• Title/Summary/Keyword: 지하수 관정

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Groundwater Quality in Gyeongnam Region Using Groundwater Quality Monitoring Data: Characteristics According to Depth and Geological Features by Background Water Quality Exclusive Monitoring Network (지하수수질측정망 자료를 활용한 경남지역 지하수 수질: 배경수질전용측정망에 의한 심도·지질별 특성)

  • Cha, Suyeon;Seo, Yang Gon
    • Clean Technology
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    • v.26 no.1
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    • pp.39-54
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    • 2020
  • This study analyzed the groundwater quality according to the depth and geological features in Gyeongsangnam-do area using groundwater quality monitoring network data to grasp the groundwater quality characteristics and to provide basic data for policy making on efficient groundwater management. Five hundred and three data sets were acquired from background water quality exclusive monitoring network in soil groundwater information system for five years (2013 ~ 2017). Except for the total coliforms and tracer items such as mercury, phenol, and others, the parameters of water quality were significant or very significant, depending on depth and geological features. As the depth got deeper, the average value of pH and electrical conductivity increased; water temperature, dissolved oxygen, oxide reduction potential, arsenic, total coliforms, and turbidity decreased; and total unfit rate for drinking water standards was lower. It was found that the sum of the positive and negative ions was the highest in the clastic sedimentary rock and the lowest in metamorphic rock. The total unfit rate for drinking water standards was the highest for metamorphic rocks, followed by clastic sedimentary rock and unconsolidated sediments and, finally, intrusive igneous rock with the lowest penetration. The Na-Cl water type, which indicated the possibility of contamination by external pollutants, appeared only at some points in shallow depths and in clastic sedimentary rocks.

Calculation of Rainwater and Groundwater Fraction in Sewerage: A Case Study in Deokjin Park, Jeonju (동위원소를 이용한 하수 내 지하수 및 우수 함량 산출: 전주 덕진공원 유역 사례)

  • Choi, Seung-Hyun;Kim, Kangjoo;Moon, Sang-Ho
    • Economic and Environmental Geology
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    • v.49 no.5
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    • pp.361-370
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    • 2016
  • It is well known that the inflow of rainwater and the infiltration of groundwater to sewerage (I/I) increase the sewage and burden sewage treatment plants and lower their treatment efficiency. Therefore, it is important to estimate the amount of I/I. In this study, well groundwaters, public water supplies (PWSs), and sewage and rainwater channels were investigated to check whether oxygen and deuterium isotopes could be used as a tool for I/I estimation. This study shows that the isotopic composition of PWS in Jeonju area is very consistent over time and distinctly lighter than the circulating local rainwater (CLR) because it is supplied from Yongdam Dam, which is located about 40 km inland to the east in the mountainous area. Considering the fact that sewage mostly originates from the PWS, we could calculate the amounts of CLR in the sewerage from a monitoring station using unaffected rainwater and tap water as mixing end members. The calculation revealed that the CLR fraction ranged from 50% to 90% depending on observation time. This is well supported by the dilute natures of the sewages at the station. The fraction of PWS in investigated well waters were about 46%, indicating that leaking of PWS is very serious and is an important groundwater source in the study area. Since the infiltration of such groundwater may not alter the isotopic composition of sewage significantly, the actual I/I would be much greater than the calculated ones.

Structure and Physical Properties of Earth Crust Material in the Middle of Korean Peninsula(4) : Development Status of Groundwater and Geological Characteristics in Chungnam Province (한반도 중부권 지각물질의 구조와 물성연구(4) : 충남도 지하수 개발 현황과 지질특성)

  • 송무영;신은선
    • The Journal of Engineering Geology
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    • v.4 no.2
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    • pp.153-168
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    • 1994
  • The status of groundwater development in Chungnam was studied with geological characteristics according to the measured data of Korean Rural Development Corporation. The data of 212 survey wells were used for the relation between catchment area and water discharge, and the data of 344 development wells for the relationships between well depth and discharge, between casing depth and discharge, between rock type and discharge, and the relation with lineaments density. The relationship between the catchment area and discharge does not show any special trend, and it is understood that groundwater of hard rock mass is not so much influenced by the surface catchment area. The relationship between well depth and discharge shows two different trends; discharge increasing with depth for alluvial groundwater, but no certain trend between depth and discharge for groundwater of hard rock zone. Discharge increases linearly with the casing depth, and it is reliable because the casing was installed in the weathered zone against well destruction. Generally the rock type does not show any difference of discharge, but the crystalline rocks such as granite and gneiss yield a little more discharge than the more porous rocks such as sedimentary rock or schist. It suggests that the effect of fracture zone is a major governing factor. In Hongsong and Puyo, there are similar in rock type and casing depth, but the big difference in average discharge. The big discharge of Hongsong is concordant with the higher intersection density and longer length of lineament in Hongsong than those of Puyo. Therefore the groundwater development strategy should be focused on the micro topography analysis and geophysical survey for the understanding of the fracture zone rather than catchment area or rock type.

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A proposal of unit watershed for water management based on the interaction of surface water and groundwater (지표수-지하수 연계 기반의 통합수자원 관리를 위한 단위유역 제안)

  • Kim, Gyoo-Bum;Hwang, Chan-Ik
    • Journal of Korea Water Resources Association
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    • v.53 no.spc1
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    • pp.755-764
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    • 2020
  • In South Korea, 850 standard watersheds and 7,807 KRF catchment areas have been used as basic maps for water resources policy establishment, however it becomes necessary to set up new standard maps with a more appropriate scale for the integrated managements of surface water-groundwater as well as water quantity-quality in the era of integrated water management. Since groundwater has a slow flow velocity and also has 3-D flow properties compared to surface water, the sub-catchment size is more effective than the regional watershed for the evaluation of surface water-groundwater interaction. The KRF catchment area, which has averagely a smaller area than the standard watershed, is similar to the sub-catchment area that generally includes the first-order or second-order tributaries. Some KRF catchment areas, which are based on the surface reach, are too small or large in a wide plain or high mountain area. Therefore, it is necessary to revise the existing KRF area if being used as a unit area for integrated management of surface-water and groundwater. A unit watershed with a KRF area of about 5 to 15 ㎢ can be effective as a basic unit for water management of local government considering a tributary composition and the location of groundwater wells, and as well it can be used as a basic tool for water demand-supply evaluation, hydrological observation system establishment, judgment of groundwater permission through a total quantity management system, pollution assessment, and prioritizing water policy, and etc.

Arsenic Distribution and Solubility in Groundwater of Okcheon Area (옥천군 북부 지역 지하수의 비소 분포와 비소 광물의 용해도 특성)

  • Chon, Chul-Min;Kim, Kue-Young;Koh, Dong-Chon;Choi, Mi-Jung
    • Journal of the Mineralogical Society of Korea
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    • v.22 no.4
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    • pp.331-342
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    • 2009
  • Groundwater samples were collected from the bedrock aquifers related with Okcheon metasedimentary rocks. Arsenic (As) concentrations in the samples varied between 0.0051 and 0.887 mg/L, with an average of 0.0248. Cations and anions of groundwaters had no relationship with As contents as well as with spatial distribution of geology in the area. Pyrite, chalcopyrite and arsenopyrite in the core samples of the monitoring wells were identified in thin section, X-ray diffraction (XRD) and electron probe microscope analysis (EPMA). It was suggested that these minerals are responsible for the As in groundwater. The groundwater showed saturations with respect to calcite $(CaCO_3)$, dolomite (CaMg$(CO_3)_2$) and Magnesite $(MgCO_3)$. $HAsO_4{^{2-}}$ activities in the groundwater samples were close to $Ca_3(AsO_4)_2(c)$ and $Mn_3(AsO_4)_2(c)$ solubility isotherms, indicating that the maximum As contents in groundwater are secondly controlled by the precipitation and dissolution of carbonate minerals due to alkaline and oxic nature of the groundwater (pe+pH>10).

Analysis of Stream Depletion Rate by Groundwater Abstraction in Leaky Aquifer (누수대수층 지하수 양수에 따른 하천수 감소율 거동 분석)

  • Lee, Jeongwoo;Chung, Il-Moon;Kim, Nam Won
    • KSCE Journal of Civil and Environmental Engineering Research
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    • v.37 no.6
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    • pp.1001-1008
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    • 2017
  • This study was to evaluate the stream depletion rate from groundwater pumping with varying stream-well distance, aquifer transmissivity, storage coefficient, leakage coefficient, streambed hydraulic conductance using the Zlotnik and Tartakovsky analytical solution which considers a two-layer leaky aquifer-stream-well system. For the hydraulic conditions applied in this study, the streambed hydraulic conductance and the aquitard leakage coefficient were assessed to have a dominant influence on the stream depletion rate. In order to evaluate the applicability of Zlotnik and Tartakovsky analytical solution ignoring the change in the drawdown in the lower aquifer and applying the fixed head boundary condition, the solution was compared with Hunt analytical solution derived from the more practical conditions simultaneously taking into account the drawdown changes in the upper and lower aquifers. As a result, the Zlotnik and Tartakovsky analytical solution is suitable for predicting short-term effects of less than one year in the pumping period, and when the stream depletion factor (SDF) is greater than 2,500 days, or when the product of the leakage coefficient and the stream-well distance is less than 10 cm/s.

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

  • Moon, Sang-Ho;Ha, Kyoochul;Kim, Yongcheol;Yoon, Pilsun
    • The Journal of Engineering Geology
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    • v.22 no.4
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    • pp.387-398
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    • 2012
  • Korean agricultural areas that employ water curtain cultivation (WCC) have recently suffered extensive groundwater shortages due to an increase in the number of facilities. The primary focus of this study is to measure the daily groundwater use and discharge rates in the Cheongweon and Chungju pilot areas, while the second focus is to estimate the total amount of groundwater used in WCC areas nationwide in Korea. Taking into consideration several factors, including motor type, outflow abilities of wells, records of daily minimum temperatures below $0^{\circ}C$, and the number of running wells according to weather variations, we estimated that $53,138m^3/ha$ of groundwater had been used in the 4-hectare Cheongweon pilot area during the winter period of late 2011 through early 2012. On a prorated areal basis, we can calculate that the total groundwater used nationwide was 0.57 billion $m^3$ in WCC areas of $10,746m^2$. This value is equivalent to 33.7% of the total agricultural groundwater use (1.69 billion $m^3$) in Korea. During 9-22 February 2012, the daily water discharge rate in the 4-ha Cheongweon pilot area ranged from 2,079 to $2,628m^3$, averaging $2,341m^3$. Combining this value with meteorological records for 94 days with a daily minimum temperature below $0^{\circ}C$ results in an estimated groundwater volume of $54,990m^3/ha$ for the pilot area during the 2011-2012 winter period. The total amount of groundwater used nationwide in WCC areas would then be 0.59 billion $m^3$, equivalent to 34.9% of the total agricultural groundwater use in Korea. In the Chungju area, the groundwater discharge rate was estimated to be less than 805 $m^3$/ha. This value, combined with weather data for 108 days with a daily minimum temperature below $0^{\circ}C$ in this area, can be applied to infer that the total groundwater volume used in WCC areas nationwide is no more than 55% of the total agricultural groundwater use in Korea.

A Study on the Characteristics of the Seawater Seepage According to Stratum Structures (지층구조에 따른 해수 침투 특성 분석)

  • Ahn, Seung-Seop;Park, Dong-Il;Jung, Do-Joon;Moon, Sang-Cheol
    • Proceedings of the Korea Water Resources Association Conference
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    • 2010.05a
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    • pp.1982-1985
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    • 2010
  • 해수침투는 대수층의 염분 농도를 증가시켜 지하수 염분화에 의한 용수의 부족 등을 야기시키며 다른 지하수 오염과 마찬가지로 회복에 대한 막대한 비용과 시간이 소모되어 피해지역에 대한 정확한 현황파악이 어려워 피해방지대책의 수립이 필요한 실정이다. 따라서 본 연구에서는 흐름과 이송을 모의할 수 있는 GMS-FEMWATER 모델을 이용하여 대상지역의 지층구조를 구분하고 실제 대상지역의 지층과 동일하게 모델링하여 해안지역의 해수침투에 대한 특성을 규명하였다. 분석결과 양수기간이 길어 질수록 지하수두강하 폭이 양수기간 30일, 60일, 90일 및 180일 경과 시 초기 수위에서 점차 4.25m (1.36%), 3.5m (1.13%), 2.96m (0.97%), 1.97m (0.65%)으로 감소하는 것을 알 수 있었다. 또한 양수량이 많은 관정일수록 해수 침투가 큰 것을 알 수 있다. 양수기간 30일 0.59mg/l, 채수 60일 1.65mg/l, 채수 90일 3.14mg/l, 180일 5.55mg/l으로 분석되었다. 이결과로 볼 때 양수기간 초기에서 기간이 지날 수록 해수침투가 큰영향을 주는 것을 알 수 있었다.

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The Cost Effectiveness Analysis of Multi-Water Resources (다중수원의 비용효과 분석 : 스마트워터그리드를 중심으로)

  • Ryu, Mun-Hyun;Choi, Hanju;Suh, Jinsuhk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.119-119
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    • 2015
  • 스마트워터그리드의 목적은 기존 용수부족 문제의 근본적인 해결을 위해 새로운 취수원을 개발하고, 지역 내의 수자원을 효율적으로 활용하는 방안을 강구하는 시스템을 구축하는데 있다. 따라서 운영비용을 최소화하면서 수요처에 적정한 수량과 수질의 용수를 공급할 수 있도록 해야한다. 스마트워터그리드 구축 시 설비 비용에 대한 부담으로 보급 확산에 어려움을 겪을 가능성이 높으므로, 비용 효과적(Cost-effective)인 측면에서 스마트워터그리드의 경제성을 검토할 필요성이 있다. 본 연구에서는 자료의 한계로 인해 기존의 다중수원에 대한 경제성분석 사례를 인용하여 상수도 생산원가 절감액, 댐 건설과 관련된 비용의 감소, 물 오염 감소 등으로 편익을 간접적으로 계산하고, 기술적으로 물량이 충분하다는 가정하에 다중수원들간의 비용효과분석 수행하였다. 분석결과, 현재 공급하고 있는 상수도 시스템이 다른 다중취수원에 비해 비용효과적 우위에 있는 것으로 나타났다. 지하수, 해수담수화 등 새로운 수원을 찾는 노력이 필요하며 지하수는 가장 쉽게 활용할 수 있는 대체 수원이지만, 관정개발에 많은 비용이 들고 대량으로 수원을 공급하기 어렵다는 단점이 있다. 해수담수화는 대체수자원으로서 중요성이 더욱 강조될 것으로 보이지만, 시설의 설치 및 운영에 드는 높은 비용과 함께 육지에서 물을 대량으로 연안에서 멀리 떨어져 있거나 고도가 높은 지역은 해수담수화 기술의 적용이 어려울 것으로 여겨진다.

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Development of Deep-Learning-Based Models for Predicting Groundwater Levels in the Middle-Jeju Watershed, Jeju Island (딥러닝 기법을 이용한 제주도 중제주수역 지하수위 예측 모델개발)

  • Park, Jaesung;Jeong, Jiho;Jeong, Jina;Kim, Ki-Hong;Shin, Jaehyeon;Lee, Dongyeop;Jeong, Saebom
    • The Journal of Engineering Geology
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    • v.32 no.4
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    • pp.697-723
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    • 2022
  • Data-driven models to predict groundwater levels 30 days in advance were developed for 12 groundwater monitoring stations in the middle-Jeju watershed, Jeju Island. Stacked long short-term memory (stacked-LSTM), a deep learning technique suitable for time series forecasting, was used for model development. Daily time series data from 2001 to 2022 for precipitation, groundwater usage amount, and groundwater level were considered. Various models were proposed that used different combinations of the input data types and varying lengths of previous time series data for each input variable. A general procedure for deep-learning-based model development is suggested based on consideration of the comparative validation results of the tested models. A model using precipitation, groundwater usage amount, and previous groundwater level data as input variables outperformed any model neglecting one or more of these data categories. Using extended sequences of these past data improved the predictions, possibly owing to the long delay time between precipitation and groundwater recharge, which results from the deep groundwater level in Jeju Island. However, limiting the range of considered groundwater usage data that significantly affected the groundwater level fluctuation (rather than using all the groundwater usage data) improved the performance of the predictive model. The developed models can predict the future groundwater level based on the current amount of precipitation and groundwater use. Therefore, the models provide information on the soundness of the aquifer system, which will help to prepare management plans to maintain appropriate groundwater quantities.