• Hydrogeological Characterization of Groundwater and Surface Water Interactions in Fresh-Saline Water Mixed Zone of the East Coast Lagoon Area, Korea
  • Woo-Hyun Jeon·Dong-Hun Kim·Soo-Hyoung Lee·Seho Hwang·Hee Sun Moon*·Yongcheol Kim

  • Groundwater Research Center, Geological Environment Research Division, Korea Institute of Geoscience and Mineral Resources

  • 동해안 석호 담염수 혼합대에서 지하수와 지표수 상호작용의 수리지질학적 특성 평가
  • 전우현·김동훈·이수형·황세호·문희선*·김용철

  • 한국지질자원연구원 지질환경연구본부 지하수연구센터

  • This article is an open access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.

References
  • 1. Allen, C.D., Macalady, A.K., Chenchouni, H., Bachelet, D., McDowell, N., Vennetier, M., Kitzberger, T., Rigling, A., Breshears, D.D., Hogg, E.H., Gonzalez, P., Fensham, R., Zhang, Z., Castro, J., Demidova, N., Lim, J.H., Allard, G., Running S.W., Semerci, A., and Cobb, N., 2010, A global overview of drought and heat-induced tree mortality reveals emerging climate change risks for forests, Forest Ecol. Manag., 259, 660-684.
  •  
  • 2. Bak, Y.S., Nahm, W.H., and Lee, S.J., 2013, Holocene paleoenvironmental changes from diatom analysis of sediments from the Songjiho Lagoon on the eastern coast of Korea, J. Geol. Soc. Korea, 49, 297-303 (in Korean with English abstract).
  •  
  • 3. Bertrand, G., Goldscheider, N., Gobat, J.M., and Hunkeler, D., 2012, Review: From multi-scale conceptualization to a classification system for inland groundwater-dependent ecosystems, Hydrogeol. J., 20, 5-25.
  •  
  • 4. Boano, F., Harvey, J.W., Marion, A., Packman, A.I., Revelli, R., Ridolfi, L., and Woerman, A., 2014, Hyporheic flow and transport processes: Mechanisms, models, and biogeochemical implications, Rev. Geophys., 52, 603-679.
  •  
  • 5. Bormann, H., Ahlhorn, F., and Klenke, T., 2012, Adaptation of water management to regional climate change in a coastal region-Hydrological change vs. community perception and strategies, J. Hydrol., 454-455, 64-75.
  •  
  • 6. Conant, B., Robinson, C.E., Hinton, M.J., and Russell, H.A.J., 2019, A framework for conceptualizing groundwater-surface water interactions and identifying potential impacts on water quality, water quantity, and ecosystems, J. Hydrol., 574, 609-627.
  •  
  • 7. Cheong, D. and Kim, B., 2008, Domestic and oversea research activities and future studies of paleoclimatology from lake and wetland sediments, J. Geol. Soc. Korea, 44, 81-92 (in Korean with English abstract).
  •  
  • 8. Chikita, K.A., Iwasaka, W., Mamun, A.A, Ohmori, K., and Itoh, Y., 2012, The role of groundwater outflow in the water cycle of a coastal lagoon sporadically opening to the ocean, J. Hydrol., 464-465, 423-430.
  •  
  • 9. Dwire, K.A., Mellmann-Brown, S., and Gurrieri, J.T., 2018, Potential effects of climate change on riparian areas, wetlands, and groundwater-dependent ecosystems in the Blue Mountains, Oregon, USA, Clim. Serv., 10, 44-52.
  •  
  • 10. Eamus, D. and Froend, R., 2006, Groundwater-dependent ecosystems: the where, what and why of GDEs, Aust. J. Bot., 54, 91-96.
  •  
  • 11. Easterling, D.R., Meehl, G.A., Parmesan, C., Changnon, S.A., Karl, T.R., and Mearns, L.O., 2000, Climate extremes: Observations, modeling, and impacts, Science, 289, 2068-2074.
  •  
  • 12. Gorelick, S.M. and Zheng, C., 2015, Global change and the groundwater management challenge, Water Resour. Res., 51, 3031-3051.
  •  
  • 13. Han, D., Post, V.E.A., and Song, X., 2015, Groundwater salinization processes and reversibility of seawater intrusion in coastal carbonate aquifers, J. Hydrol., 531, 1067-1080.
  •  
  • 14. Herrera-Pantoja, M. and Hiscock, K.M., 2008, The effects of climate change on potential groundwater recharge in Great Britain, Hydrol. Process., 22, 73-86.
  •  
  • 15. Iglesias, A. and Garrote, L., 2015, Adaptation strategies for agricultural water management under climate change in Europe, Agr. Water Manage., 155, 113-124.
  •  
  • 16. Kim, H., Cho, S.H., Lee, D., Jung, Y.Y., Kim, Y.H., Koh, D.C., and Lee, J., 2017, Influence of pre-event water on streamflow in a granitic watershed using hydrograph separation, Environ. Earth Sci., 76, 82.
  •  
  • 17. Kim, J., Kim, H., and Lee, K.K., 2020, Application of 222Rn and microbial diversity to characterize groundwater/surface-water interactions in a riverside area (South Korea), Hydrogeol. J., 28, 1173-1189.
  •  
  • 18. Kl©ªve, B., Ala-aho, P., Bertrand, G., Boukalova, Z., Ertürk, A., Goldscheider, N., Ilmonen, J., Karakaya, N., Kupfersberger, H., Kv©«rner, J., Lundberg, A., Mileusnic, M., Moszczynska, A., Muotka, T., Preda, E., Rossi, P., Siergieiev, D., S¢§ imek, J., Wachniew, P., Angheluta, V., and Widerlund, A., 2011, Groundwater dependent ecosystems: Part I: Hydroecological status and trends, Environ. Sci. Policy, 14, 770-781.
  •  
  • 19. Kl©ªve, B., Ala-aho, P., Bertrand, G., Gurdak, J.J., Kupfersberger, H., Kv©¡rner, J., Muotka, T., Mykrä, H., Preda, E., Rossi, P., Uvo, C.B., Velasco, E., and Pulido-Velazquez, M., 2014, Climate change impacts on groundwater and dependent ecosystems, J. Hydrol., 518, 250-266.
  •  
  • 20. KMA (Korean Meteorological Administration), 2021, http://kma.go.kr [accessed 21.11.15]
  •  
  • 21. Kundzewicz, Z.W., 2008, Climate change impacts on the hydrological cycle, Ecohydrol. Hydrobiol., 8, 195-203.
  •  
  • 22. Kwak, S.J., Yoo, S.H., and Chang, J.I., 2005, Measuring the conservation value of lagoons: the case of Songji Lagoon, Ocean Polar Res., 27, 161-169 (in Korean with English abstract).
  •  
  • 23. Kwon, H.I., Koh, D.C., Jung, Y.Y., Kim, D.H., and Ha, K., 2020, Evaluating the impacts of intense seasonal groundwater pumping on stream-aquifer interactions in agricultural riparian zones using a multi-parameter approach, J. Hydrol., 584, 124683.
  •  
  • 24. Kwon, S.Y., Heo, W.M., Lee, S., Kim, D., and Kim, B., 2005, The limnological survey of a coastal lagoon in Korea (4); Lake Songji, Korean J. Limnol., 38, 461-474.
  •  
  • 25. Lee, J., Koh, D.C., and Choo, M.K., 2014, Influences of fractionation of stable isotopic composition of rain and snowmelt on isotopic hydrograph separation, J. Korean Earth Sci. Soc., 35, 97-103 (in Korean with English abstract).
  •  
  • 26. Lee, J., 2018, A study on propagation of uncertainties for a mixing ratio calculation by seawater intrusion, J. Geol. Soc. Korea, 54, 579-584 (in Korean with English abstract).
  •  
  • 27. Lee, S.H. and Yu, K.M., 2011, Depositional environments of Holocene laminated layers in the core SJ99 collected from the Songjiho Lagoon on the eastern coast of Korea, J. Geol. Soc. Korea, 47, 123-137 (in Korean with English abstract).
  •  
  • 28. Lee, S.H., Hamm, S.Y., Ha, K., Kim, Y., Koh, D.C., Yoon, H., and Kim, S.W., 2018, Hydrogeologic and Paleo-geographic characteristics of river side alluvium at an artificial recharge site in Korea, Water, 10, 835.
  •  
  • 29. Oh, Y.H., Koh, D.C., Kwon, H.I., Jung, Y.Y., Lee, K.Y., Yoon, Y.Y., Kim, D.H., Moon, H.S., and Ha, K., 2021, Identifying and quantifying groundwater inflow to a stream using 220Rn and 222Rn as natural tracers, J. Hydrol. Reg. Stud., 33, 100773.
  •  
  • 30. Park, H.Y., Jang, K., Ju, J.W., and Yeo, I.K., 2012, Hydrogeological characterization of seawater intrusion in tidally-forced coastal fractured bedrock aquifer, J. Hydrol., 446-447, 77-89.
  •  
  • 31. Park, S.C., Yun, S.T., Chae, G.T., Yoo, I.S., Shin, K.S., Heo, C.H., and Lee, S.K., 2005, Regional hydrochemical study on salinization of coastal aquifers, western coastal area of South Korea, J. Hydrol., 313, 182-194.
  •  
  • 32. Park, Y.S., Nahm, W.H., and Lee, S.J., 2013, Holocene paleoenvironmental changes from diatom analysis of sediments from the Songjiho Lagoon on the eastern coast of Korea, J. Geol. Soc. Korea, 49, 297-303 (in Korean with English abstract).
  •  
  • 33. Song, B., Yi, S., Nahm, W.H., Lee, J.Y., Yang, Z., and Yang, X., 2019, Holocene environmental changes of the Songji lagoon, South Korea, and its linkage to sea level and ENSO changes, Quatern. Int., 503, 32-40.
  •  
  • 34. Song, K.Y., Park, S.I., and Cho, D.L., 2011, Geological report of Sokcho-Yangyang Sheet 1:50,000, Korean Institute of Geoscience and Mineral Resources (in Korean with English abstract).
  •  
  • 35. Sophocleous, M., 2002, Interactions between groundwater and surface water: the state of the science, Hydrogeol. J., 10, 52-67.
  •  
  • 36. Winter, T.C., Harvey, J.W., Franke, O.L., and Alley, W.M., 1998, Ground water and surface water a single resource, U.S. Geol. Surv. Circ., 1139.
  •  
  • 37. Woessner, W.W., 2000, Stream and fluvial plain groundwater interactions: rescaling hydrogeologic thought, Groundwater, 38, 423-429.
  •  
  • 38. Yoon, S.O., Hwang, S., Park, C.S., Kim, H.S., and Moon, Y.R., 2008, Landscape changes of coastal lagoons during the 20th century in the Middle East coast, South Korea, J. Korean Geogr. Soc., 43, 449-465 (in Korean with English abstract).
  •  
  • 39. Yum, J.G., Yu, K.M., Sampei, Y., Tokuoka, T., and Nakamura, T., 2002, Depositional environmental change during the last 400 years in the Hwajinpo lagoon on the eastern coast of Korea, J. Geol. Soc. Korea, 38, 21-32 (in Korean with English abstract).
  •  

This Article

  • 2021; 26(6): 144-156

    Published on Dec 31, 2021

  • 10.7857/JSGE.2021.26.6.144
  • Received on Dec 3, 2021
  • Revised on Dec 6, 2021
  • Accepted on Dec 14, 2021

Correspondence to

  • Hee Sun Moon
  • Groundwater Research Center, Geological Environment Research Division, Korea Institute of Geoscience and Mineral Resources

  • E-mail: hmoon@kigam.re.kr