DOI QR코드

DOI QR Code

Characteristics of Surface Topography Variation on the Gochang Beach, Southwestern Coast of Korea

한국 서남해안 고창 해빈의 표층 지형 변화 특성

  • Kang, Sol-Ip (Division of Science Education and Institute of Science Education, Chonbuk National University) ;
  • Ryang, Woo-Hun (Division of Science Education and Institute of Science Education, Chonbuk National University) ;
  • Chun, Seung-Soo (Faculty of Earth Systems and Environmental Sciences, Chonnam National University)
  • 강솔잎 (전북대학교 과학교육학부/과학교육연구소) ;
  • 양우헌 (전북대학교 과학교육학부/과학교육연구소) ;
  • 전승수 (전남대학교 지구환경과학부)
  • Received : 2015.07.04
  • Accepted : 2015.10.27
  • Published : 2015.10.30

Abstract

The Gochang beach is located in the southwestern coast of Korea along the eastern part of the Yellow Sea, comprising the Donghori, Gwangseungri, and Myeongsasipri beaches from north to south. The Gochang beach is characterized by macro-tide, open-coast, linear shoreline, and sand substrates. This study has investigated annual and seasonal characteristics of surface topography variation and sediment accumulation rate in the Gochang beach. During the five seasons of winter (Feb.), spring (May), summer (Aug.), and fall (Nov.) in 2014 and winter (Feb.) in 2015, the topographic elevation of total 315 sites was measured along three survey lines. It consists of 21 sites at 30 m intervals in each transverse line perpendicular to the shoreline, respectively. Annual accumulation rate of the Gochang beach in 2014 was -0.081 m/yr, indicative of erosional condition. Annual accumulation rates of the comprising beaches represent -0.091m/yr of the Donghori, -0.051 m/yr of the Gwangseungri, and -0.10 m/yr of the Myeongsasipri.

고창 해빈은 황해의 동편, 한국 서남해 연안에 위치하며, 북쪽에서 남쪽 방향으로 동호리, 광승리, 명사십리 해빈으로 구성된다. 고창 해빈은 대조차, 개방형, 직선형 해안, 모래 저질의 특징을 보인다. 본 연구는 고창 해빈에서 표층 지형 변화와 퇴적물 집적률의 연평균과 계절 특성을 연구하였다. 2014년 겨울(2월), 봄(5월), 여름(8월), 가을(11월)과 2015년 겨울(2월)의 5계절 동안, 3개 측선을 따라 총 315개 지점에서 지형 고도를 측정하였다. 해안선에 수직인 각 측선은 30 m 간격의 21 지점으로 구성된다. 고창 해빈의 2014년 연평균 집적률은 -0.081 m/yr로 침식이 우세하였다. 지역별 연평균 집적률은 동호리 해빈 -0.091 m/yr, 광승리 해빈 -0.051 m/yr, 명사십리 해빈 -0.10 m/yr로 나타났다.

Keywords

References

  1. Alexander, C.R., DeMaster, D.J., and Nittrouer, C.A., 1991, Sediment accumulation in a modern epicontinental-shelf setting: The Yellow Sea. Marine Geology, 98, 51-72. https://doi.org/10.1016/0025-3227(91)90035-3
  2. Baek, Y.S., Chun, S.S., and Shin, S.J., 2009, Seasonal variation of sedimentary structures and ichofacies in the Doouri open-coast tidal flat, southwestern Korea. Journal of the Geological Society of Korea, 45, 187-208. (in Korean)
  3. Boak, E.H. and Turner, I.L., 2005, Shoreline definition and detection: a review. Journal of Coastal Research, 21, 688-703.
  4. Carter, R.W.G. and Woodroffe, C.D., 1994, Coastal evolution: Late Quaternary shoreline morphodynamics. Cambridge University Press, Cambridge, 517 p.
  5. Chang, J.H., 1995, Depositional processes in the Gomso bay tidal flat, west coast of Korea. Unpublished Ph.D. dissertation, Seoul National University, Seoul, Korea, 143 p. (in Korean)
  6. Chang, J.H., Kim, Y.S., and Cho, Y. G., 1999, Tidal-flat sedimentation in a semienclosed bay with erosional shorelines: Hampyong bay, west coast of Korea. The Sea, Journal of the Korean Society of Oceanography, 4, 117-126. (in Korean)
  7. Cho, J.W., Lim, D.I., and Kim, B.O., 2001, Observation of shoreline change using an aerial photograph in Hampyung Bay, southwestern coast of Korea. Journal of the Korean Earth Science Society, 22, 317-326. (in Korean)
  8. Chough, S.K., Lee, H.J., and Yoon, S.H., 2000, Marine geology of Korean Seas. Elsevier, Amsterdam, 313 p.
  9. Davis, R.A. Jr., 1985, Coastal sedimentary environments. Springer-Verger, New York, 716 p.
  10. Davis, R.A. Jr., 2015, Beaches in space and time: a global look at the beach environment and how we use it. Pineapple Press, 168 p.
  11. Davis, R.A. Jr. and Fitzgerald, D.M., 2004, Beaches and coasts. Blackwell Science Ltd., Malden, 419 p.
  12. Hobbs, C.H., 2012, The beach book: science of the shore. Columbia University Press, New York, 195 p.
  13. Kim, J.S. and Jang, D.H., 2011, Time-series analysis of Baramarae beach in Anmyeondo using aerial photographs and field measurement data. Journal of the Korean Geomorphological Association, 18, 39-51. (in Korean)
  14. Korea Hydrographic and Oceanographic Administration (KHOA), 2013, Tidal bench mark. http://sms.khoa.go.kr/koofs/tbm/tbm.asp?tl_id=502 (May 10th 2015)
  15. Korea Institute of Geoscience and Mineral Resources (KIGAM), 2003, Study on the coastal geology of west coasts and the terrestrial wetlands, I. Study on the coastal geology of west coasts. KR-03(final)-04, 242 p.
  16. Korea Meteorological Administration (KMA), 2014-2015a, Monthly report of automatic weather system data. http://www.kma.go.kr/weather/observation/data_yearly.jsp (May 10th 2015)
  17. Korea Meteorological Administration (KMA), 2014-2015b, Monthly weather report. http://www.kma.go.kr/weather/observation/data_monthly.jsp (May 10th 2015)
  18. Korea Ocean Research Development Institute (KORDI), 1991, A study on the intertidal zone environment of west and south coasts of Korea (III). 162 p. (in Korean)
  19. Lee, B.J. and Lee, S.Y., 2001, Geological report of the Gochang sheet, scale 1:50,000. Korea Institute of Geoscience and Mineral Resources, 47 p. (in Korean)
  20. Lee, H.J., 2014, A review of sediment dynamical processes in the west coast of Korea, eastern Yellow Sea. Ocean Science Journal, 49, 85-95. https://doi.org/10.1007/s12601-014-0010-0
  21. Lim, D.I., Jung, H.S., Chu, Y.S., Park, K.S., Kang, S.W., and Yang, S.Y., 2002, A study on shoreline change in Hampyung bay, southwestern coast of Korea, I. Seacliff erosion and retreat. The Sea, Journal of the Korean Society of Oceanography, 7, 148-156. (in Korean)
  22. National Geographic Information Institute (NGII), 2015, Vertical datum between land and ocean height system. http://www.ngii.go.kr/geoid/lecture/popup/land_sea_system.do (May 10th 2015)
  23. Pilkey, O.H., Neal, W.J., Kelley, J.T., and Cooper, J.A.G., 2011, The world's beaches: a global guide to the science of the shoreline. University of California Press, Berkeley, 283 p.
  24. Ryu, S.O., 1998, Sedimentary environments and stratigraphy of Hampyong bay, southwestern coast of Korea. Unpublished Ph.D. dissertation, Chonnam National University, Gwangju, Korea, 192 p. (in Korean)
  25. Ryu, S.O., 2003, Seasonal variation of sedimentary process in a semi-enclosed bay: Hampyong Bay, Korea. Estuarine, Coastal and Shelf Science, 56, 481-492. https://doi.org/10.1016/S0272-7714(02)00199-3
  26. Ryu, S.O. and Chang, J.H., 2005, Characteristics of tidal beach and shoreline changes in Chonsu bay, west coast of Korea. Journal of the Korean Earth Science Society, 26, 584-596. (in Korean)
  27. Ryu, S.O., Chang, J.H., Cho, J.W., and Moon, B.C., 2004, Seasonal variations of sedimentary processes on mesotidal beach in Imjado, southwestern coast of Korea. The Sea, Journal of the Korean Society of Oceanography, 9, 83-92. (in Korean)
  28. Ryu, S.O., Kim, J.Y., and Chang, J.H., 2001, Distribution of surface sediments and sedimentation rates on the tidal flat of Muan bay, southwestern coast, Korea. Journal of the Korean Earth Science Society, 22, 30-39. (in Korean)
  29. Shepard, F.P., 1977, Geological oceanography. Crane, Russak & Company, Inc., New York, 214 p.
  30. So, K.S., Ryang, W.H., Choi, S.L., and Kwon, Y.K.,, 2012, Seasonal variation of surface sediments in the Kwangseungri beach, Gochanggun, Korea. Journal of the Korean Earth Science Society, 33, 497-509. (in Korean) https://doi.org/10.5467/JKESS.2012.33.6.497
  31. So, K.S., Ryang, W.H., Kang, S.I., and Kwon, Y.K., 2010, Seasonal variation of surface sediments in the Dongho beach, Gochanggun, Korea. Journal of the Korean Earth Science Society, 31, 708-719. (in Korean) https://doi.org/10.5467/JKESS.2010.31.7.708
  32. So, K.S., Ryang, W.H., and Kwon, Y.K., 2009, Seasonal variation of surface sediments in the Myeongsasipri tidal flat, Gochanggun, SW Korea. The Sea, Journal of the Korean Society of Oceanography, 14, 181-188. (in Korean)
  33. Yang, B.C. and Chun, S.S., 2001, A Seasonal model of surface sedimentation on the Baeksu open-coast intertidal flat, southwestern coast of Korea. Geosciences Journal, 5, 251-262. https://doi.org/10.1007/BF02910308
  34. Yang, B.C., Dalrymple, R.W., and Chun, S.S., 2005, Sedimentation on a wave-dominated, open-coast tidal flat, southwestern Korea: summer tidal flat-winter shoreface. Sedimentology, 52, 235-252. https://doi.org/10.1111/j.1365-3091.2004.00692.x
  35. Yang, B.C., Dalrymple, R.W., Chun, S.S., and Lee, H. J., 2006, Transgressive sedimentation and stratigraphic evolution of a wave-dominated macrotidal coast, western Korea. Marine Geology, 235, 35-48. https://doi.org/10.1016/j.margeo.2006.10.003

Cited by

  1. Seasonal Variation of Surface Sediments in 2014 on the Gochang Open-Coast Intertidal Flat, Southwestern Korea vol.37, pp.2, 2016, https://doi.org/10.5467/JKESS.2016.37.2.89