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Microstructural evolution in bitaxial crack-seal veins: A phase-field study

机译:位轴裂纹密封静脉中的微结构演变:一个相场研究

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Bitaxial crack sealing by epitaxial crystal growth is the most common vein-forming process in Earth's crust, but the details of the microstructural processes in these are not well understood. Here we model the evolution of bitaxial crack-seal quartz veins in two and three dimensions, using the phase-field method. Our numerical simulations show the influence of different parameters, such as the obliquity of crack opening and crack location, grain size, and orientations on the evolving vein microstructure. We examine the underlying growth competition observed during epitaxial growth of quartz. Results show many similarities with natural microstructures such as stretched crystals and compare well with the previous numerical findings. As the ratio of crack aperture and matrix grain size for the present studies is chosen to be sufficiently large for growth competition to occur before complete sealing, it leads to the formation of crystal fragments along the crack-opening trajectory. We explain how such fragment trails act as potential indicators of the opening of crack-seal veins, if they are confirmed to be common in natural microstructures. Finally, we highlight the importance of accounting for the third dimension in the numerical simulations by analyzing the evolution of fluid connectivity in 2-D and 3-D during the sealing process.
机译:通过外延晶体生长进行的位轴裂纹密封是地壳中最常见的形成静脉的过程,但是其中的微观结构过程的细节尚未得到很好的理解。在这里,我们使用相场方法模拟了二维和三维二维位轴裂纹密封石英脉的演化。我们的数值模拟显示了不同参数的影响,例如裂纹开度和裂纹位置,晶粒尺寸和取向的倾斜度对不断演变的静脉微结构的影响。我们检查了在石英外延生长过程中观察到的潜在生长竞争。结果显示与天然微结构(如拉伸晶体)有许多相似之处,并与先前的数值发现进行了很好的比较。由于当前研究的裂纹孔径与基体晶粒尺寸的比率选择为足够大,以至于在完全密封之前发生生长竞争,这会导致沿裂纹打开轨迹形成晶体碎片。我们将解释这种碎片痕迹如何被证明是裂痕静脉开口的潜在指示,如果它们被证实在自然的微观结构中很常见。最后,我们通过分析密封过程中2-D和3-D中流体连通性的演变,强调了在数值模拟中考虑三维尺寸的重要性。

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