研究论文

构造透镜体中成矿雏形断裂的形成过程

  • 夏斌 ,
  • 汤静如 ,
  • 汪劲草
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  • 中国科学院广州地球化学研究所,广东 广州 510640
汪劲草(1963-),男,湖北省应城市人,高级工程师,主要从事构造地质研究.E-mail:wangjincao@263.net

收稿日期: 2002-06-01

  修回日期: 2002-09-24

  网络出版日期: 2003-04-01

基金资助

国家重点基础研究发展规划项目“古陆缘成矿系统与金铜多金属成矿作用”(编号:2001CB409805)资助.

FORMATION OF METALLOGENIC EMBRYO-FAULTS IN TECTONIC LENS

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  • Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China

Received date: 2002-06-01

  Revised date: 2002-09-24

  Online published: 2003-04-01

摘要

以应力-应变曲线峰值为界,岩石破坏可分为 2个阶段,前阶段发育为雏形断裂,后阶段发育成宏观断裂。雏形断裂是一种特殊的断裂形式,在自然界中少见宏观断裂。与宏观断裂不同的是,雏形断裂既无断层面,又无碎裂岩,仅由小(微)裂隙组成。裂隙通常互不连通,总体具优选方向,且集中成透镜状裂隙群。裂隙群中部裂隙最发育,往边部渐趋消失。透镜状裂隙群之间呈雁列式排布,易发育和保存于构造透镜体弱应变域中。主要变形机制有液压致裂和应力腐蚀。形成前经历过微裂隙闭合、弹性变形和微裂隙生长扩容 3个阶段。以 2个中型金矿床为实例,研究了这一新发现的成矿构造的地质特征,认为变形分解、液压致裂和构造泵吸三者相互耦合,在雏形断裂形成与成矿过程中发挥关键作用。雏形断裂发育阶段可以形成独立的工业矿体。

本文引用格式

夏斌 , 汤静如 , 汪劲草 . 构造透镜体中成矿雏形断裂的形成过程[J]. 地球科学进展, 2003 , 18(2) : 317 -320 . DOI: 10.11867/j.issn.1001-8166.2003.02.0317

Abstract

 According to the dividing line of peak value of stress/strain curve,lithofraction may be divided into two phases which the former develops embryo-fault and the latter forms macro-fault. Embryo-fault is a kind of special fracture types that are much less than macro-faults in nature. Compared with macrofault, embryo-fault only consists of minute fissures and micro-fissures without fault surface and cataclasite. Fissures don't link each other, have whole preferred orientation and assemble a series of fissure lens. Fissures grow mostly in the center of fissure group and in going outwards disappear gradually. The fissure lens group, in en echelon arrangement, is ease to be developed and conserved in the weak strain domain of tectonic lens. The primary deformation mechanism of embryo-fault is hydrofracture and stress corrosion, and its formation experiences three stages:microfissure closure, elastic deformation and microfissure growth dilation. On the basis of two medium-size gold deposits, authors study the geological feature of the metallotectonics discovered newly, realizing that the coupling between deformation partitioning, hydrofracturing and tectonic pumping plays a key part in the formation of embryo-fault and its mineralization. The orebodies may form in the forming process of embryo-fault.

参考文献

[1] Li Jinguo, Wu Xiuquan, Zhang Botao, et al. Experimental research on the fracturing of dissected rock under confining pressure [J]. Earthquake Geology, 1984,62:75-80.[李建国,吴秀泉,张渤涛,.在围压条件下切口岩石破裂过程的实验研究[J].地震地质,1984,62:75-80.]

[2] Zhu Dagang. Study on micro-configuration of rock fissure formed by experiment [J]. Journal of Geological Mechanics, 1997,31:57-61.[朱大岗.实验岩石裂隙微观形态初探[J].地质力学学报, 1997,31:57-61.]

[3] Atkinson B K. Subcritical crack growth in geological materials [J]. Journal of Geophysical Research,1984, 89(B6):4 077-4 114.

[4] Means W D. Kinematics,stress,deformation and materical behavior[J]. Journal of Structure Geology, 1990, 12(8):953-971.

[5] Wang Jincao. Ore-body controlled by embryo-faults discovered  in lower wall of the JiaoJia fault, eastern Shandong[J]. Geological Review, 2002, 483:248.[汪劲草.山东焦家断裂带下盘发现雏形断裂控制的工业矿体[J].地质论评,2002, 483:248.]

[6] Bell T H. Deformation partitioning and porphyroblast rotation in metamorphic rock: A radical reinterprelation [J]. Journal of Metamorphic Geology, 1985, 3(2):109-118.

[7] Wang Chunzeng. Deformation partitioning and its research significance [J]. Geological Science and Technology Information, 1988,72:13-19.[王春增. 变形分解作用及其研究意义[J]. 地质科技情报,1988,72:13-19.]

[8] Phillips W J. Hydraulic fracturing and mineralization[J]. Journal of Geological Society,1972,128:337-359.

[9] Sibson R H. Earthquake faulting as a structural process [J]. Journal of Structure Geology,1986,11:1-14.

[10] Sibson R H. Brecciation process in fault zones [J]. Pure and Applied Geophysics, 1986, 124:159-175.

[11] Zhai Yusheng, Deng Jun, Li Xiaobo. Regional Metallogeny[M]. Beijing: Geological Publishing House, 1999.164-166. [翟裕生,邓军,李晓波.区域成矿学[M]. 北京:地质出版社,1999.164-166.]

[12] Robert F, Brown A C. Archen gold-bearing quartz veins at the Sigma mine, Abitibi greenstone belt, Quebec, Canada[J]. Economic Geology,1986,81:578-593 .

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