首页> 外文期刊>Acta Geologica Sinica >Numerical Simulation of Fluid Migration during Ore Formation of Carboniferous Exhalation-Sedimentary Massive Sulfide Deposits in the Tongling District, Anhui Province
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Numerical Simulation of Fluid Migration during Ore Formation of Carboniferous Exhalation-Sedimentary Massive Sulfide Deposits in the Tongling District, Anhui Province

机译:安徽铜陵地区石炭系呼出-沉积性块状硫化物矿床成矿过程中流体运移的数值模拟

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Numerical simulation of fluid migration during the ore-forming process of the Carboniferous exhalation-sedimentary (Sedex) massive sulfide deposits in the Tongling district shows that fluid and thermal activities in lying-wall rocks were limited to a small area around the main draining passage, which led to weak mineralization and alteration in the lying-wall rock. Temperature and fluid fields indicate that mineralization and alteration in the lying-wall rock of the Sedex-type deposits are usually weaker than those of volcano-hosted massive sulfide deposits. Fluid migration involves the following processes: seawater penetrating and leaching the lying-wall rocks, then mixing with ascending hydrothermal fluids in the main draining passage, and finally jetting into seafloor. Although fluid activity-influenced area is rather small, the content of metals leached out from the lying-wall rocks is high enough to form large-scale ore deposits. Tensional contemporaneous faults accompanied with strong heat flows controlled the formation and distribution of Sedex deposits. The tensional tectonic regime on the northern margin of the Yangtze block during the Hercynian provided Sedex deposits with a prerequisite geodynamic condition.
机译:铜陵地区石炭系呼出沉积(Sedex)块状硫化物矿床成矿过程中流体运移的数值模拟表明,围岩中的流体和热活动被限制在主排水通道周围的一小块区域,导致薄弱的矿化作用和围岩的蚀变。温度和流场表明,Sedex型沉积物的沉积岩中的矿化作用和蚀变作用通常弱于火山成岩的大型硫化物沉积物。流体运移涉及以下过程:海水渗透和浸出围岩,然后在主排水通道中与上升的热液混合,最后喷射到海底。尽管受流体活动影响的面积很小,但从卧壁岩石中渗出的金属含量却很高,足以形成大规模的矿床。伴随有强烈热流的同时期断裂断层控制了Sedex沉积物的形成和分布。海西时期,扬子地块北缘的张性构造状态为塞德克斯沉积提供了必要的地球动力学条件。

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