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首页> 外文期刊>Journal of Metamorphic Geology >Experimental investigation of eclogite rheology and its fabrics at high temperature and pressure
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Experimental investigation of eclogite rheology and its fabrics at high temperature and pressure

机译:高温高压下榴辉岩流变学及其织物的实验研究

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摘要

Eclogite plays an important role in mantle convection and geodynamics in subduction zones. An improved understanding of processes in the deeper levels of subduction zones and collision belts requires information on eclogite rheology. However, the deformation processes and associated fabrics in eclogite are not well understood. Incompatible views of deformation mechanism have been proposed for both garnet and omphacite. We present here deformation behaviour of eclogite at temperatures of 1027-1427 degrees C, confining pressures of 2.5-3.5GPa, and strain rates of 1 x 10(-5) s(-1) to 5 x 10(-4) s(-1). We obtained a power-law creep for the high temperature and pressure deformation of a 'dry' eclogite (50 vol.% garnet, 40% omphacite and 10% quartz) with A = 10(3.3 +/- 1.0), n = 3.5 +/- 0.4, Delta E =403 +/- 30 KJ mol(-1) and Delta V = 27.2 cm(3) mol(-1). The two principal minerals of eclogite have greatly different strengths. Progressive increase of garnet results in a smooth increase in strength. Analysis by electron back-scattered diffraction shows that: (1) garnet displays pole figures with near random distributions of misorientation angle under both dry and wet conditions; (2) omphacite shows pronounced lattice preferred orientations (LPOs), suggesting a dominant dislocation creep mechanism. Further investigation into the water effects on eclogite show: (3) water content does not influence the style of omphacite fabric but increases slightly the fabric strength; (4) grain boundary processes dominate the deformation of garnet under high water fugacity or high shear-strain conditions, yielding a random LPO similar to that of non-deforming garnet, despite the strong shape preferred orientation (SPO) observed. {110} [001] slip may dominate the deformation of rutile. Quartz displays complicated and inconsistent LPOs in eclogite. These results are remarkably similar to observations from deformed eclogites in nature.
机译:榴辉岩在俯冲带的地幔对流和地球动力学中起着重要作用。要更好地理解俯冲带和碰撞带深层的过程,就需要有关榴辉岩流变学的信息。然而,对榴辉岩的变形过程和相关的织物尚不十分了解。对于石榴石和绿辉石都提出了不相容的变形机制观点。我们在这里介绍了榴辉岩在1027-1427摄氏度的温度,2.5-3.5GPa的围压和1 x 10(-5)s(-1)到5 x 10(-4)s(-1)的应变速率下的变形行为-1)。我们获得了“干”榴辉岩(50%(体积)石榴石,40%绿辉石和10%石英)的高温和高压变形的幂律蠕变,其中A = 10(3.3 +/- 1.0),n = 3.5 +/- 0.4,Delta E = 403 +/- 30 KJ mol(-1)和Delta V = 27.2 cm(3)mol(-1)。榴辉岩的两种主要矿物具有不同的强度。石榴石的逐渐增加导致强度的平稳增加。电子背散射衍射分析表明:(1)石榴石在干燥和潮湿条件下的极位图几乎都具有取向差角几乎随机的分布; (2)绿辉石显示出明显的晶格优先取向(LPOs),表明存在主要的位错蠕变机制。进一步研究水对榴辉岩的影响表明:(3)含水量不会影响辉绿岩织物的样式,但会稍微提高织物强度; (4)在高水逸度或高剪切应变条件下,晶界过程主导了石榴石的变形,尽管观察到了强烈的形状择优取向(SPO),但产生了类似于未变形石榴石的随机LPO。 {110} [001]滑移可能会影响金红石的变形。石英在榴辉岩中显示出复杂且不一致的LPO。这些结果与自然变形的榴辉岩的观察结果非常相似。

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