• 제목/요약/키워드: Regional groundwater

검색결과 171건 처리시간 0.027초

잠재오염원을 이용한 포항지역의 광역적 지하수 오염 위험성 평가 (Assessment of Regional Groundwater Pollution Hazard using Potential Pollutant of Pohang Area)

  • 이사로;김용성;김덕근
    • 한국지리정보학회지
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    • 제9권3호
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    • pp.1-13
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    • 2006
  • 본 연구에서는 미국 EPA에서 개발된 DRASTIC 시스템을 이용하여 지하수 오염 취약성을 평가 후, 잠재오염원 자료를 이용하여 광역적인 지하수 오염 위험성을 평가하였다. 이를 위해 포항지역에 대해 지하수면의 깊이, 충진량, 대수층, 토양층, 지형경사, 수리전도도, 선구조, 잠재오염원 등 수리지질학적 자료와 현장조사를 통해 잠재오염원을 공간 데이터베이스로 구축하였다. 구축된 공간 데이터베이스를 GIS 기반으로 DRASTIC 시스템에 적용하여 광역적 지하수 오염 취약성을 평가하였으며, 지하수 오염 취약성 평가 결과와 잠재오염원의 분포를 중첩 분석하여 지하수 오염 위험성을 평가하였다. 이를 통해 지하수 오염 위험성은 대수층의 지하수 오염에 대한 취약성과 잠재오염원의 분포 정도에 따라 4가지 유형으로 분류할 수 있으며, 그 유형에 따라 적절한 지하수 수질관리의 방향을 제시할 수 있도록 하였다. 또한 그 결과는 행정구역별로 도출하여 향후 관리상의 편의를 도모할 수 있도록 하였다. 본 연구에서 도입한 지하수 오염 위험성 평가 기법은 비교적 손쉽게 기존의 지하수 오염 취약성 평가를 실제 지하수 수질관리 계획 수립 시에 활용될 수 있다.

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시계열 분석을 이용한 춘천 지역 지하수관측망 수위변동 해석 (Time Series Analysis of Groundwater Level Change in the Chuncheon Area Groundwater Observation Network)

  • 목종구;장범주;박유철;신혜수;김진호;송세정;황가영
    • 지질공학
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    • 제32권2호
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    • pp.281-293
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    • 2022
  • 본 연구는 강원도 춘천에 설치·운영 중인 지하수관측망의 지하수위 변동특성을 이해하기 위해 2009년에서 2018년까지 장기 관측된 관측망 지하수위 자료에 대하여 시계열분석은 실시하였다. 해당 관측망은 5개소로 모두 암반대수층에 설치되어 있으며, 해당 운영기관에서 주기적인 점검과 관리가 이루어지는 것으로 파악된다. 시계열분석은 자기상관함수, 스펙트럼밀도함수 그리고 교차상관함수 분석을 수행하였다.

효과적인 유역관리를 위한 CN기법 기반의 침투량 산정 및 기저유출량 분석 (Estimation of CN-based Infiltration and Baseflow for Effective Watershed Management)

  • 김희원;신연주;최정헌;강현우;류지철;임경재
    • 한국물환경학회지
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    • 제27권4호
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    • pp.405-412
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    • 2011
  • Increased Non-permeable areas which have resulted from civilization reduce the volume of groundwater infiltration that is one of the important factors causing water shortage during a dry season. Thus, seeking the efficient method to analyze the volume of groundwater in accurate should be needed to solve water shortage problems. In this study, two different watersheds were selected and precipitation, soil group, and land use were surveyed in a particular year in order to figure out the accuracy of estimated infiltration recharge ratio compared to Web-based Hydrograph Analysis Tool (WHAT). The volume of groundwater was estimated considering Antecedent soil Moisture Condition (AMC) and Curve Number (CN) using Long Term Hydrologic Impact Assessment (L-THIA) model. The results of this study showed that in the case of Kyoung-an watershed, the volume of both infiltration and baseflow seperated from WHAT was 46.99% in 2006 and 33.68% in 2007 each and in Do-am watershed the volume of both infiltration and baseflow was 33.48% in 2004 and 23.65% in 2005 respectively. L-THIA requires only simple data (i.e., land uses, soils, and precipitation) to simulate the accurate volume of groundwater. Therefore, with convenient way of L-THIA, researchers can manage watershed more effectively than doing it with other models. L-THIA has limitations that it neglects the contributions of snowfall to precipitation. So, to estimate more accurate assessment of the long term hydrological impacts including groundwater with L-THIA, further researches about snowfall data in winter should be considered.

3-D Dynamic groundwater-river interaction modeling incorporating climate variability and future water demand

  • Hong, Yoon-Seok Timothy;Thomas, Joseph
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2008년도 학술발표회 논문집
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    • pp.67-74
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    • 2008
  • The regional-scale transient groundwater-river interaction model is developed to gain a better understanding of the regional-scale relationships and interactions between groundwater and river system and quantify the residual river flow after groundwater abstraction from the aquifers with climate variability in the Waimea Plains, New Zealand. The effect of groundwater abstraction and climate variability on river flows is evaluated by calculating river flows at the downstream area for three different drought years (a 1 in 10 drought year, 1 in 20 drought year, and 1 in 24 drought year) and an average year with metered water abstraction data. The effect of future water demand (50 year projection) on river flows is also evaluated. A significant increase in the occurrence of zero flow, or very low flow of 100 L/sec at the downstream area is predicted due to large groundwater abstraction increase with climate variability. Modeling results shows the necessity of establishing dynamic cutback scenarios of water usage to users over the period of drought conditions considering different climate variability from current allocation limit to reduce the occurrence of low flow conditions at the downstream area.

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New Zealand National and Regional State of the Environment Aquifer Reporting

  • Davidson, Peter;Daughney, Chris
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2010년도 학술발표회
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    • pp.102-110
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    • 2010
  • Central and regional government agencies collaborate to monitor and report on the quality of New Zealand's groundwater resources. Measurements from around 1,100 water wells representing the main economic aquifers are collected each season and used to prepare regional or national reports on its state, and trends over time. New Zealand's groundwater quality is of a relatively high standard by international standards, but is influenced by human activities and can also be affected by naturally occurring degrading processes.

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제주도 권역별 농업용수 수요량 산정에 대한 고찰 (Estimation of Regional Agricultural Water Demand over the Jeju Island)

  • 최광준;송성호;김진성;임찬우
    • 한국환경과학회지
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    • 제22권5호
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    • pp.639-649
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    • 2013
  • Over 96.2% of the agricultural water in Jeju Island is obtained from groundwater and there are quite distinct characteristics of agricultural water demand/supply spatially because of regional and seasonal differences in cropping system and rainfall amount. Land use for cultivating crops is expected to decrease 7.4% (4,215 ha) in 2020 compared to 2010, while market garden including various vegetable crop types having high water demand is increasing over the Island, especially western area having lower rainfall amount compared to southern area. On the other hand, land use for fruit including citrus and mandarin having low water demand is widely distributed over southern and northern part having higher rainfall amount. The agricultural water demand of $1,214{\times}10^3\;m^3/day$ in 2020 is estimated about 1.39 times compared to groundwater supply capacity of $874{\times}10^3\;m^3/day$ in 2010 with 42.4% of eastern, 103.1% of western, 61.9% of southern, and 77.0% of northern region. Moreover, net secured amount of agricultural groundwater would be expected to be much smaller due to regional disparity of water demand/supply, the lack of linkage system between the agricultural water supply facilities, and high percentage of private wells. Therefore, it is necessary to ensure the total net secured amount of agricultural groundwater to overcome the expected regional discrepancy of water demand and supply by establishing policy alternative of regional water supply plan over the Island, including linkage system between wells, water tank enlargement, private wells maintenance and public wells development, and continuous enlargement of rainwater utilization facilities.

SWAT HRU Mapping module을 이용한 해안면 만대천 유역의 토지이용별 지하수 함양량 평가 (Evaluation of groundwater recharge rate for land uses at Mandae stream watershed using SWAT HRU Mapping module)

  • 류지철;최재완;강현우;금동혁;신동석;이기환;정교철;임경재
    • 한국물환경학회지
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    • 제28권5호
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    • pp.743-753
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    • 2012
  • The hydrologic models, capable of simulating groundwater recharge for long-term period and effects on it of crops management in the agricultural areas, have been used to compute groundwater recharge in the agricultural fields. Among these models, the Soil and Water Assessment Tool (SWAT) has been widely used because it could interpret hydrologic conditions for the long time considering effects of weather condition, land uses, and soil. However the SWAT model couldn't represent the spatial information of Hydrologic Response Unit (HRU), the SWAT HRU mapping module was developed in 2010. With this capability, it is possible to assume and analyze spatio-temporal groundwater recharge. In this study, groundwater recharge of rate for various crops in the Mandae stream watershed was estimated using SWAT HRU Mapping module, which can simulate spato-temporal recharge rate. As a result of this study, Coefficient of determination ($R^2$) and Nash-Sutcliffe model efficiency (NSE) for flow calibration were 0.80 and 0.72, respectively, and monthly groundwater recharge of Mandae watershed in Haean-myeon was 381.24 mm/year. It was 28% of total precipitation in 2009. Groundwater recharge rate was 73.54 mm/month and 73.58 mm/month for July and August 2009, which is approximately 18 times of groundwater recharge rate for December 2009. The groundwater recharges for each month through the year were varying. The groundwater recharge was smaller in the spring and winter seasons, relatively. So, it is necessary to enforce proper management of groundwater recharge during droughty season. Also, the SWAT HRU Mapping module could show the result of groundwater recharge as a GIS map and analyze spatio-temporal groundwater recharge. So, this method, proposed in this study, would be quite useful to make groundwater management plans at agriculture-dominant watershed.

갈수기 지하수 물 사용량 저감 및 기저유출 수질 개선 방안 연구 (A Study on How to Reduce the Amount of Groundwater Used in the Dry Season and Improve the Water Quality of the Base Runoff)

  • 강태성;양동석;유나영;신민환;임경재;김종건
    • 한국농공학회논문집
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    • 제64권2호
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    • pp.27-35
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    • 2022
  • Based on the current status of groundwater usage in the dry season through field surveys, this study tried to suggest countermeasures to reduce groundwater usage and to improve the water quality of baseflow from agricultural fields. For this purposes, basins with water curtain cultivation preceded were targeted where decreases of groundwater due to continuous use of groundwater in spring and winter annually observed. From monitoring groudwater usage of the study watershed, 130,058, 130,105 m3/day of water was pumped in during the water curtain cultivation period (October-February) in the Shindun, Seokwon watershed respectively. And the pilot application of the smart automated sensor-based water curtain cultivation system (smart WC system) developed in this study to reduce groundwater consumption has been conducted. As a result, the efficiency of the smart WC system when threshold temperature is set as 6.3 ℃ was 21.1% compared to conventional cultivation and efficiency increased as threshold temperature gets lower. Lastly, in this study, culvert drainage and Bio-filters were installed and rainfall monitoring was performed 15 times in order to analyze the baseflow securement and pollutant loads behavior. As a result, the test-bed with culvert drainage and Bio-filter installed together generated 61.4% more baseflow (4.974 m3) than the test-bed with only culvert drainage was installed (3.056 m3). However, the total pollutant load of all water quality contents (BOD, COD, T-N, TOC) except for the SS and T-P was found to be greater in the culvert drain and Bio-filter installed than in the culvert drain test-bed.

Research on the development law of karst fissures and groundwater characteristic in Xintian County

  • Xin, Zhou;Tengfei, Yao;Can, Wang;Jian, Ou;Pengfei, Zheng;Kaihong, Chen;Xiting, Long
    • Membrane and Water Treatment
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    • 제13권6호
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    • pp.303-312
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    • 2022
  • The natural hydrology and geological conditions of Xintian County was investigated, the development law of regional karst fissures was studied, the groundwater was collected and tested through a large-scale collection of groundwater to obtain the change law of chemical characteristics and water quality characteristics of groundwater, and the water quality evaluation was carried out for the regional karst groundwater in this paper. The results show that, the whole area is dominated by carbonate rock distribution areas, and the distribution of water systems is relatively developed. The strata are distributed from the Lower Paleozoic Cambrian to the Cenozoic Quaternary, and contain multiple first-order folds. The regional karst dynamic action is strong, and many tunnels or caves of different scales were shown, which are conducive to the enrichment of groundwater. Karst groundwater is neutral and alkaline water, the water is clear and transparent with good taste, and meets the national drinking water hygiene standards. The content of toxic trace elements and fluoride in the water source is generally lower than the limit value specified by the national standard and the accumulated toxic heavy metals is never found. The overall water quality is of good quality and suitable for the development and utilization of various purposes.

양식장 용수 추가 확보를 위한 수압파쇄 적용성 평가 (Feasibility of Hydraulic Fracturing for Securing Additional Saline Groundwater in the Land-based Aquaculture Farm)

  • 이병선;김영인;박학윤;조정환;송성호
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제20권7호
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    • pp.34-42
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    • 2015
  • Feasibility tests for the hydraulic fracturing were conducted in order to secure additional saline groundwater for irrigating to the land-based aquaculture farm. Two boreholes were placed to the aquaculture farm A and B, respectively. A hydraulic fracturing using single packer was applied to major fracture zones within two boreholes. To identify effects of hydraulic fracturing on securing additional saline groundwater, some selective methods including well logging methods, pumping tests, and groundwater quality analysis were commonly applied to the boreholes before and after the hydraulic fracturing. Enlarging/creating fracture zones, increasing water contents in bedrock near boreholes, and increasing transmissivity were observed after the hydraulic fracturing. Even though the hydraulic fracturing could be an alternative to secure additional saline groundwater to the land-based aquaculture farm, salinity of the groundwater did not meet optimal thresholds for each fingerling in two farms: Fresh submarine groundwater discharge flowed the more into borehole of the farm A that resulted in decreasing a salinity value. Increased saline groundwater quantity in the borehole of the farm B rarely affect to the salinity. Although salinity problem of groundwater limited its direct use for the farms, the mixing with seawater could be effectively used for the fingerlings during the early stage. A horizontal radial collector well placed in the alluvial layer could be an alternative for the farms as well.