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首页> 外文期刊>Tectonophysics: International Journal of Geotectonics and the Geology and Physics of the Interior of the Earth >Olivine-antigorite orientation relationships: Microstructures, phase boundary misorientations and the effect of cracks in the seismic properties of serpentinites
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Olivine-antigorite orientation relationships: Microstructures, phase boundary misorientations and the effect of cracks in the seismic properties of serpentinites

机译:橄榄石 - 抗真的方向关系:微观结构,相边界错位,裂缝在蛇形素地震性质中的影响

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摘要

Antigorite-bearing rocks are thought to contribute significantly to the seismic properties in the mantle wedge of subduction zones. Here we present a detailed study of the microstructures and seismic properties in a sample of antigorite-olivine schist previously studied by Kern et al. (1997, 2015). We have measured crystallographic orientations and calculated the seismic properties in three orthogonal thin sections. Microstructures indicate that deformation is localized in the bands with high antigorite fractions, resulting in strong crystallographic preferred orientations (CPOs) with point maxima of poles to (100) parallel to lineation and poles to (001) to the foliation normal. Olivine CPO suggests deformation under high temperature and low stress, with a [100] fiber texture. The CPO strength varies with grain size, but is strong even in fine-grained antigorite, and larger grains tend to display higher internal misorientation. Orientation relationships between olivine and antigorite are evident in phase boundary misorientation analysis, (100)ol vertical bar vertical bar(001)atg being more frequent than [001]ol vertical bar vertical bar[010]atg. Two new orientation relationships between olivine and antigorite have been documented. Seismic velocities decrease while anisotropy increases with increasing antigorite modal content. Antigorite grain shape has a weak effect on seismic velocities, but it is important on anisotropy. Comparison between CPO-derived seismic velocities using Voigt, Reuss, Hill averages and geometric mean only showed good agreement in 1/3 of experimental velocities. If the crack porosity of 1.63% measured experimentally at 600 MPa was used in the self-consistent model with two crack orientations with planes normal to Z and Y, good match with all experimental velocities was achieved. The self-consistent model implies important crack porosity in the foliation plane at 600 MPa that reduces Vp normal to the foliation by 0.3 km/s.
机译:耐心岩的岩石被认为是对俯冲区域的地幔楔形的地震性能有显着贡献。在这里,我们介绍了由克恩等人研究的抗原素 - 橄榄石分离样品中的微观结构和地震性质的详细研究。 (1997,2015)。我们已经测量了晶体取向并计算了三个正交薄部分中的地震性能。微观结构表明,变形在具有高抗抗石级分的条带中,导致具有恒定点至(100)的强晶级优选取向(CPOS)与纤维素和杆平行于叶片末端。 Olivine CPO表明在高温和低应力下变形,具有[100]纤维质地。 CPO强度随晶粒尺寸而变化,但即使在细粒度的抗真菌岩中也是强烈的,并且较大的谷物倾向于显示出更高的内部错误化。橄榄石和抗轨石之间的取向关系在相边界错位分析中是明显的,(100)OL垂直条垂直条(001)ATG比垂直条垂直杆更频繁地更频繁地进行垂直杆[010] ATG。记录了两种新的橄榄石和抗轨石之间的朝向关系。抗震速度随着抗抗石型血型含量的增加而增加,而各向异性增加。抗真菌晶粒形状对地震速度效果薄弱,但在各向异性方面是重要的。 CPO衍生的地震速度与使用voigt,Reuss,Hill平均值和几何平均值的比较仅在1/3的实验速度中显示了良好的一致性。如果在600MPa下测量的1.63%的裂纹孔隙率为600MPa的自一致模型中使用了两个裂缝取向,其平面与Z和Y正常的平面,达到了所有实验速度的良好匹配。自我一致的模型意味着在600MPa的600MPa下叶片平面中的重要裂纹孔隙率,将vp正常降低到叶片0.3 km / s。

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