• Title/Summary/Keyword: groundwater dam

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A Study on the Application of Groundwater Dam (지하수댐 활용방안에 관한 연구)

  • Lee, Gyumin;Kim, Jinsoo
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.489-489
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    • 2018
  • 최근 기후변화의 영향으로 가뭄의 발생빈도 및 규모가 증가하고 있다. 이에 지자체를 중심으로 대체 수자원 확보를 목적으로 지하수의 개발이 늘어나고 있는 추세이다. 국내에서는 지하수 개발 이용시설로 관정(管井)을 활용하는 것이 일반적이나, 최근에는 낙도를 중심으로 대규모 지하수자원 확보를 위한 지하수댐 건설이 논의되고 있다. 현재 우리나라에는 6개의 지하수댐이 설치 운영되고 있는데, 가장 최근에 건설된 지하수댐도 20여 년이 지난 1998년에 건설되었다. 게다가 국내에 건설된 지하수댐은 지하수맥을 이용하기 보다는, 건천화된 시기에도 하천수를 이용하기 위해 하천의 지하에 건설되어 있어 일반적인 개념의 지하수댐이라고 보기 어렵다. 지하수댐의 활용을 통해 지하수자원을 효율적으로 확보하기 위해서는 첫째, 지하수에 대한 기초자료의 확보가 필요하다. 현재 지하수법 제5조에 따라 전국 지하수에 대한 기초조사를 실시하고 10년마다 보완조사를 실시하여야 한다. 그러나 1997년부터 실시되고 있는 기초조사는 예산 및 인력 부족 등으로 아직까지 전국 전체에 대한 자료가 마련되지 못하고 있으며, 보완조사는 아직까지 실시된 바가 없는 실정이다. 조속히 지하수 기초조사를 완료하여 전국에 대한 수문지질도(水文地質圖)를 작성하고, 이를 바탕으로 체계적인 지하수댐 조성계획을 수립할 필요가 있다. 둘째, 지하수댐 건설기술에 대한 체계적인 연구가 필요하다. 현재 조성된 하천 지하에 건설된 지하수댐이 아닌, 지하수맥을 이용하는 본래의 용도에 적합한 지하수댐을 건설하기 위한 세부기술의 확보가 필요해 보인다. 셋째, 현행 지하 충전수에 대한 수질기준을 확대할 필요가 있다. 현재 하수 폐수 및 온배수 재처리수로 지하수를 함양할 경우의 수질기준은 시 도지사가 관할 구역에 대하여 수립하는 '지역지하수관리계획'에 포함된 경우로만 되어 있어, 국가 또는 개인이 지하수를 함양할 경우에 적용되는 수질기준이 부재한 상태다. 또한 지하수 충전 깊이에 따라 토양에서 발생하는 정화능력에 차이가 있으므로, 수질기준에 차등을 두어 합리적으로 적용할 필요가 있다.

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Conceptual eco-hydrological model reflecting the interaction of climate-soil-vegetation-groundwater table in humid regions (습윤 지역의 기후-토양-식생-지하수위 상호작용을 반영한 개념적인 생태 수문 모형)

  • Choi, Jeonghyeon;Kim, Sangdan
    • Journal of Korea Water Resources Association
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    • v.54 no.9
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    • pp.681-692
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    • 2021
  • Vegetation processes have a significant impact on rainfall runoff processes through evapotranspiration control, but are rarely considered in the conceptual lumped hydrological model. This study evaluated the model performance of the Hapcheon Dam watershed by integrating the ecological module expressing the leaf area index data sensed remotely from the satellite into the hydrological partition module. The proposed eco-hydrological model has three main features to better represent the eco-hydrological process in humid regions. 1) The growth rate of vegetation is constrained by water shortage stress in the watershed. 2) The maximum growth of vegetation is limited by the energy of the watershed climate. 3) The interaction of vegetation and aquifers is reflected. The proposed model simultaneously simulates hydrologic components and vegetation dynamics of watershed scale. The following findings were found from the validation results using the model parameters estimated by the SCEM algorithm. 1) Estimating the parameters of the eco-hydrological model using the leaf area index and streamflow data can predict the streamflow with similar accuracy and robustness to the hydrological model without the ecological module. 2) Using the remotely sensed leaf area index without filtering as input data is not helpful in estimating streamflow. 3) The integrated eco-hydrological model can provide an excellent estimate of the seasonal variability of the leaf area index.

Hydrologic evaluation of SWAT considered forest type using MODIS LAI data: a case of Yongdam Dam watershed (MODIS LAI 자료를 활용하여 임상별로 고려한 SWAT의 수문 평가: 용담댐유역을 대상으로)

  • Han, Daeyoung;Lee, Jiwan;Kim, Wonjin;Baek, Seungchul;Kim, Seongjoon
    • Journal of Korea Water Resources Association
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    • v.54 no.11
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    • pp.875-889
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    • 2021
  • This study compares and analyzes the Soil and Water Assessment Tool (SWAT) and Terra MODIS (Moderate Resolution Imaging Spectroradiometer) as coniferous, deciduous and mixed forest with Yongdam Dam upstream (904.4 km2). The hydrologic evaluation period was set to 10 years from 2010 to 2019, and the applicability of the 8-day MOD15A2 Leaf Area Index (LAI) data, 3 TDR (Time Domain Reflectometry) (GB, JC, CC), and 1 Flux Tower (DU) evaporation volume (YDD) data was simulated. As a result, the R2 of coniferous forest, deciduous forest and mixed forest are 0.95, 0.89, 0.90, soil moisture and evaportranspiration stations R2 were analyzed at 0.50 to 0.55 and 0.51, respectively, with R2 at 0.74, RMSE 2.75 mm/day, NSE 0.70 and PBIAS 14.3% for Yongdam inflow. Based on the calibrated and validated watersheds, the annual average evaportranspiration was calculated as coniferous 469.7 mm, deciduous 501. mm and 511.5 mm mixed forest, total runoff were estimated at coniferous 909.8 mm, deciduous 860.6 mm and 864.2 mm mixed forest. In the case of annual average evaportranspiration, it was evaluated that deciduous were high, but in the case of streamflow, it was evaluated that coniferous were high. Unlike other hydrologic with similar patterns throughout the year, the average annual evapotranspiration was about 7% higher than coniferous due to the higher evapotranspiration of deciduous with high leaf area index in summer and fall. In addition, deciduous were 9% and 6% higher for surface runoff and lateral flow, but the groundwater of coniferous was 77% higher. Therefore, it was confirmed that the total runoff was in order of coniferous, mixed forest, and deciduous.

Vertical Distribution of Heavy Metal Concentrations in Sediment Cores and Sedimentation Rate Using $^{210}Pb$ Dating Technique in the Juam Reservoir (주암댐 호저 퇴적물에서의 수직적 중금속 분산과 $^{210}Pb$를 이용한 퇴적속도산정)

  • Lee Pyeong-Koo;Youm Seung-Jun;Yeon Gyu Hun;Chi Se-Jung;Kim Ji-Wook;Oh Chang-Whan;Kim Sun-Ok
    • Journal of Soil and Groundwater Environment
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    • v.10 no.1
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    • pp.43-57
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    • 2005
  • Twelve bottom sediments and three cores were collected in Juam reservoir for a study on transportation, which was controlled by particle grain size (2mm-200{\mu}m,\;200-100{\mu}m,\;100-50{\mu}m,\;50-20{\mu}m,\;<20{\mu}m), and vertical distribution of heavy metals. Sediment cores were sliced into 2 to 5 cm intervals to measure heavy metal concentrations in interstitial water and sediments with depth. Pb isotopic compositions of core samples were determined to calculate sedimentation rate. Regardless of sampling sites, levels of heavy metals and trace elements in bottom sediments are nearly constant with mean values of $14.9\;{\mu}g/g\;for\;As,\;0.81{\mu}g/g\;for\;Cd,\;30.7{\mu}g/g\;for\;Cu,\;34.7{\mu}g/g\;for\;Ni,\;63.3{\mu}g/g\;for\;Pb\;and\;87.9{\mu}g/g\;for\;Zn$. In general, Cu, Pb, Zn, Wi, and Cr in fraction of $<20{\mu}m$ exhibit the highest concentration, but content of As is the highest in grain size of $2\;mm-200\;{\mu}m$ and $200-100\;{\mu}m$. Fe and Mn occur as the dissolved compositions of the highest concentrations in interstitial waters and increase in their concentrations toward lower part of cores. On the contrary, concentrations of Zn and Cu show the highest value in the uppermost part in cores, suggesting these elements are released from reductive dissolution of hydroxides and oxidation of organic matters under different redox conditions. The highest accumulations of Cu, Ni, Pb, and Zn contents in the sediment cores are observed at 0-4 cm layers, and concentrations of Cu and Pb are especially high, implying these heavy metals are originated from anthropogenic sources. The apparent sedimentation rate estimated using unsupported $^{210}Pb$ is 0.91 cm $year^{-1}$, corresponding about 10 cm sedimentation in total depth since construction of Juam dam. These results will provide available information for management of bottom sediment in Juam reservoir.