be worsened to create not only frequent occurrence of urban flood but also decreased base flow of Gwangju River to accelerate dry stream phenomenon. The time series study on urban redevelopment and environment maintenance describes distorted phenomenon to supply the information for nature-friendly land use, and examines relations between human activities and natural environment.

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Fluctuation Features and Numerical Model for Underground Temperature in Shallow Subsurface Soil (천층 토양 내 지중온도 변동 특성과 수치모델 평가)

  • Jeong, Jaehoon;Kim, Gyoobum;Park, Hyoungki;Kim, Hyoungsoo;Kim, Taehyung
    • Journal of the Korean GEO-environmental Society
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    • v.16 no.5
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    • pp.35-42
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    • 2015
  • This is conducted to observe underground temperature and to analyze its change affected by climate condition and soil infiltration in the mountainous area, Yesan region, Chungcheong-namdo province. Additionally, underground temperature change is also simulated using air temperature and soil thermal properties with a numerical model. Soil temperature monitoring data acquired from each depth, 20 cm, 50 cm, and 100 cm, indicates that the data within 50 cm in depth shows peak-shaped big fluctuation directly affected by air temperature and it at 100 cm has open-shaped small fluctuation. Underground temperature variation, a difference between high and low values, during monitoring period is weakly proportional to hydraulic conductivity of the sediment and it is assumed that water plays a part in delivering air temperature in soil. The underground temperature estimated by a numerical model is very similar to the observed data with an average value of 0.99 cross-correlation coefficient. From the result of this study, the aquifer unsaturated hydraulic conductivity of the soil and the groundwater recharge is likely to be able to estimate with underground temperature profile calculated using a numerical model.

Evaluation of Groundwater Flow for the Kap-cheon Basin (갑천 유역의 지하수 유동 평가)

  • Hong, Sung-Hun;Kim, Jeong-Kon
    • Journal of Korea Water Resources Association
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    • v.40 no.6 s.179
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    • pp.431-446
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    • 2007
  • Groundwater flow in a basin is greatly affected by many hydrogeological and hydrological characteristics of the basin. A groundwater flow model for the Kap-cheon basin ($area=648.3km^2$) in the Geum river basin was established using MODFLOW by fully considering major features obtained from observed data of 438 wells and 24 streams. Furthermore, spatial groundwater recharge distribution was estimated employing accurately calibrated watershed model developed using SWAT, a physically semi-distributed hydrological model. Model calibration using observed groundwater head data at 86 observation wells yielded the deterministic coefficient of 0.99 and the water budget discrepancy of 0.57%, indicating that the model well represented the regional groundwater flow in the Kap-cheon basin. Model simulation results showed that groundwater flow in the basin was strongly influenced by such factors as topological features, aquifer characteristics and streams. The streams in mountainous areas were found to alternate gaining and losing steams, while the streams in the vicinity of the mid-stream and down-stream, especially near the junction of Kap-cheon and Yudeong-cheon, areas were mostly appeared as gaining streams. Analysis of water budget showed that streams in mountainous areas except for the mid-stream and up-stream of Yudeong-cheon were mostly fed by groundwater recharge while the streams in the mid and down-stream areas were supplied from groundwater inflows from adjacent sub-basins. Hence, it was concluded that the interactions between surface water-groundwater in the Kap-cheon basin would be strongly inter-connected with not only streams but also groundwater flow system itself.

An Analysis of Groundwater Level Fluctuation Caused by Construction of Groundwater Dam (지하댐 건설에 따른 유역 내 지하수위 변화 특성 해석)

  • Kim, Jong-Tae;Kim, Man-Il;Chung, Il-Moon;Kim, Nam-Won;Jeong, Gyo-Cheol
    • The Journal of Engineering Geology
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    • v.19 no.2
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    • pp.227-233
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    • 2009
  • Most of hydrological processes of groundwater recharge generally are occupied a rainfall, and recharged an aquifer along infiltrate into subsurface. These processes mainly have an influence by hydrological characteristics and topographic gradient of the aquifer. Development of water resources and its management is not good because of temporal and spatial disproportion in local rainfall. In order to deal with insufficiency of water resources from now on, development of groundwater dam requires a plan of a sustainable of new water resources. These are necessary that investigation of construction area of groundwater dam, effective groundwater development interconnected with surface water and groundwater, and assessment of an application of groundwater dam for utilization of water resources. Tn this study we were derived the input data by geological survey, hydraulic and hydrological analysis around Hoengchun-river, located in Hadong-gun, Gyeongsangnam Province where is a plan area for construction of groundwater dam. Based on input data we were carried out the interconnected analysis of surface water and groundwater using the SWAT-MODFLOW, and predicted groundwater fluctuation of its construction before and after.

Characterization of Nitrate Contamination and Hydrogeochemistry of Groundwater in an Agricultural Area of Northeastern Hongseong (홍성 북동부 농촌 지역 지하수의 질산성 질소 오염과 수리지구화학적 특성)

  • Ki, Min-Gyu;Koh, Dong-Chan;Yoon, Heesung;Kim, Hyun-Su
    • Journal of Soil and Groundwater Environment
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    • v.18 no.3
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    • pp.33-51
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    • 2013
  • Spatial and temporal characteristics of nitrate contamination and hydrogeochemical parameters were investigated for springs and surficial and bedrock groundwaters in northeastern part of Hongseong. Two field investigations were conducted at dry and wet seasons in 2011 for 120 sites including measurement of field parameters with chemical analyses of major dissolved constituents. Nitrate concentrations were at background levels in springs while 45% of bedrock groundwater and 49% of surficial groundwater exceeded the drinking water standard of nitrate (10 mg/L as $NO_3$-N). The difference in nitrate concentrations between surficial and bedrock groundwater was statistically insignificant. Cumulative frequency distribution of nitrate concentrations revealed two inflection points of 2 and 16 mg/L as $NO_3$-N. Correlation analysis of hydrogeochemical parameters showed that nitrate had higher correlations with Sr, Mg, Cl, Na, and Ca, in surficial groundwater in both dry and wet season. In contrast, nitrate had much weaker correlations with other hydrogeochemical parameters in bedrock groundwater compared to surficial groundwater and had significant correlations only in wet season. Temporally, nitrate and chloride concentrations decreased and dissolved oxygen (DO) increased from dry season to wet season, which indicates that increased recharge during the wet season affected groundwater quality. Aerobic conditions were predominant for both surficial and bedrock groundwater indicating low natural attenuation potential of nitrate in the aquifers of the study area.