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Numerical modeling of coupled fluid flow, heat transport and mechanical deformation: An example from the Chanziping ore district, South China

机译:耦合流体流动,传热和机械变形的数值模拟:以华南钱兹坪矿区为例

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This paper presents numerical investigation on the ore-forming fluid migration driven by tectonic deformation and thermally-induced buoyancy force in the Chanziping ore district in South China. A series of numerical scenarios are considered to examine the effect of meteoric water precipitation, the dip angle of the faults, unconformity surface, and thermal input on the ore genesis. Our computations reveal that the downward basinal fluid flow driven by extensional stress mixes with the upward basal fluid driven by the thermal input from depth at the junction of two faults at a temperature of about 200?°C, triggering the precipitation of the Chanziping uranium deposit.
机译:本文对华南昌子坪矿区构造变形和热致浮力驱动的成矿流体运移进行了数值研究。考虑了一系列数值方案,以检查陨石水沉淀,断层倾角,不整合面和热输入对成因的影响。我们的计算表明,在大约200?C的温度下,由伸展应力驱动的向下的盆地流体流与受热输入驱动的向上的基础流体在两个断层的交汇处由深度驱动混合,触发了Chanziping铀矿床的沉淀。 。

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