首页> 外文期刊>Journal of structural geology >Magma-driven hydraulic fracturing and infiltration of fluids into the damaged host rock, an example from Dronning Maud Land, Antarctica
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Magma-driven hydraulic fracturing and infiltration of fluids into the damaged host rock, an example from Dronning Maud Land, Antarctica

机译:岩浆驱动的水力压裂和流体渗透到受损的宿主岩中,以南极德龙宁·莫德·兰德为例

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摘要

Excellent outcrops in Dronning Maud Land, Antarctica, provide unique insight into the mode and extent of fluid infiltration into metamorphic and plutonic rocks in the middle crust. The fluids are liberated from pegmatitic veins and give rise to alteration halos. In the alteration halos, the conspicuous change in colour is correlated with (1) hydration mineral reactions, and (2) high density of microcracks in quartz and feldspar exceeding that observed in the unaltered host rock by an order of magnitude. The field relations indicate that the veins originated as melt-driven hydraulic fractures, sealed by pegmatite and aplite crystallising from volatile-rich melts, with the alteration halo being the wake of the process zone formed at the tip of the propagating fractures. It is proposed that (1) the size of the alteration zone and the width of the vein are correlated, resulting in higher values of both these quantities for cracks propagating at higher velocities and consequently higher crack propagation toughnesses; (2) the damage zone is characterised by a transient state of high permeability which was short-lived due to rapid healing and sealing of microcracks; (3) the infiltration and retrogression of the high-grade rocks can be considered as a quasi-instantaneous process on geologic time scales with a duration of hours to weeks.
机译:南极德隆宁莫德(Dronning Maud Land)的优秀露头,使人们对流体渗透到中地壳变质和深成岩中的方式和程度有了独特的认识。液体从凝乳静脉中释放出来,并引起晕圈改变。在蚀变晕中,颜色的显着变化与(1)水化矿物反应和(2)石英和长石中的微裂纹的高密度比未改变的宿主岩石中观察到的高一个数量级有关。现场关系表明,这些脉源于由熔体驱动的水力压裂,被伟晶岩密封,并由富含挥发物的熔体结晶形成了尖顶晶状体,晕圈的变化是在扩展的压裂尖端形成的工艺区的唤醒。有人提出,(1)蚀变区的大小和脉的宽度是相关的,从而导致以较高的速度传播的裂纹的量值都较高,因此裂纹扩展的韧性也较高; (2)损伤区的特征是高渗透率的过渡状态,由于微裂纹的快速愈合和密封,该过渡状态是短暂的; (3)在几小时到几周的地质时间尺度上,高档岩石的渗透和倒退可以被认为是准瞬时过程。

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