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首页> 外文期刊>Journal of Metamorphic Geology >Deformation microstructures of olivine in peridotite from Spitsbergen, Svalbard and implications for seismic anisotropy
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Deformation microstructures of olivine in peridotite from Spitsbergen, Svalbard and implications for seismic anisotropy

机译:斯瓦尔巴特群岛斯匹次卑尔根橄榄岩橄榄石的变形微观结构及其对地震各向异性的影响

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To understand the deformation mechanism and seismic anisotropy in the uppermost mantle beneath Spitsbergen, Svalbard, in the Arctic, the deformation microstructures of olivine in the peridotite of Spitsbergen were studied. Seismic anisotropy in the upper mantle can be explained mainly by the lattice-preferred orientation (LPO) of olivine. The LPOs of the olivine in the peridotites were determined using electron backscattered diffraction patterns. Eight specimens out of 10 showed that the [100] axis of the olivine was aligned subparallel to the lineation and that the (010) plane was subparallel to the foliation, showing a type A LPO. In the other two specimens the [100] axis of olivine was aligned subparallel to the lineation and both the [010] and [001] axes were distributed in a girdle nearly perpendicular to the lineation, showing a type D LPO. The dislocation density of the olivine in the samples showing a type D LPO was higher than that in the samples showing a type A LPO. The result of an Fourier transformation infrared study showed that both the types A and D samples were dry. These observations were in good agreement with a previous experimental study Tectonophysics, 421, 2006, 1): samples showing a type D LPO for olivine were observed at a high stress condition and samples showing both types A and D LPO were deformed under dry condition. Observations of both strong LPOs and dislocations of olivine indicate that the peridotites studied were deformed by dislocation creep. The seismic anisotropy calculated from the LPOs of the olivine could be used to explain the seismic anisotropy of P- and S-waves in the lithospheric mantle beneath Spitsbergen, Svalbard.
机译:为了了解斯匹次卑尔根州斯匹次卑尔根以下最上地幔的变形机制和地震各向异性,研究了斯匹次卑尔根橄榄岩中橄榄石的变形微观结构。上地幔的地震各向异性主要可以通过橄榄石的晶格优先取向(LPO)来解释。使用电子反向散射衍射图确定橄榄石中橄榄石的LPO。 10个样本中有8个标本显示,橄榄石的[100]轴与该线次平行,而(010)平面与该叶次平行,显示为A型LPO。在其他两个标本中,橄榄石的[100]轴与线平行,并且[010]和[001]轴均分布在几乎垂直于线的腰带中,显示出D型LPO。显示为D LPO的样品中橄榄石的位错密度高于显示为A LPO的样品中橄榄石的位错密度。傅立叶变换红外研究的结果表明,A型和D型样品都是干燥的。这些观察结果与先前的实验研究Tectonophysics,421,2006,1)非常吻合:在高应力条件下观察到显示D型LPO橄榄石的样品,而在干燥条件下显示A型和D LPO型的样品均发生了变形。对强LPO和橄榄石位错的观察表明,所研究的橄榄岩因位错蠕变而变形。由橄榄石的LPO计算得到的地震各向异性可以用来解释斯瓦尔巴特群岛Spitsbergen下方岩石圈地幔中P波和S波的地震各向异性。

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