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Volume 15 Issue 1
Mar 2004
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Jun Deng, Qingfei Wang, Yanguang Wei, Jianping Wang, Zhongshi Sun, Liqiang Yang. Metallogenic Effect of Transition of Tectonic Dynamic System. Journal of Earth Science, 2004, 15(1): 23-28.
Citation: Jun Deng, Qingfei Wang, Yanguang Wei, Jianping Wang, Zhongshi Sun, Liqiang Yang. Metallogenic Effect of Transition of Tectonic Dynamic System. Journal of Earth Science, 2004, 15(1): 23-28.

Metallogenic Effect of Transition of Tectonic Dynamic System

Funds:

the National Natural Science Foundation of China 40172036

the National Natural Science Foundation of China 40272051

the "Transcentury Training Program for Outstanding Talents" Fund sponsored by the Ministry of Education and "the Key Project of Science and Technology Research" by the Ministry of Education 01037

the "Transcentury Training Program for Outstanding Talents" Fund sponsored by the Ministry of Education and "the Key Project of Science and Technology Research" by the Ministry of Education 03178

  • Received Date: 10 Nov 2003
  • Accepted Date: 25 Dec 2003
  • Tectonic dynamic system transition, one of the main factors in metallogenesis, controls metallogenic fluid movement and ore body location in orefields and on an ore deposit scale (mainly in the continental tectonic setting), and even the formation and distribution of large-scale deposit clusters. Tectonic dynamic system transition can be classified as the spacious difference of the tectonic dynamic system in various geological units and the temporal alteration of different tectonic dynamic systems. The former results in outburst of mineralization, while the latter leads to the metallogenic diversity. Both of them are the main contents of metallogenic effect of tectonic dynamic system transition, that is, the alteration of dynamic system, the occurrence of mineralization, and the difference of regional tectonic dynamic system and metallogenic diversity. Generally speaking, the coupling of spatial difference of tectonic dynamic system and its successive alternation controlled the tempo-spatial evolution regularity of mineralization on a larger scale. In addition, the analysis of mineralization factors and processes of typical ore deposits proved that the changes of tectonic stress field, the direct appearance of tectonic dynamic system transition, may lead to the accident of mineralization physical-chemical field and the corresponding accidental interfaces were always located at ore bodies.

     

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