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    Volume 27 Issue 5
    Sep.  2002
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    WU Chong-wen, 2002. Complexity of Geosystem: Basic Issues of Geological Science (Ⅰ). Earth Science, 27(5): 509-519.
    Citation: WU Chong-wen, 2002. Complexity of Geosystem: Basic Issues of Geological Science (Ⅰ). Earth Science, 27(5): 509-519.

    Complexity of Geosystem: Basic Issues of Geological Science (Ⅰ)

    • Received Date: 2002-05-15
    • Publish Date: 2002-10-25
    • The natural philosophical conception that "the geological process and spatio temporal structure are the essence and crux of geological phenomena" proposed by the author can be used to classify the geological science as four major academic disciplines: the composition and structure of the earth materials, the geological process, the geological field and the evolution of the geosystem. These four major academic disciplines correspond to the nine important basic geological issues and associated complex theoretical problems (Table 2). The author applies the complex theory of geological science "the dynamics of the self organized critical process of geological process - the fractal growth of geosystems at the edge of chaos" proposed by the author himself to the research into the nine important basic geological issues, with an emphasis on the relatively deep and brief analysis of the nature, theory and research method of the major basic theoretical problems. The purpose of the paper is to understand the geological sciences, old and renewed frequently, from the new point of view of the complexity of geosystem considered as the basic problem of geological sciences, to raise the study of basic geological problems to the level of the nonlinear science and the theory of complexity, and to complete the transformation of the geological science into a precise science, with an expectation to make a breakthrough in geological process.

       

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    • [1]
      於崇文. 揭示地质现象的本质与核心—地质作用与时-空结构[J]. 地学前缘, 2000, 7(1): 2-12. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY200001001.htm

      YU C W. Revealing the essence and crux of geological phenomena—geological processes and spatio-temporal structures[J]. Earth Science Frontiers, 2000, 7(1): 2-12. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY200001001.htm
      [2]
      於崇文. 固体地球系统的复杂性与自组织临界性[J]. 地学前缘, 1998, 5(3, 4): 159-182, 347-368.

      YU C W. The complexity and self-organized criticality of the solid Earth system[J]. Earth Science Frontiers, 1998, 5(3, 4): 159-182, 347-368.
      [3]
      於崇文. 地质作用的自组织临界过程动力学—地质系统在混沌边缘分形生长(上、下)[J]. 地学前缘, 2000, 7(1, 2): 13-42, 555-586. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY200001002.htm

      YU C W. Dynamics of self-organized critical processes of geological processes— fractal growth of geosystems at the edge of chaos[J]. Earth Science Frontiers, 2000, 7(1, 2): 13-42, 555-586. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY200001002.htm
      [4]
      Clayton D D. Principles of stellar evolution and nucleosynthesis[M]. New York: Mc Graw-Hill, 1968. 1-612.
      [5]
      Haken H. Advanced synergetics: instability hierarchies of self-organizing systems and devices[M]. Berlin: Springer-Verlag, 1983. 1-356.
      [6]
      Tossell J A, Vaughan D J. Theoretical geochemistry: applications of quantum mechanics in the Earth and mineral sciences[M]. Oxford: Oxford University Press, 1992. 1-510.
      [7]
      Kuramoto Y. Chemical oscillations, waves and turbulence [M]. Berlin: Springer-Verlag, 1984. 1-156.
      [8]
      於崇文, 蒋耀淞, 肖正域. 热液成矿分带的溶解-沉淀波结构[J]. 地球科学—中国地质大学学报, 1995, 20 (5): 540-550. https://www.cnki.com.cn/Article/CJFDTOTAL-DQKX505.010.htm

      YU C W, JIANG Y S, XIAO Z Y. Dissolution/precipitation wave structure of hydrothermal ore zoning[J]. Earth Science—Journal of China University of Geosciences, 1995, 20(5): 540-550. https://www.cnki.com.cn/Article/CJFDTOTAL-DQKX505.010.htm
      [9]
      Ortoleva P J. Geochemical self-organization[M]. Oxford: Oxford University Press, 1994. 1-411.
      [10]
      Turcotte D L, Stewart C A, Huang J. Routes to chaos in the solid earth[A]. In: Yuen D A, ed. Chaotic processes in the geological sciences[C]. Berlin: Springer-Verlag, 1992. 89-109.
      [11]
      Herrmann H J, Poliakov A N B, Tzschichholz F. The deformation of rocks: fractals everywhere[A]. In: Evertsz C J G, Peitgen H-O, Voss R F, eds. Fractal geometry and analysis[C]. Singapore: World Scientific, 1996. 417-424.
      [12]
      Sornette A, Sornette D. Self-organized criticality and earthquakes[J]. Europhys Lett, 1989, 9: 197-202. doi: 10.1209/0295-5075/9/3/002
      [13]
      Sornette D, Davy P, Sornette A. Structuration of the lithosphere in plate tectonics as a self-organized critical phenomenon[J]. J Geophys Res, 1990, 95(B11): 17353-17361. doi: 10.1029/JB095iB11p17353
      [14]
      England P. Some numerical investigations of large scale continental deformation[A]. In: Hsu K J, ed. Mountain building processes[C]. London, New York: Academic Press, 1983. 129-139.
      [15]
      Turcotte D L. Driving mechanisms of mountain building [A]. In: Hsu K J, ed. Mountain building processes [C]. London, New York: Academic Press, 1983. 141-146.
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