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The geometry of a dyke swarm as a result of dyke interaction with each other and with external stresses

机译:由于堤坝相互影响以及外部应力,堤坝群的几何形状

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In the framework of plane elastic problem we use a numerical approach to study the forms of opening and paths of growth of three parallel magma fractures as a model of dyke swarm formation and development. As expected, the internal dynamic mechanism of dyke interaction distorts their shapes in comparison with a single dyke shape, and curves their paths combining them into a divergent or a convergent system. The external dynamic mechanism of regional stress tends to align the growing dyke paths in parallel to the axis of the maximum compressive stress. The external and internal mechanisms compete with each other. The impact of the internal mechanism is stronger when the ratio of the distance between dykes to their length is less, the initial parallel dyke shift in relation to each other is larger, and the differential regional stress is less. Under the opposite conditions, the external mechanism prevails.
机译:在平面弹性问题的框架内,我们使用数值方法研究了三个平行岩浆裂缝的开放形式和增长路径,以此作为堤群形成和发展的模型。不出所料,堤坝相互作用的内部动力机制与单个堤坝形状相比会扭曲其形状,并弯曲其路径,从而将它们组合成一个发散或会聚的系统。区域应力的外部动力机制趋于使生长的堤坝路径与最大压应力的轴平行。外部和内部机制相互竞争。当堤坝之间的距离与其长度之比较小,彼此之间的初始平行堤坝位移较大,且区域差异应力较小时,内部机制的影响会更大。在相反的条件下,外部机制占上风。

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  • 来源
    《Doklady Earth Sciences》 |2017年第2期|406-410|共5页
  • 作者单位

    Russian Acad Sci, Schmidt Inst Phys Earth, Ul B Gruzinskaya 10, Moscow 123810, Russia;

    Russian Acad Sci, Schmidt Inst Phys Earth, Ul B Gruzinskaya 10, Moscow 123810, Russia;

    Russian Acad Sci, Schmidt Inst Phys Earth, Ul B Gruzinskaya 10, Moscow 123810, Russia;

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