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      부산 해안지역의 물의 라돈 농도와 지하수 유출 특성 = Characterizing Groundwater Discharge and Radon Concentration in Coastal Waters, Busan City

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      https://www.riss.kr/link?id=A101661332

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      다국어 초록 (Multilingual Abstract)

      Groundwater which infiltrated in recharge areas discharges in the forms of evapotranspiration, baseflow to streams, groundwater abstraction and eventually flows into the sea. This study characterized radon-222 concentration and electrical conductivity (EC) in coastal groundwater discharge, well groundwater, Ilkwang Stream water, and seawater in the coastal area of Busan Metropolitan City and subsequently estimated groundwater discharge rate to the sea. The median value of Rn-222 concentration is highest in well groundwater (18.36 Bq/L), and then decreases in the order of coastal groundwater discharge (15.92 Bq/L), Ilkwang Stream water (1.408 Bq/L), and seawater (0.030 Bq/L). The relationship between Rn-222 concentration and EC values is relatively strong in well groundwater and then in seawater. However, the relationship is not visible between coastal groundwater discharge and Ilkwang Stream water. The groundwater discharge rate to the sea is estimated as $3,130m^3$/day by using radon mass budget model and $16,788m^3$/day by using Darcy's law.
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      Groundwater which infiltrated in recharge areas discharges in the forms of evapotranspiration, baseflow to streams, groundwater abstraction and eventually flows into the sea. This study characterized radon-222 concentration and electrical conductivity...

      Groundwater which infiltrated in recharge areas discharges in the forms of evapotranspiration, baseflow to streams, groundwater abstraction and eventually flows into the sea. This study characterized radon-222 concentration and electrical conductivity (EC) in coastal groundwater discharge, well groundwater, Ilkwang Stream water, and seawater in the coastal area of Busan Metropolitan City and subsequently estimated groundwater discharge rate to the sea. The median value of Rn-222 concentration is highest in well groundwater (18.36 Bq/L), and then decreases in the order of coastal groundwater discharge (15.92 Bq/L), Ilkwang Stream water (1.408 Bq/L), and seawater (0.030 Bq/L). The relationship between Rn-222 concentration and EC values is relatively strong in well groundwater and then in seawater. However, the relationship is not visible between coastal groundwater discharge and Ilkwang Stream water. The groundwater discharge rate to the sea is estimated as $3,130m^3$/day by using radon mass budget model and $16,788m^3$/day by using Darcy's law.

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      참고문헌 (Reference)

      1 홍성훈, "해안지역의 지하수 개발가능량 평가" 대한토목학회 23 (23): 201-207, 2003

      2 박남식, "해안 지하수 최적관리를 위한 개발가능량 산정 기법" 한국수자원학회 40 (40): 665-675, 2007

      3 황동운, "한반도 주변 연안 해저를 통한 담지하수의 유출 :미래 수자원으로서의 중요성" 한국해양학회 15 (15): 192-202, 2010

      4 박관석, "제주도 해안에서 해저지하수의 유출에 의한 환경화학적 특성과 유출량 측정" 한국해양공학회 2004

      5 이상규, "제주도 지하수 문제에서 물리탐사의 역할. In 전략광물자원 연구센터-제주도 지하수자원의 환경학적 보전과 개발 이용" 75-91, 1994

      6 백승균, "시계열 수질 분석에 의한 제주도의 해저용출수 탐사 및 검증" 대한자원환경지질학회 36 (36): 395-409, 2005

      7 김득호, "부산지역 해안용출수의 수리지질학적 특성 연구" 부산대학교 대학원 2010

      8 한국수자원공사, "부산지역 지하수 기초조사" 2003

      9 장태우, "부산·가덕 지질도폭(1:50000) 및 설명서" 한국동력자원연구소 22-, 1983

      10 양한섭, "부산 남동지역 연안 대수층내 지하수의 지화학적 특성과 유출" 한국수산과학회 40 (40): 167-177, 2007

      1 홍성훈, "해안지역의 지하수 개발가능량 평가" 대한토목학회 23 (23): 201-207, 2003

      2 박남식, "해안 지하수 최적관리를 위한 개발가능량 산정 기법" 한국수자원학회 40 (40): 665-675, 2007

      3 황동운, "한반도 주변 연안 해저를 통한 담지하수의 유출 :미래 수자원으로서의 중요성" 한국해양학회 15 (15): 192-202, 2010

      4 박관석, "제주도 해안에서 해저지하수의 유출에 의한 환경화학적 특성과 유출량 측정" 한국해양공학회 2004

      5 이상규, "제주도 지하수 문제에서 물리탐사의 역할. In 전략광물자원 연구센터-제주도 지하수자원의 환경학적 보전과 개발 이용" 75-91, 1994

      6 백승균, "시계열 수질 분석에 의한 제주도의 해저용출수 탐사 및 검증" 대한자원환경지질학회 36 (36): 395-409, 2005

      7 김득호, "부산지역 해안용출수의 수리지질학적 특성 연구" 부산대학교 대학원 2010

      8 한국수자원공사, "부산지역 지하수 기초조사" 2003

      9 장태우, "부산·가덕 지질도폭(1:50000) 및 설명서" 한국동력자원연구소 22-, 1983

      10 양한섭, "부산 남동지역 연안 대수층내 지하수의 지화학적 특성과 유출" 한국수산과학회 40 (40): 167-177, 2007

      11 김용호, "부동지구의 해안지하수 유출량" 1179-1183, 2005

      12 손치무, "동래·월내 도폭(1:50000) 및 설명서" 자원개발연구소 27-, 1978

      13 이대근, "거제도 해안유출지하수 예비조사 및 활용방안 연구" 253-256., 2002

      14 Anthony, J.S., "Wave effects on submarine groundwater seepage measurement" 32 : 820-833, 2008

      15 Charette, M.A., "Utility of radium isotopes for evaluating the input and transport of groundwater-derived nitrogen to a Cape Cod estuary" 46 : 456-470, 2001

      16 Swarzenski, P.W., "U/Th series radionuclides as coastal groundwater tracers" 107 : 663-674, 2007

      17 Valiela, I., "Transport of groundwater-borne nutrients from watersheds and their effects on coastal waters" 10 : 177-197, 1990

      18 Kim, G., "Tidal pumping of groundwater into the coastal ocean revealed from submarine 222Rn and CH4 monitoring" 29 (29): 23-27, 2002

      19 Broecker, W.S., "The vertical distribution of radon in the BOMEX area" 11 : 99-108, 1971

      20 Bugna, G.C., "The importance of groundwater discharge to the methane budgets of nearshore and continental shelf waters of the northeastern Gulf of Mexico" 60 (60): 4735-4746, 1996

      21 Johannes, R.P., "The ecological significance of the submarine discharge of groundwater" 3 : 365-373, 1980

      22 Taniguchi, M., "Submarine groundwater discharge measured by seepage meters in sicilian coastal waters" 26 : 835-842, 2006

      23 Swarzenski, P.W., "Submarine ground-water discharge and its role in coastal processes and ecosystems" 4-, 2004

      24 Michael, H.A., "Seasonal oscillations in water exchange between aquifers and the coastal ocean" 436 (436): 77-87, 2005

      25 Kelly, R.P., "Seasonal changes in groundwater input to a well-mixed estuary estimated using radium isotopes and implications for coastal nutrient budgets" 47 : 1796-1807, 2002

      26 Weigel, C., "Renormalization-group calculation of defects in solids" 18 : 2377-2386, 1978

      27 Burnett, W.C., "Quantifying submarine groundwater discharge in the coastal zone via multiple methods" 367 : 498-543, 2006

      28 Corbett, D.R., "Patterns of groundwater discharge into Florida Bay" 44 : 1045-1055, 1999

      29 Li, E., "Numerical study of submarine groundwater discharge in a two-dimensional unconfined coastal aquifer" 2006

      30 D'Elia, C.F., "Nitrate-rich groundwater inputs to Discovery Bay, Jamaica: A significant source of N to local coral reefs" 31 : 903-910, 1981

      31 Garrison, G.H., "Measurement of submarine groundwater discharge in Kahana Bay" 48 : 920-928, 2003

      32 Burnett, W.C., "Measurement and significance of the direct discharge of groundwater into the coastal zone" 46 : 109-116, 2001

      33 Harvey, F.E., "Locating groundwater discharge in large lakes using bottom sediment electrical conductivity mapping" 33 : 2609-2615, 1997

      34 Hwang, D.W., "Large submarine groundwater discharge and benthic eutrophication in Bangdu Bay on volcanic Jeju Island, Korea" AMER SOC LIMNOLOGY OCEANOGRAPHY 50 : 1393-1403, 2005

      35 Moore, W.S., "Large groundwater inputs to coastal waters revealed by 226Ra enrichments" 380 : 612-614, 1996

      36 D’lessandro, W., "Groundwater radon measurements in the Mt. Etna area" 65 : 187-201, 2003

      37 Zektser, I.S., "Groundwater fluxes in the global hydrologic cycle: past, present, and future" 144 : 405-427, 1993

      38 Boehm, A.B., "Groundwater discharge: Potential association with focal indicator bacteria in the surf zone" 38 (38): 3558-3566, 2004

      39 Yang, H.S., "Factors controlling excess radium in the Nakdong River estuary, Korea: submarine groundwater discharge versus desorption from riverine particles" 78 : 1-8, 2002

      40 Corbett, D.R., "Estimating the groundwater contribution into Florida Bay via natural tracers, 222Rn and CH4" 45 : 1546-1557, 2000

      41 Burnett, W.C., "Estimating the dynamics of groundwater input into the coastal zone via continuous radon-222 measurements" 69 : 21-35, 2003

      42 Hwang, D.W., "Estimating submarine inputs of groundwater and nutrients to a coastal bay using radium isotopes" ELSEVIER SCIENCE BV 96 : 61-71, 2005

      43 Mancini, C., "Determination of waterborne 222Rn concentrations using AC canisters" 69 : 403-405, 1995

      44 Dulaiova, H., "Coupled radon, methane and nitrate sensors for largescale assessment of groundwater discharge and non-point source pollution to coastal waters" 101 : 553-563, 2010

      45 Martin, J.B., "Coastal groundwater discharge to the Indian River Lagoon - physical measurements and water sources" Geological Society of America-Southeastern Section 222-224, 2000

      46 Laroche, J., "Brown tide blooms in Long Island's coastal waters linked to interannual variability in groundwater flow" 3 : 397-410, 1997

      47 Dulaiova, H., "Assessment of groundwater discharge into West Neck Bay, New York, via natural tracers" 26 (26): 1971-1983, 2006

      48 Burnett, W.C., "Assessing methodologies for measuring groundwater discharge to the ocean" 83 : 117-123, 2002

      49 Cable, J.E., "Application of 222Rn and CH4 for assessment of groundwater discharge to the coastal ocean" 41 : 1347-1353, 1996

      50 Lee, J.M., "A simple and rapid method for analyzing radon in coastal and ground waters using a radon-inair monitor" 89 : 219-228, 2006

      51 Lee, D.R., "A device for measuring seepage flux in lakes and estuaries" 22 : 140-147, 1977

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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.3 0.3 0.35
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.35 0.36 0.568 0.05
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