• 제목/요약/키워드: Recharge volume

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제주도 지하수위의 변화와 지하수 함양부피 (Variation of Groundwater Level and Recharge Volume in Jeju Island)

  • 박원배;김기표;이준호;문덕철;김수정;고기원;방성준;방익찬
    • 한국환경과학회지
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    • 제20권7호
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    • pp.857-872
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    • 2011
  • The variation of groundwater level in Jeju Island is analyzed with the data of precipitation observed from 48 monitoring post and groundwater level observed from 84 monitoring wells during 2001 to 2009. The groundwater level rises in summer and falls in winter. The rise of groundwater level by precipitation is fast and small in the eastern region and slow and large in the western region. However, the speed of fall during the period of no rain is slower in the eastern region than in the western region. It tells that permeability is greater in the eastern region than in the western region. In this paper, we set up the base level of groundwater and calculate recharge volume between the base level and groundwater surface. During the period, the average recharge volume was $9.83{\times}10^9m^3$ and the maximum recharge volume was $2.667{\times}10^{10}m^3$ after the typhoon Nari. With these volume and the recharge masses obtained by applying the recharge ratio of 46.1%, estimated by Jeju Province (2003), the porous ratio over the whole Jeju Island is 16.8% in average and 4.6% in the case of maximum recharge volume just after typhoon Nari. A large difference in the two ratios is because that it takes time for groundwater permeated through the ground just after rain fall to fill up the empty porous part. Although the porous ratios over the whole Jeju Island obtained in this way has a large error, they give us the advantage to roughly estimate the amount of recharged groundwater mass directly from observing the groundwater level.

지하수 함양시 최대 주입압력 결정을 위한 연구 (Study on the Determination of the Maximum Injection Pressure for Groundwater Rechargement)

  • 최진오;정현철;정충기;김창용
    • 대한토목학회논문집
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    • 제42권4호
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    • pp.501-508
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    • 2022
  • 지하수위 회복을 위한 함양정 운영시 필요 기술은 지반이 파괴에 도달하지 않는 최대 주입압을 결정하는 것이다. 고전적인 토질역학에 기초한 수치해석과 실내시험을 통하여 사질토와 점성토의 항복에 도달하는 최대 주입압력을 추론하였다. 수치해석에서는 주입압력에 따른 점성토의 구속압력 감소에 따른 파괴시, 사질토는 유출동수 경사에 따른 파이핑 발생시 주입압력을 최대 한계압으로 결정하였다. 실내시험에서는 간극수압이 높아지는 것을 배압 증가를 통하여 구현하였으며, 사질토 경우 유효응력이 0이 되기전 최대 배압의 93 %에서 급격한 체적변형이 발생하였다. 점성토의 경우는 유효응력이 0에 도달할 경우 방사방향 변형율이 1.5 %에 도달하였으나 급격한 체적변형이 발생하지 않았다. 따라서 상기 결과에 근거하여 함양정의 최대 주입압력을 수치해석과 실내시험으로 결정할 수 있었다.

분산형 해수침투 모델을 이용한 양적 지표 기반의 해안지하수 취약성 평가연구 (Quantitative Assessment of Coastal Groundwater Vulnerability to Seawater Intrusion using Density-dependent Groundwater Flow Model)

  • 장선우
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제26권6호
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    • pp.95-105
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    • 2021
  • Extensive groundwater abstraction has been recognized as one of the major challenges in management of coastal groundwater. The purpose of this study was to assess potential changes of groundwater distribution of northeastern Jeju Island over 10-year duration, where brackish water have been actively developed. To quantitatively estimate the coastal groundwater resources, numerical simulations using three-dimensional finite-difference density-dependent flow models were performed to describe spatial distribution of the groundwater in the aquifer under various pumping and recharge scenarios. The simulation results showed different spatial distribution of freshwater, brackish, and saline groundwater at varying seawater concentration from 10 to 90%. Volumetric analysis was also performed using three-dimensional concentration distribution of groundwater to calculate the volume of fresh, brackish, and saline groundwater below sea level. Based on the volumetric analysis, a quantitative analysis of future seawater intrusion vulnerability was performed using the volume-based vulnerability index adopted from the existing analytical approaches. The result showed that decrease in recharge can exacerbate vulnerability of coastal groundwater resources by inducing broader saline area as well as increasing brackish water volume of unconfined aquifers.

GIS L-THIA를 이용한 도시화에 따른 유출과 비점원오염 영향 평가 (Assessing the impact of urbanization on runoff and non-point source pollution using the GIS L-THIA)

  • 윤라영;김동희;권혁현;신승철;손광익
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2006년도 학술발표회 논문집
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    • pp.1802-1806
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    • 2006
  • It is important to consider the effects of land-use changes on surface runoff, stream flow, and groundwater recharge. Expansion of urban areas significantly impacts the environment in terms of ground water recharge, water pollution, and storm water drainage. Increase of impervious area due to urbanization leads to an increase in surface runoff volume, contributes to downstream flooding and a net loss in groundwater recharge. Assessment of the hydrologic impacts or urban land-use change traditionally includes models that evaluate how land use change alters peak runoff rates, and these results are then used in the design of drainage systems. Such methods however do not address the long-term hydrologic impacts of urban land use change and often do not consider how pollutants that wash off from different land uses affect water quality. L-THIA (Long-Term Hydrologic Impact Assessment) is an analysis tool that provides site-specific estimates of changes in runoff, recharge and non point source pollution resulting from past or proposed land-use changes. It gives long-term average annual runoff for a land use configuration, based on climate data for that area. In this study, the environmental and hydrological impact from the urbanized basin had been examined with GIS L-THIA in Korea.

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지하수 부존량 평가와 관리에 대한 소고 (A Note on Estimating and Managing Groundwater Reserves)

  • 이병선;박종환;명우호;손주형;이상화;심규성;송성호
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제23권6호
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    • pp.28-36
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    • 2018
  • This study was conducted to estimate groundwater reserves within a designated depth. Three methods were applied to one representative county in southern Gyeongsang province, South Korea, to estimate the groundwater reserves in the aquifers. Estimated amounts of groundwater reserves in the region ranged from $20.2{\times}10^9m^3$ to $68.7{\times}10^9m^3$ (average $37.9{\times}10^9m^3$). Groundwater recharge obtained with a recharge ratio of 16.6% was $1.1{\times}10^9m^3/year$. Exploitable groundwater with an assumption of decadal-cycle minimal rainfall of 977.0 mm/year was approximated as 72% ($0.8{\times}10^9m^3/year$) of the total replenished water by recharge. The volume of recharge and exploitable water accounted for only 1.1% and 0.8% of groundwater reserves, respectively, which indicates substantial capacity of the reservoir to supply groundwater in an event of unexpected droughts. Nonetheless, each groundwater well should strictly comply with its allocated pumping rate to avoid alluvial groundwater depletion.

수치모델을 활용한 지하수 인공함양 대상지의 적정 주입량 및 주입효율 예비 평가 (Preliminary Evaluation of the Optimal Injection Rate and Injection Efficiency of Groundwater Artificial Recharge Site Using Numerical Model)

  • 차장환;김규범;이재영
    • 지질공학
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    • 제31권1호
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    • pp.19-30
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    • 2021
  • 본연구에서는 가뭄이 빈번히 발생하는 지류 상류 지역에서 농번기에 부족한 물을 확보하기 위하여 평상시 잉여의 물을 지하 대수층에 주입하는 인공함양 방식을 설계함에 앞서 적정 주입량 및 주입효율을 수치모델을 활용하여 평가하고자 하였다. 인공함양 수치모델 대상지역은 홍성군 갈산면 운곡리 일대를 대상으로 하였으며 다양한 공당 주입량 조건과 대수층의 수리적 특성을 고려하여 모델링을 수행한 결과, 연구지역의 공당 적정주입량은 50.0 ㎥/day/공로 평가되었으며 주입효율은 총 주입용량 대비 33.2~81.2%로 예측되었다. 특히, 주입효율은 주입시간이 짧을수록 비선형으로 증가하는 양상을 보였으며 잔류 저류용량은 총 주입용량이 많을수록 증가하여 물부족 시 사용 가능량이 많아지므로 보다 유리할 것으로 보였다. 향후 보다 정확한 함양효율 평가를 위해 현장 실증시험 결과를 활용하여 모델을 검증하고 이를 통해 주입 및 취수에 대한 적정 시나리오를 구축한다면 보다 효율적인 인공함양 시스템의 운영이 가능할 것이다.

인공함양시설 설치에 따른 유출특성 변화에 관한 연구 (A Study of the Variation of Runoff Characteristics Depending upon Installation of the Groundwater Recharge Facilities)

  • 최계운;김영규;정기일
    • 한국방재학회 논문집
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    • 제4권4호
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    • pp.27-34
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    • 2004
  • 본 연구에서는 인공함양법을 적용한 유역에서의 유출특성 변화를 알아보기 위하여 실험유역을 설정하고 각각의 유역에 대하여 실제강우 실험과 강우모의 실험을 실시를 통하여 유출-침투특성을 분석하였다. 실강 우시 유출-침투특성 분석을 위해 2004년 7월 11일${\sim}$7월 17일 사이에 내린 4개의 강우사상에 대하여 분석을 실시한 결과 인공함양유역에서 유출이 발생하는 경우의 유출율 평균은 약 10.61%, 침투율 평균은 89.39%로 파악되어 유출되는 유량의 대부분이 인공함양법 적용에 의해서 침투가 가능한 것으로 나타났으며, 강우모의 실험에서는 강우강도의 변화와 상관없이 1시간의 지속시간을 가지는 60mm/hr ${\sim}$ 100mm/hr 구간에서 유출되는 유량 없이 전량이 침투되는 것으로 나타났다. 그러나, 인공함양시설을 설치한 경우라도 장기간 강우 발생시 주위의 지하수 변화에 의해서 유출이 발생할 수 있으므로 주변의 지하수위에 대한 지속적인 관찰이 요망된다.

Artifical Groundwater Recharge Using Underground Piping Method

  • Ahn, Sang-Jin;Lee, Jong-Hyong
    • Korean Journal of Hydrosciences
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    • 제3권
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    • pp.11-29
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    • 1992
  • Recently, rapid industrialization, urbanization and higher living standards accelerate to increase groundwater consumption resulting in continuously dropping groundwater elevations. To maintain enough groundwater volume without dropping groundwater elevations, the proper groundwater rechatge is necessary. The groundwater rechatge can be classified into two categories which are natural rechatge and artiticial rechatge. Even though the natural rechatge through by dired infiltration from the rainfall is desirable, the artificial groundwater rechatge is necessaty when the increment of groundwater consumption exceeds natural recharge rate. Well method and scattering method are utilized as artificial rechatging method, a severe disadvantage, which is the reduction of the void of soil surface, is indicated in the well method. Recently, the underground piping method, which is a scattering method, is receiving increasing attention as a proper recharging method. The method is indirectly to supply water to the underground using an underground piping system. Therefore, the void of soil surface is not severely reduced and better infiltration rate can be achieved. In this paper, the artificial groundwater rechatge using underground piping method is investigated through experiments and numerical analysis. The influence of the groundwater by underground piping method is evaluated through comparing recharging heights. Good agreements between experiments and numerical analysis are obtained and the artificial groundwater recharge by underground piping method is well tested and verified.

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Sustainability of freshwater lens in small islands under climate change and increasing population

  • Babu, Roshina;Park, Namsik
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2019년도 학술발표회
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    • pp.145-145
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    • 2019
  • Groundwater and rainwater are the only sources of freshwater in small islands as many islands lack surface water sources. Groundwater occurring in the form of freshwater lens floating on denser seawater is highly dependent on natural recharge from rainfall. A sharp interface numerical model for regional and well scale modeling is selected to assess the sustainability of freshwater lens in the island of Tongatapu. In this study, 29 downscaled General Circulation Model(GCM) predictions are input to the recharge model based on water balance modelling. Three GCM predictions which represent wet, dry and medium conditions are selected for use in the groundwater flow model. Total freshwater volume and number of saltwater intruded wells are simulated under various climate scenarios with GCM predicted rainfall pattern, sea level rise and pumping. Simulations indicate that the sustainability of the freshwater lens is threatened by the frequent droughts which are predicted under all scenarios of recharge. The natural depletion of the lens during droughts and increase in water demands, leads to saltwater upconing under the pumping wells. Implementation of drought management measures is of utmost importance to ensure sustainability of freshwater lens in future.

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불포화 토양에서 빗물의 침투특성 : 유한요소 모델과 실험결과 비교 (Rainwater Infiltration Characteristics in the Unsaturated Soil : Comparison of Finite Element Model with Experimental Results)

  • 유건선;김상래;김충일;윤현식;한무영
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제16권6호
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    • pp.27-33
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    • 2011
  • Infiltration plays an important role in the urban water cycle. Infiltration has a potential to contribute to groundwater recharge in addition to runoff reduction. However, infiltration in urban areas has been considered only as a means of runoff reduction. Conventional design methods for infiltration facilities assume soils to be fully-saturated for the sake of simplicity. The amount of groundwater recharge can not be estimated properly with this scheme. Hence, the characteristics of the unsaturated soil condition need to be considered. The finite element model using SEEP/W to estimate infiltration under the unsaturated condition is presented. Infiltration tests for Joomonjin sand are performed and the infiltration behavior of Joomoonjin sand under the unsaturated condition is measured experimentally to verify the validity of the finite element model. The results from comparing infiltrated volume between the saturated and the unsaturated conditions under the same soil and rainfall conditions show that the infiltrated volume in the unsaturated condition is two times bigger than that in the saturated condition.