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Distribution Characteristics of Geologic Age and Rock Type of Bedrocks at the National Wood Culture Heritage Site by GIS

GIS에 의한 국가지정 목조문화재 기반암류의 지질시대별 및 암층별 분포특성

  • 윤현수 ((주)다인스 한국문화유산연구센터) ;
  • 이진영 (한국지질자원연구원 국토지질연구본부) ;
  • 김용원 ((주)다인스 한국문화유산연구센터) ;
  • 홍세선 (한국지질자원연구원 국토지질연구본부) ;
  • 김은경 ((주)다인스 한국문화유산연구센터)
  • Received : 2015.12.08
  • Accepted : 2015.12.28
  • Published : 2015.12.30

Abstract

The purpose of the work was carried out to contribute the factors related to geologic realm in the disaster stability evaluation items of the national wood culture heritages. Among the total heritages, the study targets mainly include 304 cases interpreted as a rock type in the geologic map of the bedrocks with GIS interpretation. The cases show the geologic ages, geologic provinces and rock types as the following distribution characteristics. In geologic ages, they are decreasing in the orders of Jurassic, Cretaceous, Quaternary, Precambrian, Age-unknown Cambro-Ordovician Carboniferous and Tertiary. Among the ages, the former fours occupy 285 cases (93.8%) of the targets, which show most of the wood culture heritages. In geologic provinces classified into 15, they are decreasing in the orders of Daebo intrusives, alluvium, Gyeongsang supergroup, Bulgugsa intrusives, Yeongnam massif, and Gyeonggi massif which occupy of predominant distribution 271 cases (89.1%) of them. In rock types of 52, those of 6, which are Jgr, Qa, Kp, Krt+Kav+Kav1+Kav2, Kbgr and GC2, occupy total 182 cases (59.9%) showing distinctly dominant trends from the rest of 46.

본 연구는 국가지정 목조문화재 재난안정성 평가항목에서 지질분야 요소에 기여할 목적으로 수행되었다. 주요 연구대상은 전국 333 건의 목조문화재 분포지 기반암류의 GIS 해독에서 한 개의 구성암층으로 해석된 304 건의 문화재가 해당된다. 이들 대상문화재 기반암류의 지질시대별 지질구 및 구성암층의 분포특성은 다음과 같다. 지질시대 분류에서는 쥬라기, 백악기, 제4기, 선캠브리아기, 시대미상 캠브로-오도비스기 석탄기 그리고 제3기의 순으로 그 분포값이 감소한다. 그 중 전자 넷이 285건(93.8%)를 차지하여 목조문화재 기반암류의 거의 대부분을 이룬다. 지질구는 모두 15개로 분류되며 그 중 대보관입암류, 충적층, 경상누층군, 불국사관입암류, 영남육괴, 경기육괴 등의 순으로 감소하며 이들이 도합 271건(89.1%)을 가져 그 대부분을 이룬다. 문화재 기반암류는 모두 52개의 구성암층을 이루며, 그 중 우세 분포그룹인 6개 구성암층 쥬라기 화강암류(Jgr), 제4기 충적층(Qa), 백악기 반암류(Kp), 백악기 유문암 및 유문암질 응회암(Krt+Kav+Kav1+Kav2), 백악기 흑운모화강암(Kbgr) 및 선캠브리아기 경기변성암(편마암)복합체(GC2)가 도합 182건(59.9 %)를 이루어 비우세 분포그룹인 나머지 46개 암층과 뚜렷이 구분되는 경향을 보인다.

Keywords

References

  1. Chang, G.H., Lee, Y.J., and Park, B.G., 1981, Geological report of the Gunwi sheet(1:50,000). Korea Institute of Energy and Resources, 20p.
  2. Chang, G.H., 1982, Upper Mesozoic Era chapter(Cretaceous System-Gyeongsang Supergroup). Geology and mineral resources of Korea, retirement ceremony of prof. Kim, O.J., commemoration alumni association of geology department of Yonsei University, 113-128.
  3. Chang, K.H. and Kim, K.T., 1967, Geological report of the Gangjin sheet(1:50,000). Geological Survey of Korea, 15p.
  4. Cheong, C.-S., Kwon, S.-T., and Sagong, H., 2002, Geochemical and Sr-Nd-Pb isotopic investigation of Triassic granitoids and basement rocks in the northern Gyeongsang Basin, Korea: Implications for the young basement in the East Asian continental margin, The Island Arc, 11, 25-44. https://doi.org/10.1046/j.1440-1738.2002.00356.x
  5. Choi, D.L., Kim, Y.J., and Armstrong, R., 2006, Geochronology of detrital zircons from iron-bearing quartzite of the Seosan Group: Constraints on age and stratigraphy. Journal of Petrological Society of Korea, 15, 119-127.
  6. Choi, J.Y., 2011, Seongji Map(1:100,000). Seongji Map, 344p.
  7. Chang, T.W. and Hwang, J.H., 1980, Geological report of the Nonsan sheet(1:50,000). Korea Research Institute of Geoscience and Mineral Resources, 32p.
  8. Chang, T.W., Hwang, S.K., Lee, D.W., Oh, I.S., Kim, H.C., and Kim, E.H., 1983, Geological report of the Chungmu sheet(1:50,000). Korea Institute of Energy and Resources, 18p.
  9. Cheong, C.H. and Kim, G.S., 1966, Geological report of the Neungju sheet(1:50,000). Geological Survey of Korea, 41p.
  10. Cheong, C.H., Ko, I.S., Kim, S.W., and Kim, H.M., 1989, Geological report of the Sonsan sheet(1:50,000). Korea Institute of Energy and Resources, 26p.
  11. Chi, K.H., Han, J.G., Yeon, Y.K., Hwang, J.H., Hong, Y.K., Kil, Y.W., Lee, C.W., Kim, Y.K., Shin, H.J., Kwon, S.K., Choi, H.S., and Park, S.W., 2008, Standards and guidelines for the construction of geoscience information based on GIS. Ministry of Knowledge Economy, KIGAM, 713p.
  12. Choi, P.Y., Choi, H.I., Hwang, J.H. Ki, W.S., Koh, H.J., Kim, Y.B., Lee, B.J., Song, K.Y., Kim, J.C., and Choi, Y.S., 2002, Geological report of the Mogpo.Yeosu sheets(1:250,000). Korea Institute of Geoscience and Mineral Resources, 45p.
  13. Chung, C.H. and Ko, S.J., 1963, Geological report of the Hamyeol sheet(1:50,000). Geological Survey of Korea, 29p.
  14. Cultural Heritage Administration, 2011, Practical handbook of registered cultural heritage, 11-1550000-001233-01, 126p.
  15. Cultural Heritage Administration, 2013, Corporate identity standards. Hyundai Industrial Policy Institute, 338p.
  16. $GICTR^1$(Geological Investigation Corps of Taebaegsan Region), 1962, Geological Gosari Quadrangle(1:50,000). Geological Society of Korea.
  17. $GICTR^2$(Geological Investigation Corps of Taebaegsan Region), 1962, Geological Samcheog Quadrangle (1:50,000). Geological Society of Korea.
  18. $GSK^1$, 1925, Jeonju sheet(1:50,000). Korea Institute of Geoscience and Mineral Resources, digital geologic map.
  19. $GSK^2$, 1928, Youngcheon sheet(1:50,000). Korea Institute of Geoscience and Mineral Resources, digital geologic map.
  20. $GSK^3$, 1929, Waegwan sheet(1:50,000). Korea Institute of Geoscience and Mineral Resources, digital geologic map.
  21. $GSK^4$, 1931, Daisenri sheet(1:50,000). Korea Institute of Geoscience and Mineral Resources, digital geologic map.
  22. $GSK^5$, 1931, Fuyo sheet(1:50,000). Korea Institute of Geoscience and Mineral Resources, digital geologic map.
  23. $GSK^6$, 1937, NeiKai sheet(1:50,000). Korea Institute of Geoscience and Mineral Resources, digital geologic map.
  24. Hong, M.S., Yoon, S. and Gil, Y.J., 1966, Geological report of the Galdam sheet(1:50,000). Geological Survey of Korea, 21p.
  25. Hong, S.H. and Choi, P-y, 1990, Geological report of the Naju sheet(1:50,000). Korea Institute of Energy and Resources, 22p.
  26. Hong, S.H. and Choi, W.C., 1978, Geological report of the Geumsan sheet(1:50,000). Korea Research Institute of Geoscience and Mineral Resources, 28p.
  27. Hong, S.H., Lee, B.J., and Hwang, S.K., 1982, Geological report of the Seoul sheet(1:50,000). Korea Institute of Energy and Resources, 19p.
  28. Hong, S.H. and Yun, U., 1986, Geological report of the Songjong sheet(1:50,000). Korea Institute of Energy and Resources, 23p.
  29. Hwang, I.J. and Jong, C.S., 1968, Geological report of the Boseong sheet(1:50,000). Geological Survey of Korea, 29p.
  30. Hwang, I.J. and Park, J.S., 1968, Geological report of the Aneui sheet(1:50,000). Geological Survey of Korea, 25p.
  31. Hwang, J.H. and Kihm, Y.H., 2011, Geological report of the Ganghwa.Onsuri sheets(1:50,000). Korea Institute of Geoscience and Mineral Resources, 46p.
  32. Hwang, J.H., Kim, D.H., Choi, D.L., and Song, K.Y., 1996, Geological report of the Andong sheet(1:250,000). Korea Institute of Geology, Mining & Materials, KR-96(S)-1, 67p.
  33. Hwang, S.K., Kim, Y.B., and Hwang, J.H., 2014, Rock series and petrochemical classification of the volcanic rocks in Ulleung Island. Journal of the Geological Society of Korea. v.50, p.61-70.
  34. Hyndman, D.W., 1972, Petrology of igneous and metamorphic rocks. McGraw-Hill Book Company, 533p.
  35. Kang, P.C., Kim, W.Y., and Lee, C.H., 1980, Geological report of the Jincheon sheet(1:50,000). Korea Research Institute of Geoscience and Mineral Resources, 16p.
  36. Kang, P.C. and Lim, J.H., 1974, Geological report of the Gwangjeong sheet(1:50,000). Geological and Mineral Institute of Korea, 13p.
  37. Kihm, Y.H. and Hwang, J.H., 2011, Geological report of the Gangneung-Jumunjin sheets(1:50,000). Korea Institute of Geoscience and Mineral Resources, 62p.
  38. Kim, B.K. and Son, S.J., 1963, Geological report of the Seocheon sheet(1:50,000). Geological survey of Korea, 11p.
  39. Kim, B.K., Lee, H.Y., Kim, S.J., and Cheong, J.G., 1988, Geological report of the Andong sheet(1:50,000). Korea Institute of Energy and Resources, 20p.
  40. Kim C.S. and Kim, G.S., 1997, Petrogenesis of the early Tertiary A-type Namsan alkali granite in the Kyeonsang Basin, Korea. Geoscience Journal, 1, 99-107. https://doi.org/10.1007/BF02910481
  41. Kim, K.B. and Chwae, U., 1994, Geological report of the Hamyang sheet(1:50,000). Korea Institute of Geology, Mining and Materials, 16p.
  42. Kim, K.W., Park, B.S., and Lee, H.K., 1967, Geological report of the Jecheon sheet(1:50,000). Geological survey of Korea, 46p.
  43. Kim, K.W. and Yeo, S.C., 1970, Geological report of the Hyeonpung sheet(1:50,000). Geological survey of Korea, 12p.
  44. Kim, N.J., Kwon, Y.I., and Jin, M.S., 1971, Geological report of the Moryang sheet(1:50,000). Geological survey of Korea, 19p.
  45. Kim, D.H., Choi, W.C., and Chang, T.W., 1980, Geological report of the Pyeongtaeg sheet(1:50,000). Korea Research Institute of Geoscience and Mineral Resources, 16p.
  46. Kim, O.J., Hong, M.S., Park, H.I., Park, Y.D., Kim, K.T., and Yoon, S., 1964, Geological report of the Sancheong sheet(1:50,000). Kyeong Sang Nam Do, 25p.
  47. Kim, D.H., Hwang, J.H., Park, K.H., and Song, K.Y., 1998, Geological report of the Pusan sheet(1:250,000). Korea Institute of geology, Mining & Materials, KR-00(B)-01, 62p.
  48. Kim, J.C., Koh, H.J., Lee, S.R., Lee, C.B., Choi, S,J., and Park, K.H., 2001, Geological report of the Gangreung-Sokcho sheet(1:250,000). Korea Institute of Geoscience and Mineral Resources, 76p.
  49. Kim, M.I., Lee, C.J., Kim, J.T., Kim, J.S., Kim, S.D., and Jeong, G.C., 2008, Application of Geophysical Survey to the Geological Engineering Model for the Effective Detection in Foundation of Stone Relics. Journal of Engineering Geology, 18, 537-543.
  50. Kim, M.I., Yang, D.Y., Lee, K.S., and Jeong, G.C., 2006, Geotechnical Diagnosis System for Preventing a Ground Subsidence Relating with Cultural Heritage. Journal of Engineering Geology, 16, 301-306.
  51. Kim, N.J., Kwon, Y.I., and Jin, M.S., 1971, Geological report of the Moryang sheet(1:50,000). Geological Survey of Korea, 19p.
  52. Kim, O.J., 1972, Precambrian geology and structure of the central region of South Korea. Journal of the Korean Institute of Mining Geology, 5, 231-240.
  53. Kim, O.J., Lee, D.S., and Lee, H.Y., 1977, Geological report of the Boeun sheet(1:50,000). Korea Research Institute of Geoscience and Mineral Resources, 36p.
  54. Kim, S.J., Noh, J.H., and Chang, S-W., 1989, Geological report of Changhowon sheet(1:50,000). Korea Institute of Energy and Resources, 17p.
  55. Kim, S.W. and Park, Y.D., 1967, Geological report of the Namchang sheet(1:50,000). Geological Survey of Korea, 16p.
  56. Ko, H.J. and Song, K.Y., 2005, Geological report of the Uijeongbu sheet(1:50,000). Korea Institute of Geoscience and Mineral Resources, 37p.
  57. Kwon, Y.I. and Jin, M.S., Geological report of the Cheongju sheet(1:50,000). Geological and Mineral Institite of Korea, 8p.
  58. Kwon, Y.I. and Lee, I.K., 1973, Geological report of the Dopyeong sheet(1:50,000). Geological and Mineral Institute of Korea, 9p.
  59. Lee, B.J., Kim, D.H., Choi, H.I., and Ki, W.S., 1996, Geological report of the Daejeon sheet(1:250,000). Korea Institute of geology, Mining & Materials, KR-95(S)-1, 59p.
  60. Lee, B.J., Kim, J.C., Kim, Y.B., Choi, D.L., Choi, H.I., Chun, H.Y., and Kim, B.C., 1997, Geological report of the Gwangju sheet(1:250,000). Korea Institute of Geology, Mining & Materials, KR-97(S)-1, 82p.
  61. Lee, B.J., Kim, Y.B., Lee, S.R., Kim, J.C., Kang, P.J., Choi, H.I., and Jin, M.S., 1999, Geological report of the Seoul.Namchonjeom sheet(1:250,000). Korea Institute of Geology, Mining & Materials, KR-99(S)-1, 64p.
  62. Lee, D.S. and Lee, H.Y., 1963, Geological report of the Yean sheet(1:50,000). Geological Survey of Korea, 22p.
  63. Lee, D.S.., Nam, K.S., and Chi, J.M., 1980, Geological report of the Ganggyeong sheet(1:50,000). Korea Research Institute of Geoscience and Mineral Resources, 36p.
  64. Lee, C.H. and Kim, S.S., 1963, Geological report of the Honsong sheet(1:50,000). Geological Survey of Korea, 33p.
  65. Lee, J.Y., Yun, H.S., and Hong, S.S, 2011, Geology of the Korean Peninsula based on the 1/1,000,000 tectonic map. STN, 138p.
  66. Lee, M.S., Park, B.S., and Paik, K.H., 1989, Geological report of the Sunchon sheet(1:50,000). Korea Institute of Energy and Resources, 22p.
  67. Lee, S.M., 1973, Application of metamorphic facies and facies series to the tectonics of Korea. Journal of the Geological Society of Korea, 9, 11-22.
  68. Lee, S.M., Kim, H.S., and Na, K.C., 1980, Geological report of the Daejeon sheet(1:50,000). Korea Research Institute of Geoscience and Mineral Resources, 26p.
  69. Lee, H.G. and Hong, S.H., 1973, Geological report of the Cheongsong sheet(1:50,000). Geological and Mineral Inatitute of Korea, 23p.
  70. Na, K.C., 1987, Metamorphic complexes of Sobaegsan Massif. In Geology of Korea (ed. Lee, D.S.), Kyohak-sa, 34-47.
  71. Nam, K.S., Lee, J.D., and You, H.S., 1989, Geological report of Hadong sheet(1:50,000). Korea Institute of Energy and Resources, 16p.
  72. Park, B.J., 2009, Yeongjin Map(1:50,000). Yeongjin Map, 657p.
  73. Park, B.S., 1982, Geotectonic characteristics of Korean Peninsula. Geology and mineral resources of Korea, Retirement Ceremony of Prof. Kim, O.J., Commemoration Alumini Association of Geology Department of Yonsei University, 155-165.
  74. Park, B.S. and Kim, S.W., 1970, Geological report of the Yongyang sheet(1:50,000). Geological Survey of Korea, 25p.
  75. Park, B.S. and Yun, Y.Y., 1973, Geological report of the Jain sheet(1:50,000). Geological and Mineral Institute of Korea, 27p.
  76. Park, K.H., Choi, D.L., and Kim, J.C., 2000, Geological report of the Jeju sheet(1:250,000). Korea Institute of geology, Mining & Materials, KR-00(B)-01, 59p.
  77. Park, K.H., Song, K.Y., Hwang, J.H., Lee, B-J., Cho, D.L., Kim, J.C., Cho, B.W., Kim, Y.B., Choi, P-Y. Lee, S-R., and Choi, H.I., 1998, Geological report of the Cheju- Aewol sheet(1:50,000). Cheju Provincial Government, 290p.
  78. Park, K.S., 1997, Geographic Information System. Publishing Company Dongseo, 291p.
  79. Park, S.J., 2007, History of trees in wood culture properties. In Science secret hidden of cultural heritage(ed. NRICH/National Researchj Institute of Cultural Institute), 118-144.
  80. Sagong, H., Kwon, S.-T., and Ree, J.-H., 2005, Mesozoic episodic magmatism in South Korea and its tectonic implication, Tectonics, 24, TC5002, doi:10.1029/2004TC001720.
  81. Shin, B.W. and Choi, S.I., 1968, Geological report of the Sangkumgok sheet(1:50,000). Geological Survey of Korea, 15p.
  82. Shin, B.W., Nam, K.S., and Lee, J.D., 1979, Geological report of the Cheonan sheet(1:50,000). Korea Research Institute of Geoscience and Mineral Resources, 16p.
  83. Shin, B.W., So, C.S., Park, B.S., and Lee, S.H., 1989, Geological report of the Haemi sheet(1:50,000). Korea Institute of Energy and Resources, 29p.
  84. Shin, S.-C., 2012, Cooling and thermal histories of Cretaceous- Paleogene granites from different fault-bounded blocks, SE Korean Peninsula: fission-track thermochronological evidences. Journal of Petrological Society of Korea. Vol. 21, 335-365. https://doi.org/10.7854/JPSK.2012.21.3.335
  85. Son, C.M. and Kim, S.J., 1970, Geological report of the Changpyeong sheet(1:50,000). Geological Survey of Korea, 30p.
  86. Son, C.M., Lee, S.M., Won, C.G., Chang, K.H., and Kim, Y.C., 1964, Geological report of the Hwagae sheet (1:50,000). Kyeong Sang Nam Do, 22p.
  87. So, C.S., Na, K.C., and Park, M.E., 1989, Geological report of the Ipo sheet(1:50,000). Korea Institute of Energy and Resources, 25p.
  88. Turek, A. and Kim, C.B., 1995, U-Pb zircon ages of Mesozoic plutons in the Damyang-Geochang area, Ryeongnam massif, Korea. Geochem. Jour., 29, 243-258. https://doi.org/10.2343/geochemj.29.243
  89. Woo, H.D. and Jang, Y.D., 2014, Petrological characteristics of the Yeongdeok granite. Journal of the Petrological Society of Korea, 23, 31-43. https://doi.org/10.7854/JPSK.2014.23.2.31
  90. Yeo, S.C. and Lee, I.K., 1975, Geological report of the Yeoju sheet(1:50,000). Geological and Mineral Inatitute of Korea, 12p.
  91. Yi, K., Cheong, C.-S., Kim, J., Kim, N., Jeong, Y.-J., and Cho, M., 2012b, Late Paleozoic to Early Mesozoic arcrelated magmatism in southeastern Korea: SHRIMP zircon geochronology and geochemistry. Lithos, 153, 129-141. https://doi.org/10.1016/j.lithos.2012.02.007
  92. Yi, K., Cheong, C.-S., Kim, N., Lee, S., and Choi, M.-S., 2012a, Mixing effects in zircon U-Pb ion microprobe dating: An example from a quartzofeldsparthic dyke in the Yeongdeok pluton, southeastern Korea. Geochemical Journal, 46, 261-266. https://doi.org/10.2343/geochemj.2.0202
  93. Yun, H.S., Lee, J.Y., Yang, D.Y., Hong, S.S., and Kim, J.Y., 2010. Areal distribution ratios of constituent rocks with geologic ages and rock types by GIS in the Gyeongsangbug-Do and Daegu areas. Journal of Petrological Society of Korea, 19, 1-18.
  94. Yun, S.K. and Shin, B.W., 1963, Geological report of the Ulchin sheet(1:50,000). Geological Survey of Korea, 23p.