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Orebody geometry in lode gold deposits from Zimbabwe: implications for fluid flow, deformation and mineralization

机译:津巴布韦金矿床的矿体几何形状:对流体流动,变形和矿化的影响

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The geometry of some orebodies can be described simply and accurately by three orthogonal axes, U ≥ V ≥ W. The ratios between these axes can be expressed as a parameter j = (U/V - 1)/(V/W - 1), and represented by a graph of U/V plotted against V/W, analogous to the treatment of strain ellipsoids. The orientations of orebodies can be plotted simply on projections using the UVW axes. Measurements of ore bodies from two examples of lode gold deposits from the Zimbabwe craton show that most of these orebodies are oblate. However, orebodies can have significant U/V ratios, implying a component of pipe-like fluid flow during mineralization. Pipe flow is demonstrated to be orders of magnitude more conductive than flow in planar veins and faults. There are significant variations in orebody geometry between deposits and within different sections of a single deposit. W values appear to be influenced by host rock: more permeable rocks have higher W. A negative trend of j value with orebody volume indicates that orebodies do not evolve in a self-similar way, but tend to more oblate shapes with increasing volume.
机译:可以通过三个正交轴U≥V≥W简单而准确地描述某些矿体的几何形状。这些轴之间的比率可以表示为参数j =(U / V-1)/(V / W-1) ,并用V / W绘制的U / V图表示,类似于应变椭球的处理。可以使用UVW轴在投影上简单地绘制矿体的方向。对来自津巴布韦克拉通的两个金矿床矿体的测量表明,这些矿体大多数都是扁圆形的。但是,矿体可能具有显着的U / V比,这意味着在矿化过程中管道状流体的一部分流动。事实证明,与平面静脉和断层中的流动相比,管道流动的传导性高几个数量级。矿床之间和单个矿床的不同区域内的矿体几何形状存在很大差异。 W值似乎受基质岩的影响:更多的渗透性岩石具有更高的W。随着矿体体积的增加j值呈负趋势表明,矿体并非以自相似的方式演化,而是随着体积的增加而趋于扁圆。

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