DOI:
矿床地质:1995,Vol.>>Issue(3):243-251

相山铀矿田西部成矿构造应力场及与铀矿化关系
核工业北京地质研究院
The metallotectonic stress field in the west of the Xiangshan uranium orefield and its relations to uranium mineralization
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中文摘要:相山铀矿田是我国最大的火山岩型铀矿田。本文选择矿田西部地区,通过节理、裂隙测量和数值模拟,重建和恢复了区内成矿构造应力场,并在此基础上,探讨铀矿化在构造应力场内的分布规律和火山岩中铀元素在构造应力作用下的迁移、集散特征。结果表明:铀矿床多分布在剪应力值产生急剧变化的梯度带、应力值偏低一侧的应力“缓冲带”部位,且有从矿床、矿点到异常点,剪应力值逐渐降低的变化趋势。火山岩中的铀元素在构造应力驱动下,向应力梯度减小的方向迁移,并参与了成矿作用。
Abstract:The Xiangshan uranium orefield is the largest volcanics type uranium orefield in China. Having selected the western part of the orefield as a study area, the present paper made a preliminary study on the tectonic stress field of metallogenic faults that occur in volcanic cover and directly control uranium mineralization. Based on measurement of joints and fissures as well as finite-element numerical simulation in Julongan sector, the paper reconstructed the metallotectonic stress field of the area and, on such a basis, investigated the distribution of uranium mineralization in the tectonic stress field and the migration and dispersion of uranium volcanic rocks under the action of tectonic stress. The following understanding has been obtained: (1). The metallogenic fault zones, ore-control joints and fissure zones were products under the action of NWW-SEE regional compressional tectonic stress field. The local deviation of the stretching of fault structure reflects the restriction action and influence of the basement structure. (2). In the tectonic stress field, uranium deposits are mostly distributed in the gradient zone with drastic change in stress value, and at the pasition of stress “buffer-zone” on the side of somewhat lower stress value. In addition, shear stress values tend to decrease gradually from ore deposits through ore occurrences to anomalous points. Such distribution characteristics of uranium mineralization are basically consistent with the shear stress contour diagram in plan and profile. (3). In the process of tectonic activity, certain degree of uranium migration also took place in volcanic rocks which was controlled by intensity and distribution of tectonic stress. Driven by tectonic stress, uranium travelled in the direction of decreasing stress gradient and towards the position where stress was considerably released, and took part in the ore-forming process.
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引用文本:
陈跃辉,李建红.1995.相山铀矿田西部成矿构造应力场及与铀矿化关系[J].矿床地质,14(3):243~251
.1995.The metallotectonic stress field in the west of the Xiangshan uranium orefield and its relations to uranium mineralization[J].Mineral Deposits14(3):243~251
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